Works matching DE "CLIMATE change models"
Results: 2632
A phylogenomic investigation into the biogeography of the Mexico–eastern U.S. disjunction in Symphyotrichum.
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- American Journal of Botany, 2025, v. 112, n. 3, p. 1, doi. 10.1002/ajb2.70021
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The influencer in the age of climate change: the authentic role model for sustainability.
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- Celebrity Studies, 2024, v. 15, n. 2, p. 160, doi. 10.1080/19392397.2024.2341596
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Climate change impacts on temperature and precipitation over the Caspian Sea.
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- International Journal of Water Resources Development, 2025, v. 41, n. 1, p. 31, doi. 10.1080/07900627.2024.2313050
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How compound wind and precipitation extremes change over Southeast Asia: A comprehensive assessment from CMIP6 models.
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- Atmospheric Science Letters (John Wiley & Sons, Inc. ), 2025, v. 26, n. 2, p. 1, doi. 10.1002/asl.1293
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Comparing Estimates of Whitecap Coverage From a Spectral Wave Model With Oceanic Observations.
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- Geophysical Research Letters, 2025, v. 52, n. 3, p. 1, doi. 10.1029/2024GL112996
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Mars Without the Southern Perennial CO<sub>2</sub> Cover.
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- Geophysical Research Letters, 2025, v. 52, n. 3, p. 1, doi. 10.1029/2024GL113274
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(Trying to) keep it cool: Vladimir Romanovsky on permafrost fieldwork.
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- Bulletin of the Atomic Scientists, 2025, v. 81, n. 2, p. 92, doi. 10.1080/00963402.2025.2464431
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Modeling the Influence of Climate Change on the Water Quality of Doğancı Dam in Bursa, Turkey, Using Artificial Neural Networks.
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- Water (20734441), 2025, v. 17, n. 5, p. 728, doi. 10.3390/w17050728
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Modeling the Nexus of Climate Change and Deforestation: Implications for the Blue Water Resources of the Jari River, Amazonia.
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- Water (20734441), 2025, v. 17, n. 5, p. 660, doi. 10.3390/w17050660
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Sugarcane Distribution Simulation and Climate Change Impact Analysis in China.
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- Agriculture; Basel, 2025, v. 15, n. 5, p. 491, doi. 10.3390/agriculture15050491
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Identifying a Pattern of Predictable Decadal North Pacific SST Variability in Historical Observations.
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- Geophysical Research Letters, 2025, v. 52, n. 5, p. 1, doi. 10.1029/2024GL112729
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Assessment of Hydrogen's Climate Impact Is Affected by Model OH Biases.
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- Geophysical Research Letters, 2025, v. 52, n. 5, p. 1, doi. 10.1029/2024GL112445
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Atmospheric and Oceanic Pathways Drive Separate Modes of Southern Hemisphere Climate in Simulations of Spontaneous Dansgaard‐Oeschger‐Type Oscillations.
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- Geophysical Research Letters, 2025, v. 52, n. 5, p. 1, doi. 10.1029/2024GL111473
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Energetic Constraints on Baroclinic Eddy Heat Transport With a Beta Effect in the Laboratory.
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- Geophysical Research Letters, 2025, v. 52, n. 5, p. 1, doi. 10.1029/2024GL112196
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MaxEnt Modeling and Effects of Climate Change on Shifts in Habitat Suitability for Sorbus alnifolia in China.
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- Plants (2223-7747), 2025, v. 14, n. 5, p. 677, doi. 10.3390/plants14050677
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基于优化的 MaxEnt 模型预测环状镰孢的潜在适 生区.
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- Mycosystema, 2025, v. 44, n. 2, p. 240192-1, doi. 10.13346/j.mycosystema.240192
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Impact of Mid‐Pliocene Boundary Conditions on the Atlantic Meridional Overturning Circulation (AMOC).
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- Geophysical Research Letters, 2025, v. 52, n. 4, p. 1, doi. 10.1029/2024GL113118
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Is OSSO a Significant Contributor to the Unknown UV Absorber in Venus' Atmosphere?
