Анализ сайта https://geoenergymath.com/
Основное Готовность: 50%
Домен
geoenergymath.com
Состояние доменного имени
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Проверяем корректность доменного имени и наличие технических проблем на уровне домена.
Длина домена велика. Но если вы продвигаете запрос, входящий в название домена, то это хорошо.
Домен второго уровня идеален для продвижения.
Ответ сервера
200 Успешный ответ
HTTP-код ответа и цепочка редиректов
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Код 200 — страница доступна. Коды 3xx — редиректы (цепочки замедляют загрузку и размывают ссылочный вес). Коды 4xx/5xx — ошибки, поисковик не сможет проиндексировать страницу.
Сервер настроен корректно.
Безопасность
Сайт безопасен
Использование HTTPS и SSL-сертификат
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HTTPS — обязательный стандарт. Google и Яндекс отдают предпочтение защищённым сайтам. Отсутствие SSL или просроченный сертификат ведут к предупреждениям в браузере и снижению позиций.
На сайте работает защищенный протокол ssl и сайт открывается по https.
Ssl-сертификат действителен до 28.10.2026 23:43:40.
Включён HSTS (Strict-Transport-Security) — защита от подмены на http.
Поздравляем! Сайт не содержится в реестре РКН.
Кодировка
UTF-8
Кодировка символов страницы
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Стандарт — UTF-8. Неправильная кодировка вызывает нечитаемые символы и мешает поисковику корректно распознать текст страницы.
Указана кодировка на странице UTF-8.
Язык
en
Атрибут lang в HTML-теге
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Атрибут lang (<html lang="ru">) сообщает поисковикам и браузерам, на каком языке написана страница. Помогает при ранжировании в региональном поиске.
Язык документа указан явно: en.
Скорость загрузки
~0,33сек
Время отклика сервера (TTFB)
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Time To First Byte — время до получения первого байта от сервера. Норма до 200 мс. Медленный отклик ухудшает пользовательский опыт и ранжирование: Яндекс и Google учитывают скорость страниц.
Скорость загрузки сайта 0,33сек оптимальна.
Объем документа
303Кб
Размер HTML-кода страницы
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Слишком большой HTML замедляет парсинг браузером и сканирование поисковым роботом. Рекомендуется не более 200 Кб.
Тег html в документе встречается 2 раза. Это некорректно и лучше исправить.
Тег body в документе встречается 2 раза. Это некорректно и лучше исправить, т.к. по правилам HTML в документе он должен встречаться только один раз.
Объем html-документа 303Кб оптимален.
Ресурсы
Ресурсы: 17
Внешние ресурсы страницы (CSS, JS, изображения)
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Количество и тип подключённых ресурсов влияют на скорость загрузки. Большое число запросов увеличивает время рендеринга страницы.
Кол-во файлов ресурсов 17 много для одной страницы. Приемлемо до 10. Проведите оптимизацию файлов ресурсов!
Показать полный список ресурсов
| Тип | Название | Значение |
|---|---|---|
| stylesheet | text/css | https://geoenergymath.com/wp-content/plugins/jetpack/modules/infinite-scroll/infinity.css?m=1777914508 |
| stylesheet | text/css | https://geoenergymath.com/wp-content/plugins/coblocks/dist/style-coblocks-1.css?m=1719276502 |
| stylesheet | text/css | https://geoenergymath.com/_static/??-eJwrL9BNzs8rSc0r0S/IKU3PzCvWT85PyslPzi7WT8ksLtEvLqnMSdWFiemmVgDVFmfm5xXrJRcX65STqD0xLzM3sQSoHaTbPtfW0NzQ0sjczNTACABpKTN0 |
| stylesheet | https://geoenergymath.com/wp-includes/css/dashicons.min.css?ver=7.1 | |
| stylesheet | text/css | https://geoenergymath.com/_static/??-eJyNjUEOwjAMBD9Ea0oP4YK4VOIBvKB1rBA1sSPsqOrvCeodcZzVamYrHQobsUFJNURWCLXhQu8AS43Jg9qeSMFelAk8aQzcmazE2ufIPaqetr8tKLkIt6Meyy8FypIEV4XImGorw0SF2BNjbPCQafZ+h+dhPjJpNlL7Gu/5NrirG0bnzpcPogRXUw== |
| stylesheet | https://fonts-api.wp.com/css?family=Raleway%3A400%2C300%2C700%7CLato%3A400%2C700%2C400italic%2C700italic&subset=latin%2Clatin-ext | |
| stylesheet | text/css | https://geoenergymath.com/_static/??-eJyNjtEKwjAMRX/IGgcT9yJ+itQu1LisLU1K2d+vPgxfRPcScnPvPaQm42JQDAr6xBkF2qTgq11MxppJmweiC+PRiRzqJ5+4eAoCL9Rk3QR3Cg48BszUIvJ93QV5cHSTgFRKmP815jgWbn87m2MR5M0w22EvQIlxNN4yY15+qTfwNl+7y3AeTt3Q9yuDQXwZ |
| stylesheet | text/css | https://geoenergymath.com/wp-content/themes/hemingway-rewritten/inc/style-wpcom.css?m=1499978363 |
| stylesheet | text/css | https://geoenergymath.com/wp-content/plugins/jetpack/modules/widgets/top-posts/style.css?m=1764003632 |
| js | https://geoenergymath.com/wp-includes/js/jquery/jquery.min.js?ver=3.7.1 | |
| js | text/javascript | https://geoenergymath.com/wp-includes/js/jquery/jquery-migrate.min.js?m=1686289764 |
| js | https://s0.wp.com/wp-content/js/bilmur.min.js?m=202634 | |
| js | text/javascript | https://geoenergymath.com/_static/??-eJyVkNEKwjAMRX/Irg4U9yJ+inRZN7O2aWla6/7eCQ5B58NeArmXk3BvCQI8JU1JBpsHJJajTkGBkVckkG1G20mkHgmTFgzRW7vsU+WQqpF35fcK+NZ6MCw75CTHjyAUoVMJ/TeZbtpplvNEGoqaRNQlYpq9F74ib+JJ3XHY/pYNBmGRjOg9ZBY9Pv4EXqkNVPSZtV08sQjv3i7uXJ+aY7Ovm8PhCaEBljw= |
| js | https://geoenergymath.com/wp-content/plugins/jetpack/_inc/build/tiled-gallery/tiled-gallery/tiled-gallery.min.js?ver=16.2-a.1 | |
| js | https://secure.gravatar.com/js/gprofiles.js?ver=202634 | |
| js | text/javascript | https://geoenergymath.com/wp-content/plugins/jetpack/modules/wpgroho.js?m=1730206540 |
| js | https://stats.wp.com/e-202634.js |
Серверные заголовки
Кол-во: 12
HTTP-заголовки ответа сервера
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Заголовки сервера передают браузеру и поисковику служебную информацию: кеширование, безопасность (CSP, HSTS), сжатие (gzip). Правильная настройка ускоряет загрузку и повышает защищённость.
