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34 problems tagged with mechanical energy and conservation

Mechanics › Work and Energy
Mechanics › Work and Energy
Mechanics › Work and Energy
Mechanics › Work and Energy
Mechanics › Work and Energy
Mechanics › Work and Energy
Mechanics › Work and Energy
Mechanics › Work and Energy
Mechanics › Work and Energy
Mechanics › Work and Energy

P0535

Beginner Mechanics › Work and Energy

Block on a Ramp with Friction

A small block is sent through point A with a speed of $v_A = 7.0$ m/s. Its path is frictionless until it reaches point C. The section from C to D has length $L = 12$ m and a coefficient of kinetic friction $\mu_k = 0.70$. The heights are $h_1 = 6.0$ m and $h_2 = 2.0$ m, relative to the lowest point B.

  1. What is the speed of the block at point B?
  2. What is the speed of the block at point C?
  3. Does the block reach point D? If so, what is its speed there? If not, how far through the section of friction does it travel?
mechanical energy and conservation

P0536

Intermediate Mechanics › Work and Energy

Block's Motion on Ramps and Plateaus

A block is released from rest at a height $d=40$ cm. It slides down a frictionless ramp onto a first plateau of length $d$ with a coefficient of kinetic friction $\mu_k = 0.50$. If still moving, it descends a second frictionless ramp through a height $d/2$ and travels across a second plateau of length $d/2$, where the coefficient of kinetic friction is also $0.50$. Finally, if the block is still in motion, it moves up a frictionless ramp until it momentarily stops.

Where does the block stop? If it stops on a plateau, state which one and give the distance $L$ from its left edge. If it stops on the final ramp, give the height $H$ it reaches above the lower plateau.
mechanical energy and conservation

P0537

Intermediate Mechanics › Work and Energy

Particle Sliding on a Track with Friction

A particle can slide along a track with elevated ends and a flat central part, as shown in Figure. The flat part has length $L = 40$ cm. The curved portions of the track are frictionless, but for the flat part the coefficient of kinetic friction is $\mu_k = 0.20$. The particle is released from rest at point A, which is at height $h = L/2$.

How far from the left edge of the flat part does the particle finally stop?
mechanical energy and conservation

P0539

Intermediate Mechanics › Work and Energy

Boy Sliding Off a Hemispherical Mound

A boy is initially seated on the top of a frictionless hemispherical ice mound of radius $R$. He begins to slide down the ice with a negligible initial speed.

At what height $h$, measured from the base of the mound, does the boy lose contact with the ice?
mechanical energy and conservation

P0452

Beginner Mechanics › Work and Energy

Gravitational Potential Energy Change in Free Fall

An object with a mass of $m = 1$ kg is in free fall. Take the acceleration due to gravity as $g = 10$ m/s².

  1. What is the decrease in its gravitational potential energy during the first second of fall?
  2. What is the decrease in its gravitational potential energy during the second second of fall?
mechanical energy and conservation

P0453

Beginner Mechanics › Work and Energy

Work Done by Gravity on a Projectile

A projectile is launched and follows a trajectory, eventually returning to its original launch height.

What is the total work done by gravity throughout this process?
mechanical energy and conservation

P0542

Beginner Mechanics › Work and Energy

Potential Energy Change of a Hanging Cord

A uniform cord of length $L$ and mass $M$ is initially stuck horizontally to a ceiling. Later, it hangs vertically from the ceiling with one end still stuck.

What is the change in the gravitational potential energy of the cord?
mechanical energy and conservation

P0454

Beginner Mechanics › Work and Energy

Elastic Potential Energy of a Compressed Spring

A force of $F = 120$ N is required to compress a spring by $x_1 = 4$ cm.

What is the elastic potential energy stored in the spring when it is compressed by $x_2 = 10$ cm?
mechanical energy and conservation Spring

P0455

Beginner Mechanics › Work and Energy

Change in Elastic Potential Energy

A spring with a natural length of $20$ cm and a spring constant of $k = 1000$ N/m is stretched.

  1. What is the increase in elastic potential energy when the spring is stretched from its natural length to $25$ cm?
  2. What is the increase in elastic potential energy when it is further stretched from $25$ cm to $30$ cm?
  3. Are these two increases in energy equal?
mechanical energy and conservation Spring

P0534

Beginner Mechanics › Work and Energy

Vertical Circular Motion of a Ball on a Rod

A massless rigid rod of length $L$ has a ball of mass $m$ attached to one end. The other end is pivoted so that the ball moves in a vertical circle. First, assume there is no friction at the pivot. The system is launched downward from the horizontal position A with an initial speed $v_0$. The ball just barely reaches point D (the top) and then stops.

  1. Derive an expression for $v_0$ in terms of $L$, $m$, and $g$.
  2. What is the tension in the rod when the ball passes through B (the bottom)?
  3. A little grit is placed on the pivot to increase the friction there. The ball just barely reaches C when launched from A with the same speed as before. What is the decrease in the mechanical energy during this motion?
  4. What is the decrease in the mechanical energy by the time the ball finally comes to rest at B after several oscillations?
mechanical energy and conservation

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