Climate change and the depletion of the ozone layer are two important global environmental problems caused by the release of gases into the atmosphere. This dissertation uses multiple linear regression to quantify the natural and human components that affect Earth’s global mean surface temperature (GMST) and the thickness of the ozone layer. To analyze changes in Earth’s climate, the Empirical Model of Global Climate (EM-GC) is used to simulate and project variations in GMST. Numerous scenarios of greenhouse gas and aerosol emissions are considered to analyze the probability of achieving the 1.5 and 2.0°C warming goals set by the Paris Agreement. There is a 53% likelihood of the rise in GMST staying below 1.5°C if the world follows the gree...
The impact of climate change on surface ozone over Europe was studied using four offline regional ch...
The climate of the Earth is changing in response to natural and anthropogenic forcing agents. Emissi...
International audienceWe investigate the response of surface ozone (O3) to future climate change in ...
This dissertation focuses on understanding the complex interaction of air quality and climate change...
Abstract This thesis examines global warming and the possible contribution that ozone depletion prov...
The current episode of global warming is one of, if not the, biggest challenge to modern society as ...
[1] An integrated global model of climate, tropospheric gas phase chemistry, and aerosols has been u...
Tropospheric ozone is currently the third most important anthropogenic greenhouse gas in terms of ra...
The existence of ozone as a greenhouse gas in the Earth‘s climate system has a great impact on the r...
Global mean surface temperatures (GMST) warmed in the early 20th century, experienced a mid-century ...
The Earth's middle atmosphere at about 10-100 km has shown a substantial sensitivity to human activi...
Global tropospheric ozone distributions, budgets, and radiative forcings from an ensemble of 26 stat...
As pointed by the IPCC, climate change and evolution of green house gases emissions in the coming de...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
We examine the characteristics of the climate response to anthropogenic changes in tropospheric ozon...
The impact of climate change on surface ozone over Europe was studied using four offline regional ch...
The climate of the Earth is changing in response to natural and anthropogenic forcing agents. Emissi...
International audienceWe investigate the response of surface ozone (O3) to future climate change in ...
This dissertation focuses on understanding the complex interaction of air quality and climate change...
Abstract This thesis examines global warming and the possible contribution that ozone depletion prov...
The current episode of global warming is one of, if not the, biggest challenge to modern society as ...
[1] An integrated global model of climate, tropospheric gas phase chemistry, and aerosols has been u...
Tropospheric ozone is currently the third most important anthropogenic greenhouse gas in terms of ra...
The existence of ozone as a greenhouse gas in the Earth‘s climate system has a great impact on the r...
Global mean surface temperatures (GMST) warmed in the early 20th century, experienced a mid-century ...
The Earth's middle atmosphere at about 10-100 km has shown a substantial sensitivity to human activi...
Global tropospheric ozone distributions, budgets, and radiative forcings from an ensemble of 26 stat...
As pointed by the IPCC, climate change and evolution of green house gases emissions in the coming de...
The impact of climate change between 2000 and 2095 SRES A2 climates on surface ozone (O)3 and on O3 ...
We examine the characteristics of the climate response to anthropogenic changes in tropospheric ozon...
The impact of climate change on surface ozone over Europe was studied using four offline regional ch...
The climate of the Earth is changing in response to natural and anthropogenic forcing agents. Emissi...
International audienceWe investigate the response of surface ozone (O3) to future climate change in ...