Найдены серверные заголовки 12шт. Подробнее про серверные заголовки.
Показать полный список серверных заголовков
| Ключ | Значение |
|---|---|
| Server | nginx |
| Date | Sat, 22 Aug 2026 13:22:25 GMT |
| Strict-Transport-Security | max-age=31536000 |
| Vary | Accept-Encoding |
| Cache-Control | must-revalidate, max-age=222 |
| x-nananana | Batcache-Hit |
| x-hacker | Want root? Visit join.a8c.com and mention this header. |
| host-header | WordPress.com |
| Link | <https://geoenergymath.com/wp-json/>; rel="https://api.w.org/" |
| x-ac | 31.arn _atomic_ams STALE |
| Alt-Svc | clear |
| Server-Timing | a8c-cdn, dc;desc=arn, cache;desc=STALE;dur=2.0 |
CMS
Система управления сайтом (движок)
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CMS — это движок, на котором работает сайт (WordPress, 1C-Bitrix, Tilda и др.). Знание CMS помогает понять возможности SEO-оптимизации и подобрать подходящие инструменты. «Не определена» — вероятно, самописный сайт или нестандартная сборка.
Сайт работает на CMS WordPress.
Веб-сервер
Программное обеспечение сервера
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Веб-сервер — это ПО, которое отдаёт страницы посетителям (nginx, Apache, IIS, LiteSpeed и др.). Определяется по серверным заголовкам ответа (Server, X-Powered-By и т.п.). «Не определён» — сервер намеренно скрывает эти заголовки, это нормальная практика безопасности.
Сайт работает на веб-сервере nginx.
Мета-теги Готовность: 43%
Title
GeoEnergy Math
Заголовок страницы в браузере и поисковой выдаче
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Title — главный SEO-заголовок страницы. Влияет на CTR в поиске и ранжирование. Оптимальная длина: 50–70 символов. Ключевые слова — ближе к началу.
Необходимо увеличить число символов в title (текущее значение мало: 14, минимум: 25, оптимально: от 40 до 45)
Дублей словоформ в title не найдено.
Description
Mathematics of the earth, peak oil, climate science, geophysics, fluid dynamics
Описание страницы в поисковой выдаче (сниппет)
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Meta Description — текст под заголовком в выдаче. Напрямую на позиции не влияет, но влияет на CTR. Оптимальная длина: 120–160 символов.
Необходимо увеличить число символов в description (текущее значение мало: 79, минимум: 80, оптимально: от 120 до 130)
Keywords
Список ключевых слов страницы (устаревший тег)
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Meta Keywords не учитывается Яндексом и Google для ранжирования с 2009–2012 годов. Заполнение не обязательно, но не вредит. Конкурент может использовать содержимое для анализа.
Установите мета-тег keywords!
Канонический Url
Указывает поисковику основную версию страницы
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Canonical (rel=canonical) предотвращает проблему дублей страниц. Должен точно совпадать с URL проверяемой страницы. Неправильный canonical может передать ссылочный вес на другую страницу.
Рекомендуем прописать канонический Url.
Robots
Есть ошибки
Директивы для поисковых роботов на уровне страницы
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Meta Robots управляет индексацией конкретной страницы: index/noindex — индексировать ли, follow/nofollow — следовать ли по ссылкам. Noindex полностью исключает страницу из поиска.
Meta-тег robots указан, но в нем содержится неизвестное значение...
Адаптивность
width=device-width, initial-scale=1.0
Настройка масштабирования на мобильных устройствах
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Тег viewport (<meta name="viewport">) сообщает браузеру, как масштабировать страницу на мобильных. Стандарт: width=device-width, initial-scale=1. Отсутствие — признак отсутствия мобильной версии.
Meta-тег viewport со значением-константой width=device-width задаёт ширину страницы в соответствии с размером экрана.
Meta-тег viewport со значением initial-scale=1.0 определяет масштаб 1:1, т.е. «не масштабировать».
