= 75 N for a distance Ax = 2 m along a (mostly) A hand pushes block A (ma =3 kg) with a constant force Nand, A frictionless table such that it speeds up from rest and is traveling at a speed of 8 m/s after it slides over a rough section of the table (u, = 0.4). Block A then collides with a more massive block B (mg = 6 kg) that is initially at rest.

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Chapter1: Units, Trigonometry. And Vectors
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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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mB = 6 kg
%3D
Nhand,A 75 N
%3D
%3D
VA = 8 m/s mA =3 kg
Block
Block
Block
Block
Hx = 0.4
-2 m
Ax
Note: Diagram is not drawn to scale
A hand pushes block A (m, = 3 kg) with a constant force N
frictionless table such that it speeds up from rest and is traveling at a speed of 8 m/s after it slides over a rough
section of the table (u, = 0.4). Block A then collides with a more massive block B (m, = 6 kg) that is initially at rest.
75 N for a distance Ax = 2 m along a (mostly)
hand, A
Find the total kinetic energy of the two-block system right after the collision.
A) 112 J
B) 81 J
C) 48 J
D) 16 J
E) 96 J
A
O D
O E
Transcribed Image Text:mB = 6 kg %3D Nhand,A 75 N %3D %3D VA = 8 m/s mA =3 kg Block Block Block Block Hx = 0.4 -2 m Ax Note: Diagram is not drawn to scale A hand pushes block A (m, = 3 kg) with a constant force N frictionless table such that it speeds up from rest and is traveling at a speed of 8 m/s after it slides over a rough section of the table (u, = 0.4). Block A then collides with a more massive block B (m, = 6 kg) that is initially at rest. 75 N for a distance Ax = 2 m along a (mostly) hand, A Find the total kinetic energy of the two-block system right after the collision. A) 112 J B) 81 J C) 48 J D) 16 J E) 96 J A O D O E
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