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- Geophysical Research Letters, 2025, v. 52, n. 4, p. 1, doi. 10.1029/2024GL113090
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Impacts of Antarctic Ice Mass Loss on New Zealand Climate.
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- Geophysical Research Letters, 2025, v. 52, n. 4, p. 1, doi. 10.1029/2024GL111047
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Complementing Dynamical Downscaling With Super‐Resolution Convolutional Neural Networks.
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- Geophysical Research Letters, 2025, v. 52, n. 4, p. 1, doi. 10.1029/2024GL111828
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Machine Learning‐Driven Skillful Decadal Predictions of German Bight Storm Surges.
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- Geophysical Research Letters, 2025, v. 52, n. 4, p. 1, doi. 10.1029/2024GL111558
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Analysis of CMIP6 Simulations in the Indian Summer Monsoon Period 1979-2014.
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- Nature Environment & Pollution Technology, 2025, v. 24, n. 1, p. 1, doi. 10.46488/NEPT.2025.v24i01.B4215
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The Principal Component Linear Spline Quantile Regression Model in Statistical Downscaling for Rainfall Data.
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- Journal of Sciences, Islamic Republic of Iran, 2024, v. 35, n. 2, p. 159
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Scenario Dependence of Future Precipitation Changes across Japan in CMIP6.
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- SOLA, 2024, v. 20, p. 207, doi. 10.2151/sola.2024-028
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Heavy Snowfall Has Already Been Enhanced by Anthropogenic Global Warming in Japan.
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- SOLA, 2024, v. 20, p. 167, doi. 10.2151/sola.2024-023
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Precipitation Diurnal Cycle over Tropical Coastal Regions Represented in Climate Experiments with a Global Cloud-System Resolving Model.
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- SOLA, 2024, v. 20, p. 145, doi. 10.2151/sola.2024-020
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Emergent Constraints on Future Changes in Several Climate Variables and Extreme Indices from Global to Regional Scales.
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- SOLA, 2024, v. 20, p. 122, doi. 10.2151/sola.2024-017
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Burning conditions and transportation pathways determine biomass-burning aerosol properties in the Ascension Island marine boundary layer.
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- Atmospheric Chemistry & Physics, 2025, v. 25, n. 4, p. 2333, doi. 10.5194/acp-25-2333-2025
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پیشنگری تغییرات دما و بارندگی تحت سناریوهای CMIP6 در استان سیستان و بلوچستان
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- Water & Soil, 2025, v. 38, n. 6, p. 780, doi. 10.22067/jsw.2024.89164.1422
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Understanding The Effects of Climate Change on Elaeidobius kamerunicus (Coleoptera: Curculionidea), An Important Oil Palm Pollinator in Malaysia: Predicting Future Distribution For The Year 2050 Under Different Climate Pathways.
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- Malaysian Applied Biology, 2024, v. 53, n. 6, p. 167, doi. 10.55230/mabjournal.v53i6.11
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Computer Modeling of the Temperature Regime of Solar Panels using Global Climate Databases.
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- Applied Solar Energy (19349424), 2024, v. 60, n. 4, p. 595, doi. 10.3103/S0003701X24600115
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Prediction of surface runoff quality and quantity using an integrated model and machine learning under climate change conditions.
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- Stochastic Environmental Research & Risk Assessment, 2025, v. 39, n. 3, p. 1015, doi. 10.1007/s00477-024-02905-x
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Projected distribution patterns of Alpinia officinarum in China under future climate scenarios: insights from optimized Maxent and Biomod2 models.
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- Frontiers in Plant Science, 2025, p. 1, doi. 10.3389/fpls.2025.1517060
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Suitability of CMIP6 Models Considering Statistical Downscaling Based on GloH2O and E-OBS Dataset in River Basin Districts of the Southeastern Baltic Sea Basin.
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- Atmosphere, 2025, v. 16, n. 2, p. 229, doi. 10.3390/atmos16020229
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Impact of Various Land Cover Transformations on Climate Change: Insights from a Spatial Panel Analysis.