Разметка OpenGraph
Кол-во: 10
Мета-теги для красивых превью в соцсетях
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OpenGraph (og:title, og:description, og:image) управляет тем, как страница выглядит при репосте в социальных сетях и мессенджерах. Отсутствие OG-тегов — невзрачный превью при шеринге.
Разметка OpenGraph задана. Страница оптимизирована под социальные сети.
Показать полный список og мета-тегов
| Тип | Значение |
|---|---|
| og:type | website |
| og:title | GeoEnergy Math |
| og:description | Mathematics of the earth, peak oil, climate science, geophysics, fluid dynamics |
| og:url | https://geoenergymath.com/ |
| og:site_name | GeoEnergy Math |
| og:image | https://s0.wp.com/_si/?t=eyJpbWciOiJodHRwczpcL1wvczAud3AuY29tXC9pXC9ibGFuay5qcGciLCJ0eHQiOiJHZW9FbmVyZ3kgTWF0aCIsInRlbXBsYXRlIjoiaGlnaHdheSIsImZvbnQiOiIiLCJibG9nX2lkIjoxMjczOTk2NDd9.lxP2i2tW08tWBw_j8NSTx6xcSbK5ZPuUvfOVipKy4HQMQ |
| og:image:width | 1200 |
| og:image:height | 630 |
| og:image:alt | |
| og:locale | en_US |
Все мета-теги
Кол-во: 16
Полный список мета-тегов страницы
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Таблица всех meta-тегов, включая нестандартные. Позволяет найти опечатки, дубли и лишние теги.
Найдены мета-теги 16шт. Мета-теги не видимы для человека и предназначены для обмена информацией между веб-страницей и поисковыми системами, браузерами и другими веб-службами. С ними роботы 🤖 и устройства ведут себя более ожидаемо.
Показать полный список мета-тегов
| Тип | Название | Значение |
|---|---|---|
| name | viewport | width=device-width, initial-scale=1 |
| name | robots | max-image-preview:large |
| name | description | Mathematics of the earth, peak oil, climate science, geophysics, fluid dynamics |
| name | msapplication-TileImage | https://i0.wp.com/geoenergymath.com/wp-content/uploads/2019/04/crosssection-1-144x1441.png?fit=144%2C144&ssl=1 |
| name | viewport | width=device-width, initial-scale=1.0 |
| property | og:type | website |
| property | og:title | GeoEnergy Math |
| property | og:description | Mathematics of the earth, peak oil, climate science, geophysics, fluid dynamics |
| property | og:url | https://geoenergymath.com/ |
| property | og:site_name | GeoEnergy Math |
| property | og:image | https://s0.wp.com/_si/?t=eyJpbWciOiJodHRwczpcL1wvczAud3AuY29tXC9pXC9ibGFuay5qcGciLCJ0eHQiOiJHZW9FbmVyZ3kgTWF0aCIsInRlbXBsYXRlIjoiaGlnaHdheSIsImZvbnQiOiIiLCJibG9nX2lkIjoxMjczOTk2NDd9.lxP2i2tW08tWBw_j8NSTx6xcSbK5ZPuUvfOVipKy4HQMQ |
| property | og:image:width | 1200 |
| property | og:image:height | 630 |
| property | og:image:alt | |
| property | og:locale | en_US |
| property | bilmur:data |
Оптимизация Готовность: 32%
Структура
Есть ошибки
Семантические HTML-элементы страницы
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Проверяет наличие основных структурных элементов: nav, header, footer, main. Корректная семантическая структура помогает поисковику понять архитектуру страницы.
Найдено более 1 тега <html> и <body>. Проверьте структуру html-документа и устраните лишние теги html/body!
Контент
Есть ошибки
Объём и качество текстового содержимого
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Анализирует объём полезного текста на странице. Слишком мало — страница может считаться малополезной. Слишком много — ухудшается читаемость и восприятие.
Слова из title 2 встречаются в тексте редко. Добавьте в контент страницы слова из тега <title>!
Абзацев с текстом 108 достаточно.
Среднее число слов в абзаце 41 достаточно.
Кол-во знаков контента 43447 на странице оптимально.
Кол-во слов 6799 на странице оптимально.
Заголовки
Ошибок нет
Иерархия заголовков H1–H6
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H1 должен быть один и содержать ключевой запрос. H2–H6 описывают подразделы. Пропуск уровней (H1 → H3) и несколько H1 — типичные ошибки, снижающие понятность страницы для поисковика.
На странице присутствуют заголовки <h1> 22. Это прекрасно.
На странице присутствуют заголовки <h2> 6. Это хорошо.
На странице присутствуют заголовки <h3> 3.
Тошнота
5,83
Насколько одно слово доминирует в тексте
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Классическая тошнота = √(частота самого повторяющегося слова). Норма до 7–8: текст воспринимается естественно. Выше — поисковик может счесть страницу переспамленной.
Тошнота превышает норму 5. Измените текст страницы!
Академич. тошнота
25,84%
Насколько текст перенасыщен ключевыми словами
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Академическая тошнота = (частота слова / общее количество слов) × 100%. Показывает долю конкретного слова в тексте. Норма 5–15%.
Академическая тошнота превышает норму 5-15%. Измените текст страницы!
Семантическое ядро
20
Наиболее часто встречающиеся слова на странице
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Топ слов по частоте использования. Показывает, какие слова доминируют в тексте с точки зрения поисковика.
Контент страницы содержит осмысленный текст и слова.
