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Bachelor of Science in Applied Physics

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Course Outline

10 sections
1. Classical Mechanics
100 mins
10 topics
Introduction to Classical Mechanics Kinematics Dynamics and Newton's Laws Work and Energy Conservation of Energy
2. Electromagnetism
80 mins
8 topics
Introduction to Electromagnetism Coulomb's Law and Electric Fields Magnetic Fields and Magnetic Forces Electromagnetic Induction Maxwell's Equations
3. Quantum Mechanics
100 mins
10 topics
Introduction to Quantum Mechanics Schrödinger Equation Quantum Operators and Observables Quantum States and Wavefunctions Quantum Entanglement
4. Nuclear and Particle Physics
80 mins
8 topics
Structure of the Atom Radioactivity and Nuclear Decay Nuclear Reactions Nuclear Binding Energy Particle Physics
5. Astrophysics
90 mins
9 topics
Introduction to Astrophysics The Fundamentals of Astronomy Stellar Evolution Galaxies and Cosmology Exoplanets and Planetary Systems
6. Thermodynamics and Statistical Mechanics
90 mins
9 topics
Introduction to Thermodynamics Thermodynamic Processes Heat Engines and Refrigerators Phase Transitions and Phase Diagrams Introduction to Statistical Mechanics
7. Optics and Waves
100 mins
10 topics
Introduction to Optics and Waves Reflection and Refraction Wave Properties Interference and Diffraction Polarization of Light
8. Solid State Physics
100 mins
10 topics
Introduction to Solid State Physics Crystal Structures Electronic Band Structure Semiconductor Physics Magnetic Properties of Solids
9. Computational Physics
80 mins
8 topics
Introduction to Computational Physics Numerical Methods in Computational Physics Monte Carlo Methods Molecular Dynamics Simulations Quantum Monte Carlo Methods
10. Research Project in Applied Physics
100 mins
10 topics
Introduction to Research in Applied Physics Importance of Applied Physics Research Research Ethics in Applied Physics Experimental Design in Applied Physics Research Data Analysis and Interpretation in Applied Physics
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