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Introduction to Astrophysics: Hydrostatic Equilibrium
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Related lectures (30)
Planetary Atmospheres: Hydrostatic Equilibrium Equation
MOOC: Introduction to Astrophysics
Covers the hydrostatic equilibrium equation in planetary atmospheres and conditions for retaining an atmosphere.
Astrophysical Objects: Static Systems
Explores spherically symmetric and static astrophysical objects, including black holes and the modeling of matter.
Sustainable Development Goals: Individual and Collective Actions
Emphasizes the role of individual and collective actions in achieving sustainability through the Sustainable Development Goals and the successes of the Millennium Development Goals.
Thermodynamic Coefficients: Applications
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Explores the practical applications of calorimetric coefficients in thermodynamics, including specific calculations for perfect gases.
Chemical Equilibria and Reactivity
Explores gas properties, pressure, ideal and real gases, energy in reactions, and gas laws.
Energy Balance of Planets
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Explores the energy balance of planets, emphasizing the Earth's factors affecting its overall energy equilibrium.
Atomic Model & Ideal Gas
Explores the atomic model, ideal gas kinetics, and thermal energy in systems.
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Explores gas diffusion, effusion, ideal gas law, pressure, kinetic theory, and gas laws.
Central Motion: Forces and Orbits
Covers moment of a force, angular momentum, and central motion in physics, including Kepler's laws and Newton's theory of universal gravitation.
Ideal Gas Model: Basics and Laws
Covers the ideal gas model, assumptions, ideal gas law, Avogadro's number, and macroscopic gas effects.
Atmospheric Models: Homogeneous & Constant Gradient
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Covers the concepts of homogeneous atmosphere, adiabatic atmosphere, and constant gradient atmosphere.
Kinetic Theory of Gases: Ideal and Van der Waals Models
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Explains the kinetic theory of gases, focusing on ideal gas behavior and the van der Waals model.
Thermo1: Evaluating Properties
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Explores evaluating properties of substances, including liquids, solids, ideal gases, and real gases, emphasizing specific heat and enthalpy.
Thermodynamics: Heat Capacity of Ideal and Van der Waals Gases
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Discusses the heat capacity of ideal gases and solids, and the Van der Waals equation's implications for real gases.
Thermodynamics and Energetics I
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Explores fundamental thermodynamics concepts, laws, energy transfer, and system analysis.
Thermodynamic Properties of Ideal Gases
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Covers the thermodynamic properties of ideal gases, including equilibrium distance, repulsive force, and kinetic energy.
Chemical Potential and Thermodynamic Functions in Mixtures
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Covers chemical potential variations and thermodynamic functions in mixtures, emphasizing their implications in real and ideal gases.
Gravitational Forces
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Covers advanced physics topics related to gravitational forces and Johannes Kepler's contributions to understanding planetary motion.
Space Mission Design: Interplanetary Trajectories and Operations
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Discusses space mission design, focusing on interplanetary trajectories, operations, and aerodynamic braking techniques.
Kinetic Theory of Ideal Gas
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Explains the kinetic theory of ideal gases and the calculation of force and pressure on surfaces.
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