Показать список слов
| Слово | Кол-во | Частота |
|---|---|---|
| forcing | 34 | 0,50% |
| september | 30 | 0,44% |
| january | 24 | 0,35% |
| february | 24 | 0,35% |
| december | 22 | 0,32% |
| november | 22 | 0,32% |
| october | 22 | 0,32% |
| august | 20 | 0,29% |
| manifold | 18 | 0,26% |
| pukite | 17 | 0,25% |
| modulation | 17 | 0,25% |
| response | 16 | 0,24% |
| semi-annual | 15 | 0,22% |
| comments | 13 | 0,19% |
| equatorial | 13 | 0,19% |
| latent | 13 | 0,19% |
| staircase | 12 | 0,18% |
| feedback | 11 | 0,16% |
| annual | 11 | 0,16% |
| pressure | 10 | 0,15% |
Индексация Готовность: 0%
Индексирование
Есть ошибки
Разрешено ли индексирование страницы
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Проверяет, не закрыта ли страница от индексации через robots.txt, meta robots или X-Robots-Tag. Страница, закрытая от индексации, не появится в поисковой выдаче.
Анкоров на странице 588 слишком много. Проведите ревизию и оптимизацию ссылок сайта.
Robots.txt
Найден корректный robots.txt
Файл управления сканированием сайта роботами
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Robots.txt указывает поисковым роботам, какие страницы сканировать, а какие — нет. Ошибки в файле могут случайно закрыть важные разделы от индексации.
Robots.txt настроен корректно. Размер файла: 165 байт. Загружен за: 0сек.
Проверяемая страница не запрещена в robots.txt.
Robots.txt доступен по постоянному адресу
Показать содержимое robots.txt
Sitemap: https://geoenergymath.com/sitemap.xml
Sitemap: https://geoenergymath.com/news-sitemap.xml
User-agent: *
Disallow: /wp-admin/
Allow: /wp-admin/admin-ajax.php
Sitemap
Кол-во: 2
XML-карта сайта для поисковиков
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Sitemap.xml помогает поисковику быстрее находить и индексировать страницы. Особенно важен для крупных сайтов и новых страниц, на которые ещё нет входящих ссылок.
Robots.txt содержит несколько карт сайтов 2. Это профессионально!
Robots.txt не содержит ошибок в картах сайта.
Показать карты сайта
| Url | Статус |
|---|---|
| https://geoenergymath.com/sitemap.xml |
|
| https://geoenergymath.com/news-sitemap.xml |
|
Внутренние ссылки
Кол-во: 495
Ссылки на другие страницы своего сайта
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Внутренние ссылки распределяют ссылочный вес между страницами и помогают поисковику обходить сайт. Пустые анкоры и ссылки на запрещённые robots.txt страницы — типичные ошибки.
Внутренних ссылок на странице 495 слишком много. Проведите оптимизацию сайта!
Внутренние ссылки не запрещены к индексации в robots.txt.
Показать первые 100 внутренних ссылок
| Url | Анкор | Состояние | Анализировать |
|---|---|---|---|
| / |
GeoEnergy Math
|
|
Анализировать url |
|
Home
|
|
Анализировать url | |
| /2018/11/02/mathematical-geoenergy-update/ |
Book Info
|
|
Анализировать url |
| /2019/06/15/peak-oil-barrel/ |
Peak Oil Barrel
|
|
Анализировать url |
| /nonlinear-long-period-tidal-forcing-with-application-to-enso-qbo-and-chandler-wobble/ |
Nonlinear long-period tidal forcing with application to ENSO, QBO, and Chandler wobble
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| /2026/07/24/discussion-of-qbo-cw-enso-w-kimi-ai/ |
Discussion of QBO, CW, ENSO w/ KIMI.ai
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| /2026/07/24/discussion-of-qbo-cw-enso-w-kimi-ai/ |
<time class="entry-date published" datetime="2026-07-24T22:39:38+00:00">July 24, 2026</time><time class="updated" datetime="2026-07-25T07:26:21+00:00">July 25, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /wp-content/uploads/2026/07/Pukite-QBO-Lunar-Forcing.docx |
https://geoenergymath.com/wp-content/uploads/2026/07/Pukite-QBO-Lunar-Forcing.docx
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| /2026/06/16/non-homogeneous-non-autonomous/ |
Non-homogeneous & non-autonomous
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| /2026/06/16/non-homogeneous-non-autonomous/ |
<time class="entry-date published" datetime="2026-06-16T06:23:42+00:00">June 16, 2026</time><time class="updated" datetime="2026-07-26T17:11:58+00:00">July 26, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /2024/09/06/non-autonomous-mathematical-models/ |
non-autonomous
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| /2026/06/11/nao-unfiltered/ |
NAO unfiltered
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| /2026/06/11/nao-unfiltered/ |
<time class="entry-date published" datetime="2026-06-11T18:08:18+00:00">June 11, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /2026/05/23/enso-and-amo-manifolds/ |
usual LTE model
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| /2026/05/29/revisit-sea-level-pressure-paper/ |
Revisit Sea Level Pressure paper
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| /2026/05/29/revisit-sea-level-pressure-paper/ |
<time class="entry-date published" datetime="2026-05-29T19:19:41+00:00">May 29, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /2018/08/12/an-obvious-clue-from-tidal-data/ |
An obvious clue from tidal data
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| /2026/05/23/enso-and-amo-manifolds/ |
here
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| /2026/05/23/enso-and-amo-manifolds/ |
ENSO and AMO manifolds
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| /2026/05/23/enso-and-amo-manifolds/ |
<time class="entry-date published" datetime="2026-05-23T07:28:20+00:00">May 23, 2026</time><time class="updated" datetime="2026-05-26T06:33:41+00:00">May 26, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /2026/05/11/blueprinting-the-most-valuable-company-in-the-world/ |
Blueprinting the most valuable company in the world?
