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Advanced Placement (AP) Physics C: Mechanics (also known as AP Mechanics) is an introductory physics course administered by the American College Board as part of its Advanced Placement program. It is intended to serve as a proxy for a one-semester calculus -based university course in mechanics .
AP Physics C: Mechanics and AP Physics 1 are both introductory college-level courses in mechanics, with the former recognized by more universities. [1] The AP Physics C: Mechanics exam includes a combination of conceptual questions, algebra-based questions, and calculus-based questions, while the AP Physics 1 exam includes only conceptual and algebra-based questions.
On the other hand, a study of University of California system students found that only about 55% to 60% of AP students took their course's exam. [66] One 2014 study of math and science AP courses showed that participation rates were 52.7% for AP Chemistry, 53.6% for AP Physics, 57.7% for AP Biology, and 77.4% for AP Calculus. [67]
Therefore, students should have completed or be concurrently enrolled in a calculus class. [1] Starting in the 2024–25 school year, all units in AP Physics C: Electricity and Magnetism are numbered sequentially after the 7 units in AP Physics C: Mechanics. This starts with Electric Charges, Fields, and Gauss's Law as unit 8 and ends with ...
The unit covering electric circuits was changed to be more comprehensive, and Blackbody radiation and Compton scattering were added to Modern Physics as well. As of the fall of 2024, all AP Physics 2 units are numbered sequentially to those in AP Physics 1, starting with Thermodynamics as unit 9 and ending with Modern Physics as unit 15.
Introductory physics often begins with Newton's laws of motion, relating force and motion; action is part of a completely equivalent alternative approach with practical and educational advantages. [1] However, the concept took many decades to supplant Newtonian approaches and remains a challenge to introduce to students. [7]
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In physics, natural unit systems are measurement systems for which selected physical constants have been set to 1 through nondimensionalization of physical units.For example, the speed of light c may be set to 1, and it may then be omitted, equating mass and energy directly E = m rather than using c as a conversion factor in the typical mass–energy equivalence equation E = mc 2.