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number_of_hadley_cell/Hadley_cell2.txt
part2 ------------------- Mechanism and characteristics[edit] On average, the Hadley circulation is composed of two cells in the northern and southern hemispheres that circulate air within the tropics. The Hadley circulation describes the broad, thermally direct, and meridional overturning of air within the troposphere...
earth_science-0/extraction_0.txt
It is useful to define terms for these regimes. In Earth’s atmosphere, the regime of R​o≳1greater-than-or-equivalent-to𝑅𝑜1Ro\\gtrsim 1 approximately coincides with the tropics, occurring equatorward of ∼similar-to\\sim20–30∘superscript3030^{\\circ} latitude, whereas the regime of R​o≪1much-less-than𝑅𝑜1Ro\\ll 1 appr...
earth_science-0/extraction_2.txt
# 3.3. Eddy Energies, Eddy Length Scales, and Separation Scales between Jets The supercriticality constraint $S \_ { c } ~ \\lesssim ~ 1$ also constrains characteristics of atmospheric macroturbulence. In quasigeostrophic models, circulations with $S \_ { c } \\gg 1$ are possible and have been simulated (e.g., Panetta ...
earth_science-0/extraction_4.txt
The structure of the Hadley cell is strongly controlled by planetary rotation. Frictional drag acts most strongly in the surface branch of the circulation, and the upper branch, being decoupled from the surface, is generally less affected by frictional drag. A useful limit to consider is one where the upper branch is f...
earth_science-0/extraction_5.txt
Planets generally exhibit meridional gradients of the mean incident stellar flux, with, at low obliquity, highly irradiated, warm conditions at low latitudes and poorly irradiated, cooler conditions at high latitudes. The Hadley circulation represents the tropical response to this insolation gradient and is the primary...
earth_science-0/extraction_6.txt
The thermally direct meridional circulation named after Hadley extends from equatorial regions only to about $3 0 ^ { \\circ }$ latitude in each hemisphere (Figure 1c), with slight seasonal shifts of the poleward boundaries of the Hadley cells. The thermally indirect midlatitude cells named after Ferrel cannot be under...
plant_produce_oxygen/algae_htm3.txt
more information on current conditions... Dismiss View all alerts Contact Us Algae While some plants decorate the landscape and are very visible at Rocky Mountain National Park, others are seldom seen. Tiny floating plants, called algae, live in lakes, wetlands, ...
earth_science-100/extraction_0.txt
# **How much oxygen comes from the ocean?** ## About **half** of Earth’s oxygen comes from the **ocean**; about the same amount is **consumed by marine life**. _The surface layer of the ocean is teeming with photosynthetic plankton. Though they're invisible to the naked eye, they produce more oxygen than the largest re...
earth_science-100/extraction_1.txt
# Oxygen Factories in the Southern Ocean !January 13, 2016 January 13, 2016 JPEG Phytoplankton are the grass of the sea. They are floating, drifting, plant-like organisms that harness the energy of the Sun, mix it with carbon dioxide that they take from the atmosphere, and turn it into carbohydrates and oxygen. Phytopl...
earth_science-100/extraction_2.txt
The sum of the biomass across all taxa on Earth is ≈550 Gt C, of which ≈80% (≈450 Gt C; _SI Appendix_, Table S2) are plants, dominated by land plants (embryophytes). The second major biomass component is bacteria (≈70 Gt C; _SI Appendix_, Tables S3–S7), constituting ≈15% of the global biomass. Other groups, in descendi...
earth_science-100/extraction_3.txt
### Abstract In the first side-by-side large-scale trials of these two C4 crops in the U.S. Corn Belt, Miscanthus ( _Miscanthus_ × _giganteus_) was 59% more productive than grain maize ( _Zea mays_). Total productivity is the product of the total solar radiation incident per unit land area and the efficiencies of light...
earth_science-100/extraction_5.txt
### Abstract Duckweeds are floating plants of the family _Lemnaceae_, comprising 5 genera and 36 species. They typically live in ponds or lakes and are found worldwide, except the polar regions. There are two duckweed subfamilies _—_ namely _Lemnoidea_ and _Wolffioideae_, with 15 and 21 species, respectively. Additiona...
earth_science-100/extraction_6.txt
## Abstract Sustainability is becoming increasingly important in the world we live in, because of the rapid global population growth and climate change (drought, extreme temperature fluctuations). People in developing countries need more sustainable protein sources instead of the traditional, less sustainable meat, fis...
earth_science-100/extraction_7.txt
The commonly held belief that plants clean indoor air can be traced back to the seminal 1989 NASA study discussed in our previous blog post. This landmark study set out to find out if plants can clean the air in sealed environments, like a space station. Researchers found that in addition to absorbing carbon dioxide, c...