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| /2026/05/11/blueprinting-the-most-valuable-company-in-the-world/ |
<time class="entry-date published" datetime="2026-05-11T21:07:13+00:00">May 11, 2026</time><time class="updated" datetime="2026-05-11T21:21:25+00:00">May 11, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /2026/05/06/nonlinear-fluid-dynamics-and-nn/ |
Nonlinear Fluid Dynamics and NN
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| /2026/05/06/nonlinear-fluid-dynamics-and-nn/ |
<time class="entry-date published" datetime="2026-05-06T06:10:19+00:00">May 6, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /2026/04/26/deep-seek-of-wind-enso/ |
Deep Seek of Wind + ENSO
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| /2026/04/26/deep-seek-of-wind-enso/ |
<time class="entry-date published" datetime="2026-04-26T00:57:31+00:00">April 26, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /2026/04/24/global-forcing-local-modulation-revealed/ |
Gemini LLM
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| /2026/04/24/global-forcing-local-modulation-revealed/ |
Global Forcing, Local Modulation Revealed
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| /2026/04/24/global-forcing-local-modulation-revealed/ |
<time class="entry-date published" datetime="2026-04-24T01:10:15+00:00">April 24, 2026</time><time class="updated" datetime="2026-04-24T01:33:52+00:00">April 24, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /2026/04/16/forcing-selection/ |
Forcing selection
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| /2026/04/16/forcing-selection/ |
<time class="entry-date published" datetime="2026-04-16T01:11:47+00:00">April 16, 2026</time><time class="updated" datetime="2026-04-16T01:23:17+00:00">April 16, 2026</time>
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| /author/geoenergymath/ |
Paul Pukite (@whut)
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| /page/2/ |
<span class="meta-nav">←</span> Older posts
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| /tag/shareegu20/ |
#shareEGU20
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AAM
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AGW
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AI
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| /tag/aliasing/ |
aliasing
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AMO
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| /tag/ao/ |
AO
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| /tag/asymmetry/ |
asymmetry
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| /tag/autonomous/ |
Autonomous
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| /tag/bloch-wave/ |
Bloch wave
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Book
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| /tag/category-theory/ |
Category Theory
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| /tag/chandler-wobble/ |
Chandler wobble
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| /tag/chatgpt/ |
ChatGPT
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claude code
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Climate
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climate change
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climate modeling
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compartmental model
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context
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| /tag/cross-validation/ |
cross-validation
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CW
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depletion
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dipole
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DOF
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eclipse
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EGU
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el-nino
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| /tag/enso/ |
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| /tag/entropy/ |
entropy
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environment
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ESP
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| /tag/floquet/ |
Floquet
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| /tag/floquet-theory/ |
Floquet Theory
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| /tag/forced/ |
Forced
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| /tag/fourier/ |
Fourier
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GEM
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Gemini
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gpu
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gyre
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harmonics
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hovmoller
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ice
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Внешние ссылки
Кол-во: 46
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| Url | Анкор | Анализировать |
|---|---|---|
| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="611" data-attachment-id="6739" data-permalink="https://geoenergymath.com/2026/06/11/nao-unfiltered/image-262/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?fit=1479%2C1336&ssl=1" data-orig-size="1479,1336" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?fit=676%2C611&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?resize=676%2C611&ssl=1" alt="Graph depicting dLOD fit to NAO from 1950 to 2020, showing data and model comparisons in intensity." class="wp-image-6739" style="aspect-ratio:1.10703842510605;width:699px;height:auto" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?resize=1024%2C925&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?resize=300%2C271&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?resize=768%2C694&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?resize=1200%2C1084&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?resize=676%2C611&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?resize=1320%2C1192&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-1.png?w=1479&ssl=1 1479w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="507" data-attachment-id="6742" data-permalink="https://geoenergymath.com/2026/06/11/nao-unfiltered/image-263/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?fit=1581%2C1186&ssl=1" data-orig-size="1581,1186" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?fit=676%2C507&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=676%2C507&ssl=1" alt="Time series analysis of NAO data showing model and data with validation over the years." class="wp-image-6742" style="width:796px;height:auto" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=1024%2C768&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=300%2C225&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=768%2C576&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=1536%2C1152&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=1200%2C900&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=800%2C600&ssl=1 800w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=600%2C450&ssl=1 600w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=400%2C300&ssl=1 400w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=200%2C150&ssl=1 200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=676%2C507&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?resize=1320%2C990&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-2.png?w=1581&ssl=1 1581w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="502" data-attachment-id="6745" data-permalink="https://geoenergymath.com/2026/06/11/nao-unfiltered/image-264/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?fit=1588%2C1180&ssl=1" data-orig-size="1588,1180" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?fit=676%2C502&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=676%2C502&ssl=1" alt="Time series plot showing Site#nao data with blue and red lines representing model and measured values over years from 1950 to 2020." class="wp-image-6745" style="aspect-ratio:1.3456147376852223;width:795px;height:auto" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=1024%2C761&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=300%2C223&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=768%2C571&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=1536%2C1141&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=200%2C150&ssl=1 200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=1200%2C892&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=676%2C502&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?resize=1320%2C981&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-3.png?w=1588&ssl=1 