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General Physics for Pharmacy
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Related lectures (51)
Lorentz Covariant Formulation: Maxwell Equations
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Covers Lorentz transformations, Maxwell equations, and charge conservation in Lorentz invariant physics.
General Physics: Fluids and Electromagnetism
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Covers hydrodynamic and electromagnetic principles for second-semester mathematics students.
Fluids and Electromagnetism
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Explores closed and non-closed surfaces, divergence theorem, Stokes theorem, and fluid properties in fluid dynamics and electromagnetism.
Fluid Mechanics: Forces, Pressure, and Buoyancy
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Explores forces, pressure, and buoyancy in fluid mechanics, emphasizing fundamental concepts and practical applications.
Forces and Tension in Mechanics
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Explores forces, tension, and weight in mechanics, including mathematical calculations and analysis of accelerations and deformations.
Versatile EM Wave Description
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Summarizes EM chapters, emphasizing wave description, reflection laws, and light intensity calculations.
Modeling Diatomic Molecules: Mechanics
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Covers the modeling of diatomic molecules using springs and focuses on the movement of the center of mass and relative motion.
Conservation Laws: General Framework
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Covers the fundamental conservation laws and properties of space and time beyond mechanics.
General Physics: Mechanics SV
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Covers the basics of General Physics, focusing on Mechanics SV and key mathematical concepts.
Electromagnetism: Historical Overview and Maxwell's Equations
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Explores the historical evolution of electromagnetism, from ancient discoveries to Maxwell's equations.
Continuum Mechanics: Conservation Laws, Tensor Objects, and Fluid Dynamics
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Covers conservation laws, tensor objects, and fluid dynamics in Continuum Mechanics.
Capacitance and Dielectrics: Understanding Maxwell's Equations
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Explores the significance of mastering Maxwell's equations in modern technologies through a Q&A session on dielectrics and electric fields.
Symmetries of Wave Equation
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Explores symmetries of the wave equation, linear transformations, and solutions.
Physics Problem Solving: Strategies and Examples
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Explores physics problem-solving strategies through examples like preventing drone collisions and cliff jumping.
Introduction to Electromagnetism
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Covers the nature of electromagnetic waves, including plane waves and photons, their wavelength, period, and dispersion relationship, and the electromagnetic spectrum.
Turbulent Caminar Visualization
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Explores turbulent caminar visualization, current lines, and the significance of turbulence in classical physics and research.
Vector Calculus Review: Maxwell Equations
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Covers a review of vector calculus and the Maxwell equations in electromagnetism.
Heat Transport Phenomena: Black Body Radiation and Stefan's Law
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Explores heat transport phenomena, black body radiation, and Stefan's law in classical physics.
Guided Propagation: Theory and Examples
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Discusses guided propagation for waves along a structure with invariant geometry and covers examples of TEM, TE, and TM modes.
Two Phase Flow and Heat Transfer
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Explores reduced dynamic pressure in two-phase flow and heat transfer calculations.
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