Exam 4: Force
Exam 1: Overview64 Questions
Exam 2: Motion in a Straight Line81 Questions
Exam 3: Motion in Two and Three Dimensions73 Questions
Exam 4: Force86 Questions
Exam 5: Kinetic Energy, work, and Power70 Questions
Exam 6: Potential Energy and Energy Conservation79 Questions
Exam 7: Momentum and Collisions82 Questions
Exam 8: Systems of Particles and Extended Objects62 Questions
Exam 9: Circular Motion78 Questions
Exam 10: Rotation78 Questions
Exam 11: Static Equilibrium60 Questions
Exam 12: Gravitation73 Questions
Exam 13: Solids and Fluids81 Questions
Exam 14: Oscillations66 Questions
Exam 15: Waves61 Questions
Exam 16: Sound60 Questions
Exam 17: Temperature61 Questions
Exam 18: Heat and the First Law of Thermodynamics67 Questions
Exam 19: Ideal Gases82 Questions
Exam 20: The Second Law of Thermodynamics64 Questions
Exam 21: Electrostatics70 Questions
Exam 22: Electric Fields and Gausss Law74 Questions
Exam 23: Electric Potential75 Questions
Exam 24: Capacitors78 Questions
Exam 25: Current and Resistance80 Questions
Exam 26: Direct Current Circuits63 Questions
Exam 27: Magnetism72 Questions
Exam 28: Magnetic Fields of Moving Charges58 Questions
Exam 29: Electromagnetic Induction85 Questions
Exam 30: Alternating Current Circuits78 Questions
Exam 31: Electromagnetic Waves74 Questions
Exam 32: Geometric Optics63 Questions
Exam 33: Lenses and Optical Instruments77 Questions
Exam 34: Wave Optics76 Questions
Exam 35: Relativity61 Questions
Exam 36: Quantum Physics68 Questions
Exam 37: Quantum Mechanics67 Questions
Exam 38: Atomic Physics72 Questions
Exam 39: Elementary Particle Physics59 Questions
Exam 40: Nuclear Physics77 Questions
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A box slides down a frictionless inclined plane.Starting from rest,the box slides a distance of 0.73 m and reaches a speed of 2.1 m/s.What is the angle of inclination of the plane with respect to the horizontal?
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Consider two blocks hung by a massless string from a frictionless pulley as shown in the figure.The masses of the blocks are m1=5 kg and m2=7 kg.The bottoms of the blocks are 20 meters above the top of the table.When they are released from rest,how many seconds will it take for one of the blocks to hit the table (within 5% accuracy)? 

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A 5000-kg (= 11000 lb)truck needs to make an emergency stop.The truck is traveling at a speed of 30 m/s (= 67.5 mph)when the brakes are applied.How far does the truck travel assuming that the coefficient of kinetic friction is 0.7?
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A mass m1 of 4.00 kg slides on a frictionless surface.This mass is connected to another mass m2 of 1.50 kg by a massless string over a frictionless pulley.The masses are held motionless and then released.After the masses are released,what is the tension in the string? 

(Multiple Choice)
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A mass,m1 slides on a frictionless surface.This mass is connected to another mass m2 of 5.00 kg by a massless string over a frictionless pulley.The masses are held motionless and then released.Mass m2 accelerates downward at 4.10 m/s2.What is the mass of m1? 

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The mass in the picture below is sliding up the incline with no external forces applied.Which diagram for the forces along the incline is correct? 

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An 85.0-kg snowboarder slides down a frictionless slope inclined at an angle of 30 .What is her acceleration?
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An object with mass 7.00 kg is being pushed up a rough inclined plane with a constant force F = 50.0 N.The plane makes an angle of 20.0 with respect to the horizontal.The object is moving with constant velocity.What is the coefficient of kinetic friction between the object and the surface?

(Multiple Choice)
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A 1.23-kg box slides up an incline plane with a speed of 8.6 m/s.If the angle of the plane with respect to the horizontal is 11 degrees and the coefficient of friction is 0.33,how long will it take for the box to come to rest?
(Multiple Choice)
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Two blocks,B1 and B2 with masses of 12.0 kg and 5.60 kg,respectively,are in contact with each other on a frictionless horizontal surface.A purely horizontal force of 30.0 N is applied to B1,which in turn pushes B2 and both blocks accelerate together uniformly.The net horizontal force acting on B2 is
(Multiple Choice)
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A skydiver of mass 90.0 kg (including outfit and equipment)floats down suspended from his parachute,having reached terminal speed,8.35 m/s.The area of his parachute is 40.0 m2 and the density of air is 1.15 kg/m3.The drag coefficient is
(Multiple Choice)
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A skydiver of mass 90.0 kg (including outfit and equipment)floats down suspended from his parachute,having reached terminal speed of 12.3 m/s.The drag coefficient is 0.533,and the density of air is 1.15 kg/m3.The area of her parachute is
(Multiple Choice)
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A box with a mass of 10 kg is sliding along the top of a rough,horizontal table at a speed of 30 m/s.The friction between the box and the table brings the box to rest in a time of 6.0 s.What is the coefficient of friction between the box and the table?
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An object of mass m is at rest on a horizontal surface,and the coefficient of static friction is
and kinetic friction
.If a force F is applied to the object as shown and it remains at rest,then it must be true that 



(Multiple Choice)
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A 2.0-kg object,initially at rest at the origin of x-y coordinate system,is subjected to two forces,Fx in the positive x-direction,and Fy in the positive y-direction,whose time-varying magnitudes are shown in graphs below.What is the direction in which the object is travelling at t = 2 s? 

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An elevator,with a total mass of 454 kg,accelerates downward at 3.51 m/s2.During this time,the tension in the elevator cable is
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A sign (mass = 5.6 kg)is hanging from the ceiling on two threads of equal length,which make an angle of 79 with each other.What is the tension in each thread?

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A block slides down a frictionless incline and then flies into the air as shown. 

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In order to straighten a crooked tree,a rope is attached horizontally from the top of the tree to a nearby building.A force of 600 N is applied downward at the center of rope.The angle between this downward force and the rope going to the tree is 95 degrees,which is the same as the angle between the downward force and the rope going to the building.The tension in the rope going to the tree is
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