1588w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="143" data-attachment-id="6753" data-permalink="https://geoenergymath.com/2026/06/11/nao-unfiltered/image-266/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?fit=3430%2C724&ssl=1" data-orig-size="3430,724" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?fit=676%2C143&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=676%2C143&ssl=1" alt="A time series graph titled 'Tidal for time series' showing fluctuating values across a timeline from 1990 to 2020. The data is represented with red and blue colored areas indicating variations in values over time." class="wp-image-6753" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=1024%2C216&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=300%2C63&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=768%2C162&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=1536%2C324&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=2048%2C432&ssl=1 2048w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=1200%2C253&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=676%2C143&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-5.png?resize=1320%2C279&ssl=1 1320w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="149" data-attachment-id="6755" data-permalink="https://geoenergymath.com/2026/06/11/nao-unfiltered/image-267/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?fit=2431%2C537&ssl=1" data-orig-size="2431,537" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?fit=676%2C149&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=676%2C149&ssl=1" alt="Line graph depicting tidal force time series from 1962 to 1967, showing the value on the vertical axis with red and blue lines representing different models and variations." class="wp-image-6755" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=1024%2C226&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=300%2C66&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=768%2C170&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=1536%2C339&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=2048%2C452&ssl=1 2048w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=1200%2C265&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=676%2C149&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-6.png?resize=1320%2C292&ssl=1 1320w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| climexp.knmi.nl |
Climate Explorer: Monthly time series
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="499" data-attachment-id="6761" data-permalink="https://geoenergymath.com/2026/06/11/nao-unfiltered/image-269/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?fit=1606%2C1186&ssl=1" data-orig-size="1606,1186" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?fit=676%2C499&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?resize=676%2C499&ssl=1" alt="Time series graph of NAO values from 1880 to 2020, showing model and data trends." class="wp-image-6761" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?resize=1024%2C756&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?resize=300%2C222&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?resize=768%2C567&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?resize=1536%2C1134&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?resize=1200%2C886&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?resize=676%2C499&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?resize=1320%2C975&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/06/image-8.png?w=1606&ssl=1 1606w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| realclimate.org |
RealClimate: Unforced Variations: June 2026
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| degruyterbrill.com |
The effect of regional sea level atmospheric pressure on …
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| gist.github.com |
Analysis of SLP from PSMSL stations, using HadSLP2
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="573" data-attachment-id="6686" data-permalink="https://geoenergymath.com/2026/05/29/revisit-sea-level-pressure-paper/image-259/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?fit=1296%2C1098&ssl=1" data-orig-size="1296,1098" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?fit=676%2C573&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?resize=676%2C573&ssl=1" alt="Scatter plot showing sea level pressure in New York from 1840 to 2020, with a detailed breakdown on the right illustrating monthly data gaps." class="wp-image-6686" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?resize=1024%2C868&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?resize=300%2C254&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?resize=768%2C651&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?resize=1200%2C1017&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?resize=676%2C573&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-17.png?w=1296&ssl=1 1296w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="450" data-attachment-id="6690" data-permalink="https://geoenergymath.com/2026/05/29/revisit-sea-level-pressure-paper/image-260/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-18.png?fit=1098%2C730&ssl=1" data-orig-size="1098,730" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-18.png?fit=676%2C450&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-18.png?resize=676%2C450&ssl=1" alt="A code snippet displaying analysis related to the monthly sea-level pressure in New York, with a focus on seasonal effects and pressure clusters for different months." class="wp-image-6690" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-18.png?resize=1024%2C681&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-18.png?resize=300%2C199&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-18.png?resize=768%2C511&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-18.png?resize=676%2C449&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-18.png?w=1098&ssl=1 1098w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="288" data-attachment-id="6698" data-permalink="https://geoenergymath.com/2026/05/29/revisit-sea-level-pressure-paper/honolulu/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?fit=1416%2C604&ssl=1" data-orig-size="1416,604" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="honolulu" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?fit=676%2C288&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?resize=676%2C288&ssl=1" alt="Line graph depicting data trends in Honolulu from 1840 to 2020, with four highlighted yellow trend lines and scattered blue data points." class="wp-image-6698" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?resize=1024%2C437&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?resize=300%2C128&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?resize=768%2C328&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?resize=1200%2C512&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?resize=676%2C288&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?resize=1320%2C563&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/honolulu.png?w=1416&ssl=1 1416w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| gist.github.com |
It reads a HadSLP2 TSV, searches over diagonal slopes in rotated coordinates u = pressure – slope * time, identifies the strongest ridge, writes the power spectrum and ridge profile as TSVs, and saves a PNG with the ridge overplotted on the scatter plus the spectrum. See the previous GIST
