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Fundamentals of Neuroscience, Part 1: The Electrical Properties of the Neuron
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Explore wave optics concepts including light speed, refraction, diffraction, interference, and polarization. Gain insights into optical phenomena and their applications in physics.
Explore statics and torque concepts, including rigid body equilibrium, center of mass, and simple machines, with practical demonstrations and examples.
Explore fundamental principles of geometric optics, including reflection, refraction, lenses, and mirrors. Learn how light behaves and forms images in various optical systems.
Explore electromagnetic waves, from accelerating charges to the EM spectrum. Learn about light production, blue LEDs, and infrared cameras in this comprehensive physics overview.
Model elastic collisions using Python, simulating spring forces between overlapping objects for accurate physics simulations.
Explore linear momentum, collisions, and related principles in physics. Understand key concepts like impulse, conservation of momentum, and types of collisions for a solid foundation in mechanics.
Calculate Earth's escape velocity using Python, exploring gravitational concepts and orbital mechanics.
Learn to solve a physics problem involving energy conservation and force calculations for a jumping basketball player.
Solve a physics problem involving work, energy, and projectile motion for a spring-loaded ball launcher, applying key concepts to real-world scenarios.
Model an object falling to Earth, exploring gravitational potential energy and the relationship between work done by changing gravitational force and kinetic energy change.
Explore fundamental concepts of work and energy in physics, including kinetic and potential energy, conservation laws, and practical applications.
Explore electromagnetic induction, Faraday's Law, and related concepts. Learn about electric generators, power production, and applications like transformers and RL circuits.
Develop a 3D model for orbital motion using Python and Web VPython, breaking down complex calculations into manageable time intervals for accurate simulations.
Explore circular motion, gravity, and related concepts like angular velocity, centripetal force, and Kepler's Laws. Gain insights into fundamental physics principles governing orbital mechanics and rotational dynamics.
Explore magnetism fundamentals: fields, forces, bar magnets, Earth's field, circular motion, Hall effect, EMF, wire interactions, coils, solenoids, and DC motors.
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