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- Data (2306-5729), 2025, v. 10, n. 2, p. 19, doi. 10.3390/data10020019
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Temporal Analysis of Climate Change Impact on the Spread and Prevalence of Vector-Borne Diseases in Campania (2018–2023).
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- Microorganisms, 2025, v. 13, n. 2, p. 449, doi. 10.3390/microorganisms13020449
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Modeling the Potential Climatic Suitability and Expansion Risk of Tuta absoluta (Meyrick, 1917) (Lepidoptera: Gelechiidae) Under Future Climate Scenarios.
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- Insects (2075-4450), 2025, v. 16, n. 2, p. 185, doi. 10.3390/insects16020185
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Predicting Potential Suitable Habitats of Three Rare Wild Magnoliaceae Species (Michelia crassipes , Lirianthe coco , Manglietia insignis) Under Current and Future Climatic Scenarios Based on the Maxent Model.
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- Plants (2223-7747), 2025, v. 14, n. 4, p. 506, doi. 10.3390/plants14040506
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An innovative approach to predicting global warming without using climate model simulations.
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- National Science Review, 2025, v. 12, n. 2, p. 1, doi. 10.1093/nsr/nwae453
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Multi-objective observational constraint of tropical Atlantic and Pacific low-cloud variability narrows uncertainty in cloud feedback.
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- Nature Communications, 2025, v. 16, n. 1, p. 1, doi. 10.1038/s41467-025-56840-8
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Assessing the influence of bias correction of boundary conditions, spectral nudging and model parameterisation on model errors and climate change signals for regional climate model simulations: Assessing the influence of bias correction of boundary conditions, spectral nudging and model...: K. Wamahiu et al
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- Climate Dynamics, 2025, v. 63, n. 3, p. 1, doi. 10.1007/s00382-025-07634-7
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Evolution of Bioeconomy Models and Computational Process Simulation in the Avocado Industry: A Bibliometric Analysis (2004–2023).
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- Sustainability (2071-1050), 2025, v. 17, n. 4, p. 1601, doi. 10.3390/su17041601
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Sustainable Business as a Force for Good in the Context of Climate Change: An Econometric Modelling Approach.
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- Sustainability (2071-1050), 2025, v. 17, n. 4, p. 1530, doi. 10.3390/su17041530
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Multi-Model Ensemble Enhances the Spatiotemporal Comprehensive Performance of Regional Climate in China.
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- Remote Sensing, 2025, v. 17, n. 4, p. 582, doi. 10.3390/rs17040582
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Textile Industry 5.0? Fiber Computing Coming Soon to a Fabric Near You.
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- AATCC Review, 2020, v. 20, n. 6, p. 24, doi. 10.14504/ar.20.6.2
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Complex systems: the amazing cross-disciplinary journey of statistical physics.
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- Europhysics News, 2022, v. 53, n. 1, p. 10, doi. 10.1051/epn/2022103
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Comparative analysis of high-resolution CMIP6 GCM and CMIP5 RCM: unveiling biases and advancements in simulating compound extreme events in China.
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- Climate Dynamics, 2025, v. 63, n. 2, p. 1, doi. 10.1007/s00382-024-07571-x
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Km-scale climate simulations over Madeira and Canary Islands under present and future conditions: a model intercomparison study: Km-scale climate simulations over Madeira and Canary Islands under present...: M. Adinolfi et al.
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- Climate Dynamics, 2025, v. 63, n. 2, p. 1, doi. 10.1007/s00382-024-07563-x
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Precipitation variability in CMIP6 climate models across the North Atlantic–European region and their Links to Atmospheric Circulation.
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- Climate Dynamics, 2025, v. 63, n. 2, p. 1, doi. 10.1007/s00382-024-07556-w
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From global to regional-scale CMIP6-derived wind wave extremes: a single-GCM HighResMIP and CORDEX downscaling experiment in South-East Australia: From Global to Regional-scale CMIP6-derived...: M. Lorenzo et al.
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- Climate Dynamics, 2025, v. 63, n. 2, p. 1, doi. 10.1007/s00382-024-07504-8
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