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="535" data-attachment-id="6581" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-242/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?fit=1935%2C1533&ssl=1" data-orig-size="1935,1533" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?fit=676%2C535&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?resize=676%2C535&ssl=1" alt="A graph showing the Length of Day (LOD) delta in milliseconds over the years from 1960 to 2010, with marked points at 1983.1, 1992.2, 1997.9, and 2007.3." class="wp-image-6581" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?resize=1024%2C811&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?resize=300%2C238&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?resize=768%2C608&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?resize=1536%2C1217&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?resize=1200%2C951&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?resize=676%2C536&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?resize=1320%2C1046&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image.png?w=1935&ssl=1 1935w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="582" data-attachment-id="6585" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-243/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?fit=1386%2C1193&ssl=1" data-orig-size="1386,1193" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?fit=676%2C582&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?resize=676%2C582&ssl=1" alt="A bar chart displaying various amplitude values across different categories labeled Mf', Mm, Mt, and others, with the highest amplitude represented by Mf and a smaller peak for Mt'." class="wp-image-6585" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?resize=1024%2C881&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?resize=300%2C258&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?resize=768%2C661&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?resize=1200%2C1033&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?resize=676%2C582&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?resize=1320%2C1136&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-1.png?w=1386&ssl=1 1386w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="240" data-attachment-id="6590" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-244/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?fit=1553%2C551&ssl=1" data-orig-size="1553,551" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?fit=676%2C240&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?resize=676%2C240&ssl=1" alt="Line graph depicting the values of a latent or hidden forcing layer over the years from 1880 to 2022, with a light blue background and red lines illustrating fluctuations in the data." class="wp-image-6590" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?resize=1024%2C363&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?resize=300%2C106&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?resize=768%2C272&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?resize=1536%2C545&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?resize=1200%2C426&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?resize=676%2C240&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?resize=1320%2C468&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-2.png?w=1553&ssl=1 1553w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="467" data-attachment-id="6594" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-245/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?fit=1775%2C1228&ssl=1" data-orig-size="1775,1228" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?fit=676%2C467&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?resize=676%2C467&ssl=1" alt="A diagram illustrating the relationship between manifold input (blue curve), modulation/transfer function (red curve), and system response (green curve) over time. It includes panels with labeled points indicating key features of the functions." class="wp-image-6594" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?resize=1024%2C708&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?resize=300%2C208&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?resize=768%2C531&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?resize=1536%2C1063&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?resize=1200%2C830&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?resize=676%2C468&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?resize=1320%2C913&ssl=1 1320w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-3.png?w=1775&ssl=1 1775w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="504" data-attachment-id="6600" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-246/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?fit=2236%2C1668&ssl=1" data-orig-size="2236,1668" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?fit=676%2C504&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=676%2C504&ssl=1" alt="Graph showing AMO time series with model and data comparisons, including regression analysis, latent forcing layer, running windowed correlation, and power spectrum." class="wp-image-6600" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=1024%2C764&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=300%2C224&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=768%2C573&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=1536%2C1146&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=2048%2C1528&ssl=1 2048w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=200%2C150&ssl=1 200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=1200%2C895&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=676%2C504&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-4.png?resize=1320%2C985&ssl=1 1320w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="120" data-attachment-id="6609" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-248/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?fit=3153%2C561&ssl=1" data-orig-size="3153,561" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?fit=676%2C120&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=676%2C120&ssl=1" alt="A time series plot showing the standardized values of two distinct factors from 1960 to 2020, illustrated with varying shades of blue." class="wp-image-6609" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=1024%2C182&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=300%2C53&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=768%2C137&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=1536%2C273&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=2048%2C364&ssl=1 2048w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=1200%2C214&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=676%2C120&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-6.png?resize=1320%2C235&ssl=1 1320w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="749" data-attachment-id="6612" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-249/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-7.png?fit=996%2C1104&ssl=1" data-orig-size="996,1104" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-7.png?fit=676%2C749&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-7.png?resize=676%2C749&ssl=1" alt="Bar chart showing absolute amplitudes of 32 tidal factors related to AMO, with varying heights representing different amplitude values." class="wp-image-6612" style="aspect-ratio:0.9023465037429924;width:813px;height:auto" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-7.png?resize=924%2C1024&ssl=1 924w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-7.png?resize=271%2C300&ssl=1 271w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-7.png?resize=768%2C851&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-7.png?resize=676%2C749&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-7.png?w=996&ssl=1 996w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="502" data-attachment-id="6622" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-250/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?fit=2231%2C1657&ssl=1" data-orig-size="2231,1657" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?fit=676%2C502&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=676%2C502&ssl=1" alt="Time series plot of PDO data from 1880 to 2020, showing model and actual data with varying values." class="wp-image-6622" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=1024%2C761&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=300%2C223&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=768%2C570&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=1536%2C1141&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=2048%2C1521&ssl=1 2048w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=200%2C150&ssl=1 200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=1200%2C891&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=676%2C502&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-8.png?resize=1320%2C980&ssl=1 1320w" sizes="auto, (max-width: 676px) 100vw, 676px">
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| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="505" data-attachment-id="6627" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-252/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?fit=2232%2C1668&ssl=1" data-orig-size="2232,1668" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?fit=676%2C505&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=676%2C505&ssl=1" alt="Time series graph displaying NAO data from 1880 to 2026, showing model and actual data in blue and red." class="wp-image-6627" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=1024%2C765&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=300%2C224&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=768%2C574&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=1536%2C1148&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=2048%2C1530&ssl=1 2048w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=400%2C300&ssl=1 400w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=200%2C150&ssl=1 200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=1200%2C897&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=676%2C505&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-10.png?resize=1320%2C986&ssl=1 1320w" sizes="auto, (max-width: 676px) 100vw, 676px">
