Climate Change Science articles for National Oceanic and Atmospheric Administration (NOAA), United States of America (USA)

Time frame: 1 June 2025 - 30 May 2026
Count: 35

Article ‘Count’ for Climate Change Science.

Journal Count Share
3 0.98
Airborne Measurements Suggest That Halocarbon Emissions from the New York City Urban Region Have Comparable Climate Impacts to Its Methane Emissions 0.50
Assessing the Accuracy of Global HFC-134a Satellite Observations from Atmospheric Chemistry Experiment Fourier Transform Spectrometer (ACE-FTS) via Aircraft, Balloon, and Model Comparisons 0.13
Trends in CH4 Emission Sources in the Los Angeles Basin from 2010 to 2023 Using Airborne Measurements 0.36
13 5.17
Evaluating Machine Learning Weather Models for Data Assimilation: Fundamental Limitations in Tangent Linear and Adjoint Properties 0.83
Modal Interference Drives Madden-Julian Oscillation Evolution and Predictability 0.91
State‐Dependence of Polar Amplification in an Idealized GCM 0.38
Evolution of Near-Term Atmospheric Methane and Associated Temperature Response Under the Global Methane Pledge: Insights From an Earth System Model 0.08
La Niña Obscures the North Atlantic Response to Sudden Stratospheric Warmings in C3S Seasonal Forecasts 0.25
Apparent Changes in Pacific Decadal Variability Caused by Anthropogenically Induced Mean State Modulations 0.04
ColdBlobMIP: A Multi-Model Assessment of the Atmospheric Response to the North Atlantic Warming Hole 0.13
A Diachronic Assessment of Advances in Seasonal Forecasting: Evolution of the APCC Multi‐Model Ensemble Prediction System Over the Last Two Decades 0.05
The Efficiency of Water Vapor on Top‐of‐Atmosphere Radiation 0.40
Importance of Ocean Initialization in ENSO Predictions: Accuracy Versus Consistency 1.00
Projected Response of Santa Ana Winds Over Southern California to Global Warming by a High‐Resolution Climate Model 0.50
Improving ENSO Prediction at Longer Lead Times: Role of Off‐Equatorial South Pacific Heat Content 0.17
The Spatiotemporal Dynamics of Heatwaves and Cold‐Spells in Earth's Largest Freshwater Systems 0.45
7 0.84
Multi‐Model Impacts of Dust on African Air Quality and Mortality Under Regional and Global Anthropogenic Aerosol Changes 0.01
Sensitivity of the 2023 Asian Summer Monsoon Water Vapor Transport to Arabian Sea Surface Temperature Anomalies 0.07
Role of Diurnal Cycle of Insolation on the MJO Propagation in the Maritime Continent 0.14
Snow Cover Plays a Non‐Dominant Role in WRF/Noah‐MP Simulated Surface Air Temperature Cold Biases Over the Western U.S. 0.08
Total Column GHG Ratios From Ground‐Based Measurements Inform Emissions Inventories 0.35
Reducing Tropical Cyclone Activity in Global Climate Models by Evaporative Suppression 0.08
Estimating Urban CH4 ${\text{CH}}_{4}$ Emissions From Satellite‐Derived Enhancement Ratios of CH4 ${\text{CH}}_{4}$, CO2 ${\text{CO}}_{2}$, and CO 0.10
1 0.88
A strong constraint on radiative forcing of well-mixed greenhouse gases 0.88
1 0.33
Pan-basin warming now overshadows robust Pacific Decadal Oscillation 0.33
4 1.06
Incorporating methane isotopologues alters tropical and subtropical methane emission estimates 0.15
Continuing industrial emissions are delaying the recovery of the stratospheric ozone layer 0.14
Increasing wintertime cloud opacity increases surface longwave radiation at a long-term Arctic observatory 0.17
The longest-lasting 2023 western North American heat wave was fueled by the record-warm Atlantic Ocean 0.60
1 0.06
Emergent constraints on future methane emissions from global wetlands 0.06
2 0.42
On the large-scale radiative cooling induced by tropical cyclone activity 0.08
Microbial driver of 2006–2023 CH4 growth indicated by trends in atmospheric δD–CH4 and δ13C–CH4 0.33
1 0.02
Why methane surged in the atmosphere during the early 2020s 0.02
2 0.26
Attributing 2019–2024 methane growth using TROPOMI satellite observations 0.06
Positive Indian Ocean Dipole intensifies marine heatwaves in the tropical southeast Atlantic coastal region 0.20

Numerical information only (in the tables above) is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International.