This is the second course in a calculus-based four-semester sequence. Core topics include electric and magnetic fields, electric potential, capacitance, resistance, inductance, DC and AC circuits, and Maxwell's Equations.
This is the second course in a calculus-based four-semester sequence. Core topics include electric and magnetic fields, electric potential, capacitance, resistance, inductance, DC and AC circuits, and Maxwell's Equations.
First laboratory course in a calculus-based four-semester sequence. Core topics include experiments in kinematics, dynamics, energy, momentum, rotation, and oscillations.
First laboratory course in a calculus-based four-semester sequence. Core topics include experiments in kinematics, dynamics, energy, momentum, rotation, and oscillations.
First laboratory course in a calculus-based four-semester sequence. Core topics include experiments in kinematics, dynamics, energy, momentum, rotation, and oscillations.
First laboratory course in a calculus-based four-semester sequence. Core topics include experiments in kinematics, dynamics, energy, momentum, rotation, and oscillations.
This is the first course in a calculus-based four-semester sequence. Core topics include kinematics, dynamics, energy, momentum, rotation, gravitation, oscillations, and fluids.
This is the first course in a calculus-based four-semester sequence. Core topics include kinematics, dynamics, energy, momentum, rotation, gravitation, oscillations, and fluids.
This is the first course in a calculus-based four-semester sequence. Core topics include kinematics, dynamics, energy, momentum, rotation, gravitation, oscillations, and fluids.
A single semester course emphasizing concepts and problem solving in kinematics, dynamics, energy, momentum, rotational motion and electricity. This course is intended to prepare students to take a college-level, problem-solving physics course using calculus.