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Анализировать url |
| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="504" data-attachment-id="6639" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-254/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?fit=2236%2C1665&ssl=1" data-orig-size="2236,1665" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?fit=676%2C504&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=676%2C504&ssl=1" alt="Time series graph for Site#iode with validation results representing model and data from 1880 to 2020." class="wp-image-6639" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=1024%2C763&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=300%2C223&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=768%2C572&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=1536%2C1144&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=2048%2C1525&ssl=1 2048w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=200%2C150&ssl=1 200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=1200%2C894&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=676%2C503&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-12.png?resize=1320%2C983&ssl=1 1320w" sizes="auto, (max-width: 676px) 100vw, 676px">
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Анализировать url |
| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="502" data-attachment-id="6643" data-permalink="https://geoenergymath.com/2026/05/23/enso-and-amo-manifolds/image-255/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?fit=2236%2C1659&ssl=1" data-orig-size="2236,1659" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0","alt":""}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?fit=676%2C502&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=676%2C502&ssl=1" alt="A series of four graphs displaying time series data, model performance, and correlation analysis over a timeline from 1880 to 2026, featuring various statistical metrics and modulations." class="wp-image-6643" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=1024%2C760&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=300%2C223&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=768%2C570&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=1536%2C1140&ssl=1 1536w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=2048%2C1520&ssl=1 2048w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=1200%2C890&ssl=1 1200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=676%2C502&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/05/image-13.png?resize=1320%2C979&ssl=1 1320w" sizes="auto, (max-width: 676px) 100vw, 676px">
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Анализировать url |
| hpiers.obspm.fr |
hpiers.obspm.fr/eop-pc/products/combined/C04.php?date=3&eop=3&year1=1962&month1=1&day1=1&year2=2012&month2=12&day2=31&SUBMIT=Submit+Search
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| en.wikipedia.org |
Arnold tongue - Wikipedia
|
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| doi.org |
https://doi.org/10.1175/EI-D-15-0014.1
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| doi.org |
10.1126/science.aan8819
|
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| arxiv.org |
SINDy-KANs: Sparse identification of non-linear dynamics through Kolmogorov-Arnold networks
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| scholar.google.com |
AA Howard
|
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| scholar.google.com |
N Zolman
|
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| scholar.google.com |
B Jacob
|
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| scholar.google.com |
SL Brunton
|
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| scholar.google.com |
P Stinis
|
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| gist.github.com |
https://gist.github.com/pukpr/06901b7dde1e84a60cf8d712a6af7a5d
|
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| doi.org |
https://doi.org/10.1145/382264.382432
|
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| dl.acm.org |
<em>https://doi.org/10.1145/382264.382432 </em>
|
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| x.com |
Het Mehta on X: “most people think bigger context window = smarter model it doesn’t it just means more tokens to confuse it what’s the dumbest thing you’ve seen an llm forget mid-conversation?” / X
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| twitter.com |
Tweet
|
|
| gemini.google.com |
Gemini
|
Анализировать url |
| i0.wp.com |
<img data-recalc-dims="1" loading="lazy" decoding="async" width="676" height="676" data-attachment-id="6496" data-permalink="https://geoenergymath.com/2026/04/24/global-forcing-local-modulation-revealed/image-239/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?fit=1200%2C1200&ssl=1" data-orig-size="1200,1200" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0"}" data-image-title="image" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?fit=676%2C676&ssl=1" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=676%2C676&ssl=1" alt="Line graphs showing three columns: Original Data (top), Model (middle), and Latent Forcing Manifold (bottom) with time on the x-axis ranging from 1850 to 2025. Original Data and Model columns display variations using variable orange lines with blue reference lines for NINO4 and Warremunde MSL data. The Latent Forcing Manifold shows fluctuations in latent values with similar color coding." class="wp-image-6496" srcset="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=1024%2C1024&ssl=1 1024w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=300%2C300&ssl=1 300w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=150%2C150&ssl=1 150w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=768%2C768&ssl=1 768w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=800%2C800&ssl=1 800w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=600%2C600&ssl=1 600w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=400%2C400&ssl=1 400w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=200%2C200&ssl=1 200w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?resize=676%2C676&ssl=1 676w, https://i0.wp.com/geoenergymath.com/wp-content/uploads/2026/04/image-6.png?w=1200&ssl=1 1200w" sizes="auto, (max-width: 676px) 100vw, 676px">
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Анализировать url |
| gravatar.com |
<img alt='' src='https://secure.gravatar.com/avatar/391097c8ce0bcac8f81888257164091ca2c7c220dcf231a4b1bd348a2f098f64?s=48&d=identicon&r=g' srcset='https://secure.gravatar.com/avatar/391097c8ce0bcac8f81888257164091ca2c7c220dcf231a4b1bd348a2f098f64?s=96&d=identicon&r=g 2x' class='avatar avatar-48 photo' height='48' width='48' loading='lazy' decoding='async'>
|
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| gravatar.com |
Phil Salmon
|
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| twitter.com |
<img width="300" height="160" src="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2020/11/twitterban.png?fit=300%2C160&ssl=1" class="image wp-image-3219 attachment-medium size-medium" alt="" style="max-width: 100%; height: auto;" decoding="async" loading="lazy" data-attachment-id="3219" data-permalink="https://geoenergymath.com/twitterban/" data-orig-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2020/11/twitterban.png?fit=599%2C320&ssl=1" data-orig-size="599,320" data-comments-opened="1" data-image-meta="{"aperture":"0","credit":"","camera":"","caption":"","created_timestamp":"0","copyright":"","focal_length":"0","iso":"0","shutter_speed":"0","title":"","orientation":"0"}" data-image-title="twitterban" data-image-description="" data-image-caption="" data-large-file="https://i0.wp.com/geoenergymath.com/wp-content/uploads/2020/11/twitterban.png?fit=599%2C320&ssl=1">
|
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| wordpress.com |
Powered by WordPress.com
|
Анализировать url |
Конкуренты Готовность: 0%
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Рекомендательные блоки («с этим покупают», «похожие товары» и т.п.) на сайте не обнаружены — требования ст. 10.7 ФЗ-149 к сайту не применяются. Нарушений нет.
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Признаков информационной продукции (новости, видео, книги, игры, курсы) не обнаружено — обязательная возрастная маркировка по ФЗ-436 сайту не требуется. Нарушений нет.
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