Covers an overview of the climate system, including global issues, mechanisms of climate change, impacts on biodiversity, and the role of greenhouse gases.
Covers the Earth's climate system components, interactions, and energy balance, including the impact of anthropogenic forcings and the role of the biosphere.
Explores the Diffusion Approximation method for solving the RTE in tissue optics, emphasizing its limitations and applications, along with the practical aspects of Monte Carlo simulations.
Explores radiative forcing, climate sensitivity, and feedback mechanisms in climate change, emphasizing the role of various components like CO2 and methane.
Explores paleoclimate through ice cores, isotopes, and temperature reconstructions, highlighting the influence of Earth's orbit and greenhouse gases on climate patterns.
Explores emissivity, absorptivity, and reflectivity of surfaces, including spectral and directional properties, laws of reciprocity, and practical examples.