of mass m 1 and m 2 are connected by a massless string that passes over the pulley in FIGURE P12.65. The pulley turns on frictionless bearings. Mass m 1 slides on a horizontal, frictionless surface. Mass m 2 is released while the blocks are at rest. a. Assume the pulley is massless. Find the acceleration of m 1 and the tension in the string. This is a Chapter 7 review problem. b. Suppose the pulley has mass m p and radius R. Find the acceleration of m 1 and the tensions in the upper and lower portions of the string. Verify that your answers agree with part a if you set m p = 0.
of mass m 1 and m 2 are connected by a massless string that passes over the pulley in FIGURE P12.65. The pulley turns on frictionless bearings. Mass m 1 slides on a horizontal, frictionless surface. Mass m 2 is released while the blocks are at rest. a. Assume the pulley is massless. Find the acceleration of m 1 and the tension in the string. This is a Chapter 7 review problem. b. Suppose the pulley has mass m p and radius R. Find the acceleration of m 1 and the tensions in the upper and lower portions of the string. Verify that your answers agree with part a if you set m p = 0.
of mass m1and m2are connected by a massless string that passes over the pulley in FIGURE P12.65. The pulley turns on frictionless bearings. Mass m1slides on a horizontal, frictionless surface. Mass m2is released while the blocks are at rest.
a. Assume the pulley is massless. Find the acceleration of m1and the tension in the string. This is a Chapter 7 review problem.
b. Suppose the pulley has mass mpand radius R. Find the acceleration of m1and the tensions in the upper and lower portions of the string. Verify that your answers agree with part a if you set mp= 0.
Two objects (m₁ = 4.75 kg and m₂
2.80 kg) are connected by a light string passing over a light, frictionless pulley as in the figure below. The 4.75-kg object is released from rest at a point h = 4.00 m above the table
mg
m
(a) Determine the speed of each object when the two pass each other.
m/s
(b) Determine the speed of each object at the moment the 4.75-kg object hits the table.
m/s
(c) How much higher does the 2.80-kg object travel after the 4.75-kg object hits the table?
m
A cell of negligible internal resistance is connected to three identical resistors. The
current in the cell is 3.0 A.
The resistors are now arranged in series.
What is the new current in the cell?
A negatively charged sphere is falling through a magnetic field.
north pole
of magnet
direction of motion
south pole
of magnet
What is the direction of the magnetic force acting on the sphere?
Chapter 12 Solutions
Physics for Scientists and Engineers: A Strategic Approach, Vol. 1 (Chs 1-21) (4th Edition)
Campbell Essential Biology with Physiology (5th Edition)
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