far_from_sea_level/how_far_above_sea_level_can_you_get_on_the_equator3.txt
2 Answers 2 Sorted by: Reset to default Highest score (default) Date modified (newest first) ...
earth_science-101/extraction_0.txt
## Equatorial seasons and climate Main articles: Season and Effect of Sun angle on climate Further information: Tropics [](https://en.wikipedia.org/wiki/File:Seasons.svg) Diagram of the seasons, showing the situation at the December solstice. Regardless of the time of day (i.e. Earth's rotation on its axis), the North ...
earth_science-101/extraction_1.txt
# Cayambe - Equator High Point, Ecuador | | | | | --- | --- | --- | | Prominence: 0 m, 0 ft | ## Elevation: 4680+ meters, 15,354+ feet | Approx. Isolation: 0 km, 0 mi | | Peak Type | Slope Point (Volcanic), subsidiary to Volcán Cayambe | | Elevation Info | Elevation range: 4680 - 4720 m<br> (40-meter closed contour) | ...
earth_science-101/extraction_3.txt
# Timboroa, Kenya | | | | | --- | --- | --- | | Prominence: 420 m, 1378 ft | ## Elevation: 2900 meters, 9514 feet | Approx. Isolation: 26.8 km, 16.65 mi | | Latitude/Longitude (WGS84) | 0.01313, 35.52189 (Dec Deg)<br>0° 0' 47'' N, 35° 31' 19'' E (DMS) | | Map Source | Kenya - SOK/DOS (1:50,000)<br> Sheet: Timboroa (104...
earth_science-102/extraction_0.txt
# Wind !Trees laid flat from a microburst The strong winds of a microburst blew these trees down. Notice how they are all blown in the same direction. Credit: NOAA Wind is air moving from a place that has higher pressure to one that has lower pressure. Let’s say that you blow up a balloon but don’t tie a knot at the op...
earth_science-102/extraction_1.txt
Earth's atmosphere is our natural shield against the harsh conditions of space—including everything from meteors and falling satellites to deadly ultraviolet radiation from the sun. It also contains the air we breathe, the weather we experience and helps to regulate planetary temperatures. The atmosphere consists of la...
earth_science-102/extraction_2.txt
## Distributions of the Value of Molecular Speed In the mid-19th century, James Maxwell and Ludwig Boltzmann derived an equation for the distribution of molecular speeds in a gas. Graphing this equation gives us the _Maxwell-Boltzmann distribution of speeds._ The Maxwell-Boltzmann speed distribution curve for N2 at 25º...
earth_science-102/extraction_3.txt
## Drag Drag depends on the density of the air, the square of the velocity, the air’s viscosity and compressibility, the size and shape of the body, and the body’s inclination to the flow. In general, the dependence on body shape, inclination, air viscosity, and compressibility is very complex. ## Drag Coefficient One ...
co2_breakdown/co2_budget_html3.txt
Working groupsRemaining carbon budgetPolicy BriefsVideos "Climate & The Economy"ProjectsPublications Home / Research / Remaining carbon budget That’s how fast the Carbon Clock is ticking The MCC Carbon Clock shows how much CO2 can be released into the atmosph...
co2_breakdown/Carbon_budget3.txt
General What links hereRelated changesUpload fileSpecial pagesPermanent linkPage informationCite this pageGet shortened URLDownload QR codeWikidata item Print/export Download as PDFPrintable version In other projects Wikimedia Commons From Wikipedia, the free encycl...
earth_science-103/extraction_0.txt
D. Limiting Future Climate Change Since AR5, estimates of remaining carbon budgets have been improved by a new methodology first presented in SR1.5, updated evidence, and the integration of results from multiple lines of evidence. A comprehensive range of possible future air pollution controls in scenarios is used to c...
earth_science-103/extraction_1.txt
## Getting tipsy Climate tipping points are conditions beyond which changes in a part of the climate system become self-perpetuating. These changes may lead to abrupt, irreversible, and dangerous impacts with serious implications for humanity. Armstrong McKay _et al_. present an updated assessment of the most important...
earth_science-103/extraction_2.txt
### 3.3.4 Overshoot Pathways: Increased Risks and Other Implications Exceeding a specific remaining carbon budget results in higher global warming. Achieving and sustaining net negative global ${ \\mathsf { C O } } \_ { 2 }$ emissions could reverse the resulting temperature exceedance (high confidence). Continued reduc...
earth_science-104/extraction_0.txt
### B. SPHERICAL HARMONICS In the geosciences, a commonly used form of harmonics are the surface spherical harmonics. These functions are much used in geodesy because they are relatively simple to use and because the earth's shape can be approximated by a sphere. The coordinates normally associated with spherical harmo...
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BrightProEarthScienceRetrieval

