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Light Waves: Properties and Applications in Optical Detectors
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Introduces inelastic scattering in transmission electron microscopy, focusing on electron energy-loss spectroscopy principles and applications.
Quantities of Movement and Energy
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Explores quantities of movement, impulse, work, energy, and momentum, including Newton's laws and technical equation solutions.
Electromagnetic Waves: Concepts and Interactions
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Explores electromagnetic waves, photons, coherence length, superposition, and wave emission.
Electromagnetic Waves: Maxwell Equations and Propagation
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Explores Maxwell equations, electromagnetic wave propagation, energy conservation, and wave characteristics.
Quantum Mechanics: Energy Levels
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Explores quantum mechanics, energy quantization, and wave-particle duality in microscopic systems.
Quantum Mechanics: Electron Propagation and Measurement
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Covers electron propagation, quantum operators, and the measurement process in quantum mechanics.
Wave and Particle View
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Explores the particle and wave views of energy transport and their mathematical expressions.
Dynamics: Newton's Laws
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Explores the dynamics of objects in motion and Newton's laws.
Introduction to Continuum Mechanics
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Covers the basics of continuum mechanics, including vector and tensor analysis, kinematics, and fluid mechanics.
Fundamental Equations: Conservation and Thermodynamics
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Continuous Mass Transfer
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Shock and Trigger Wave Formation: Piston
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Covers the formation of shock and trigger waves in a fluid at rest.
Quantum Mechanics: Fundamentals
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Introduces the fundamentals of quantum mechanics, covering wave functions and energy levels.
Maxwell Equations: Vacuum and Polarizable Matter
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Renewable Energy: Introduction
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Rigid Body Dynamics: Center of Mass
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Energy, Human Needs and Wellbeing
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Delves into the interplay between energy, human needs, and sustainability, emphasizing sufficiency and social wellbeing.
Electromagnetism Overview
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Explores the use of scalar and vector potentials in electromagnetism to simplify calculations and solve engineering problems efficiently.
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