Exam 6: Energy of a System

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A 2.0-kg body moving along the x axis has a velocity vx = 5.0 m/s at x = 0.The only force acting on the object is given by Fx = (-4.0x)N,where x is in m.For what value of x will this object first come (momentarily)to rest?

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Negative work can be done

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The same constant force is used to accelerate two carts of the same mass,initially at rest,on horizontal frictionless tracks.The force is applied to cart A for twice as long a time as it is applied to cart B.The work the force does on A is WA;that on B is WB.Which statement is correct?

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As a particle moves along the x axis it is acted upon by a single conservative force given by Fx = (20 - 4.0x)N where x is in m.The potential energy associated with this force has the value +30 J at the origin (x = 0).What is the value of the potential energy at x = 4.0 m?

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Carts A and B have equal masses and travel equal distances D on side-by-side straight frictionless tracks while a constant force F acts on A and a constant force 2F acts on B.Both carts start from rest.The velocities v\overrightarrow { \mathbf { v } } A and v\overrightarrow { \mathbf { v } } B of the bodies at the end of distance D are related by

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If A\overrightarrow { \mathrm { A } } = 5.0, B\vec { B } = 8.0,and α\alpha = 30 °\degree ,determine the scalar product of the two vectors shown.  If  \overrightarrow { \mathrm { A } }  = 5.0,  \vec { B }  = 8.0,and  \alpha  = 30 \degree ,determine the scalar product of the two vectors shown.

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The force of static friction exerted on an automobile's tires by the ground

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A 10-kg block on a horizontal frictionless surface is attached to a light spring (force constant = 0.80 kN/m).The block is initially at rest at its equilibrium position when a force (magnitude P = 80 N)acting parallel to the surface is applied to the block,as shown.What is the speed of the block when it is 13 cm from its equilibrium position? A 10-kg block on a horizontal frictionless surface is attached to a light spring (force constant = 0.80 kN/m).The block is initially at rest at its equilibrium position when a force (magnitude P = 80 N)acting parallel to the surface is applied to the block,as shown.What is the speed of the block when it is 13 cm from its equilibrium position?

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If A=7i~6j^+5k^\overrightarrow { \mathbf { A } } = 7 \tilde { \mathbf { i } } - 6 \hat { \mathbf { j } } + 5 \hat { \mathbf { k } } , B=7| \overrightarrow { \mathbf { B } } | = 7 ,and the angle between A\overrightarrow { \mathrm { A } } and B\vec { B } (when the two are drawn starting from the same point)is 60 °\degree ,what is the scalar product of these two vectors?

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The graph below shows how the force on a 0.500 kg particle varies with position.If the particle has speed v=2.23msv = 2.23 \frac { \mathrm { m } } { \mathrm { s } } at x = 0.00 m,what is its speed in m/s when x = 8.00 m?  The graph below shows how the force on a 0.500 kg particle varies with position.If the particle has speed  v = 2.23 \frac { \mathrm { m } } { \mathrm { s } }  at x = 0.00 m,what is its speed in m/s when x = 8.00 m?

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A conservative force on a particle moving along the x axis is given by F=(3x22x)i~\overrightarrow { \mathbf { F } } = \left( 3 x ^ { 2 } - 2 x \right) \tilde{ \mathbf { i } } .Which of the following is a potential that is associated with this force?

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Two balls,A and B,of mass m and 2m respectively,are carried to height h at constant velocity,but B rises twice as fast as A.The work the gravitational force does on B is

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If vectors A\overrightarrow { \mathrm { A } } and B\vec { B } have magnitudes 12 and 15,respectively,and the angle between the two when they are drawn starting from the same point is 110 °\degree ,what is the scalar product of these two vectors?

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The work Fspd x\overrightarrow { \mathbf { F } } _ { sp} \cdot d ~\overrightarrow { { x } } done by the force exerted by the spring on a mass attached to the end of the spring when the mass has displacement d x\overrightarrow { \mathbf { x } } is

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Equal amounts of work are performed on two bodies,A and B,initially at rest,and of masses M and 2M respectively.The relation between their speeds immediately after the work has been done on them is

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A 5.0-kg object is pulled along a horizontal surface at a constant speed by a 15-N force acting 20 °\degree above the horizontal.How much work is done by this force as the object moves 6.0 m?

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As a 1.0-kg object moves from point A to point B,it is acted upon by a single conservative force which does -40 J of work during this motion.At point A the speed of the particle is 6.0 m/s and the potential energy associated with the force is +50 J.What is the potential energy at point B?

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How much work is done by a person lifting a 2.0-kg object from the bottom of a well at a constant speed of 2.0 m/s for 5.0 s?

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The force an ideal spring exerts on an object is given by Fx =-kx,where x measures the displacement of the object from its equilibrium (x = 0)position.If k = 60 N/m,how much work is done by this force as the object moves from x = -0.20 m to x = 0?

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Two clowns are launched from the same spring-loaded circus cannon with the spring compressed the same distance each time.Clown A has a 40-kg mass;clown B a 60-kg mass.The relation between their kinetic energies at the instant of launch is

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