An MTEB dataset
Massive Text Embedding Benchmark

Part of the BRIGHT-Pro benchmark for reasoning-intensive retrieval in agentic search settings. Earth Science StackExchange queries are paired with multi-aspect gold evidence drawn from a long-form reference answer covering several reasoning aspects.

Task category Retrieval (text-to-text)
Domains Non-fiction, Written
Reference Rethinking Reasoning-Intensive Retrieval: Evaluating and Advancing Retrievers in Agentic Search Systems

Source datasets:

How to evaluate on this task

You can evaluate an embedding model on this dataset using the following code:

import mteb

task = mteb.get_task("BrightProEarthScienceRetrieval")
model = mteb.get_model(YOUR_MODEL)
mteb.evaluate(model, task)

To learn more about how to run models on mteb task check out the GitHub repository.

Citation

If you use this dataset, please cite the dataset as well as mteb, as this dataset likely includes additional processing as a part of the MMTEB Contribution.


@article{Zhao2026RethinkingRR,
  author = {Yilun Zhao and Jinbiao Wei and Tingyu Song and Siyue Zhang and Chen Zhao and Arman Cohan},
  journal = {arXiv preprint arXiv:2605.04018},
  title = {Rethinking Reasoning-Intensive Retrieval: Evaluating and Advancing Retrievers in Agentic Search Systems},
  year = {2026},
}


@article{enevoldsen2025mmtebmassivemultilingualtext,
  title={MMTEB: Massive Multilingual Text Embedding Benchmark},
  author={Kenneth Enevoldsen and Isaac Chung and Imene Kerboua and Márton Kardos and Ashwin Mathur and David Stap and Jay Gala and Wissam Siblini and Dominik Krzemiński and Genta Indra Winata and Saba Sturua and Saiteja Utpala and Mathieu Ciancone and Marion Schaeffer and Gabriel Sequeira and Diganta Misra and Shreeya Dhakal and Jonathan Rystrøm and Roman Solomatin and Ömer Çağatan and Akash Kundu and Martin Bernstorff and Shitao Xiao and Akshita Sukhlecha and Bhavish Pahwa and Rafał Poświata and Kranthi Kiran GV and Shawon Ashraf and Daniel Auras and Björn Plüster and Jan Philipp Harries and Loïc Magne and Isabelle Mohr and Mariya Hendriksen and Dawei Zhu and Hippolyte Gisserot-Boukhlef and Tom Aarsen and Jan Kostkan and Konrad Wojtasik and Taemin Lee and Marek Šuppa and Crystina Zhang and Roberta Rocca and Mohammed Hamdy and Andrianos Michail and John Yang and Manuel Faysse and Aleksei Vatolin and Nandan Thakur and Manan Dey and Dipam Vasani and Pranjal Chitale and Simone Tedeschi and Nguyen Tai and Artem Snegirev and Michael Günther and Mengzhou Xia and Weijia Shi and Xing Han Lù and Jordan Clive and Gayatri Krishnakumar and Anna Maksimova and Silvan Wehrli and Maria Tikhonova and Henil Panchal and Aleksandr Abramov and Malte Ostendorff and Zheng Liu and Simon Clematide and Lester James Miranda and Alena Fenogenova and Guangyu Song and Ruqiya Bin Safi and Wen-Ding Li and Alessia Borghini and Federico Cassano and Hongjin Su and Jimmy Lin and Howard Yen and Lasse Hansen and Sara Hooker and Chenghao Xiao and Vaibhav Adlakha and Orion Weller and Siva Reddy and Niklas Muennighoff},
  publisher = {arXiv},
  journal={arXiv preprint arXiv:2502.13595},
  year={2025},
  url={https://arxiv.org/abs/2502.13595},
  doi = {10.48550/arXiv.2502.13595},
}

@article{muennighoff2022mteb,
  author = {Muennighoff, Niklas and Tazi, Nouamane and Magne, Loïc and Reimers, Nils},
  title = {MTEB: Massive Text Embedding Benchmark},
  publisher = {arXiv},
  journal={arXiv preprint arXiv:2210.07316},
  year = {2022}
  url = {https://arxiv.org/abs/2210.07316},
  doi = {10.48550/ARXIV.2210.07316},
}

Dataset Statistics

Dataset Statistics

The following code contains the descriptive statistics from the task. These can also be obtained using:

import mteb

task = mteb.get_task("BrightProEarthScienceRetrieval")

desc_stats = task.metadata.descriptive_stats
{
    "standard": {
        "num_samples": 123690,
        "num_queries": 115,
        "num_documents": 123575,
        "number_of_characters": 53354981,
        "documents_text_statistics": {
            "total_text_length": 53299932,
            "min_text_length": 1,
            "average_text_length": 431.31646368602065,
            "max_text_length": 240730,
            "unique_texts": 119953
        },
        "documents_image_statistics": null,
        "documents_audio_statistics": null,
        "documents_video_statistics": null,
        "queries_text_statistics": {
            "total_text_length": 55049,
            "min_text_length": 83,
            "average_text_length": 478.68695652173915,
            "max_text_length": 1565,
            "unique_texts": 115
        },
        "queries_image_statistics": null,
        "queries_audio_statistics": null,
        "queries_video_statistics": null,
        "relevant_docs_statistics": {
            "num_relevant_docs": 856,
            "min_relevant_docs_per_query": 1,
            "average_relevant_docs_per_query": 7.443478260869565,
            "max_relevant_docs_per_query": 18,
            "unique_relevant_docs": 856
        },
        "top_ranked_statistics": null
    }
}

This dataset card was automatically generated using MTEB

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