Problem 9: Displayed to the right are two carts connected by a cord that passes over a small frictionless pulley. Each cart rolls freely with negligible friction. Consider the mass of the cart to be m = 16.2 kg and the angle the first cart sits on to be 0, = 36.5°, while the mass of the second cart as m2 = 22.3 kg and the angle it sits on to be 02 = 49°. mi m2

College Physics
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Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Problem 9: Displayed to the right are two carts connected by a cord that passes over a small frictionless
pulley. Each cart rolls freely with negligible friction. Consider the mass of the cart to be mj = 16.2 kg and the
angle the first cart sits on to be 0, = 36.5°, while the mass of the second cart as m2 = 22.3 kg and the angle it sits
on to be 02 = 49°.
mi
m2
02
Transcribed Image Text:Problem 9: Displayed to the right are two carts connected by a cord that passes over a small frictionless pulley. Each cart rolls freely with negligible friction. Consider the mass of the cart to be mj = 16.2 kg and the angle the first cart sits on to be 0, = 36.5°, while the mass of the second cart as m2 = 22.3 kg and the angle it sits on to be 02 = 49°. mi m2 02
Part (a) Considering the positive x direction to be pointing as it is in the image, write an equation for the acceleration that the two blocks
experience in terms of the mass of the first block m1, the angle 01, the mass of the second block m2, the angle 02, and the acceleration due to gravity g.
a =
COST02) SIULOT STILOT
Transcribed Image Text:Part (a) Considering the positive x direction to be pointing as it is in the image, write an equation for the acceleration that the two blocks experience in terms of the mass of the first block m1, the angle 01, the mass of the second block m2, the angle 02, and the acceleration due to gravity g. a = COST02) SIULOT STILOT
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