Question

A 10 kg block is dragged by an applied force of 20N, which makes an angle...

  1. A 10 kg block is dragged by an applied force of 20N, which makes an angle of 600 with the horizontal. The coefficient of friction of the surface is. The block starts from rest and is pulled a distance of 7m.
  1. Calculate the work done by the applied force?
  2. Calculate the work done by the force of friction?
  3. What is the resultant work done?
  4. What is the final velocity of the block?

             Recall: work done equals change in kinetic energy                                  [4 pts.]

  1. 4) On a frictionless surface, a block with mass M1 =0.50 kg moving at 4 m/s to the right collides with a mass M2= 0.20kg block moving to the left at 2m/s. The bodies move along the x-axis only.

a) If the two blocks stick together after the collision, what is the final velocity (magnitude and direction?

b) How much mechanical energy is lost?

c) If the collision lasts for 30ms, find the average force

0 0
Add a comment Improve this question Transcribed image text
Answer #1

F20N Swolian му кL Me = ? in your first question comefficient : of friction is not mentioned So, without (Mi) it is not possib). initial mechanical energy Mi = k M, 4,? + f M2 V₂² = [X0.5 x 4² + 2 0.2 x 22 - 4 +0.4 = 4:49. Md = 1 {Mit Me) Vy? L CO.S+

Add a comment
Know the answer?
Add Answer to:
A 10 kg block is dragged by an applied force of 20N, which makes an angle...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • 8-1 A 15 kg block is dragged over a rough, horizontal surface by an applied 5...

    8-1 A 15 kg block is dragged over a rough, horizontal surface by an applied 5 pts force of 71.9 N acting at 20.0 degrees above the horizontal. The block is displaced 5.00 m, and the coefficient of kinetic friction is 0.300. Find the work done by (a) the applied force, J(+2J) (b) the normal force, J(+2J) (c) the force of gravity, J (+2J) (d) the force of friction. J(+2J)

  • A 17.5 kg block is dragged over a rough, horizontal surface by a constant force of...

    A 17.5 kg block is dragged over a rough, horizontal surface by a constant force of 70.4 N acting at an angle of 27.5◦ above the horizontal. The block is displaced 46.9 m, and the coefficient of kinetic friction is 0.119. The acceleration of gravity is 9.8 m/s2 . 17.5 kg μ = 0.119 Find the work done by the force of friction. Answer in units of J.

  • Please solve for work done by friction force A 3.0-kg block is dragged over a rough...

    Please solve for work done by friction force A 3.0-kg block is dragged over a rough horizontal surface by a constant force of 16 N acting at an angle of 37degree above the horizontal as shown. The speed of the block increases from 4.0m/s to 6.0m/s in a displacement of 5.0 m. What work was done by the friction force during this displacement?

  • Block A of mass 2.00 kg and block B of mass 3.00 kg slide on a...

    Block A of mass 2.00 kg and block B of mass 3.00 kg slide on a frictionless surface toward one another and collide. Before the collision, block A moves east with a speed of 3.00 m/s, block B moves south with a speed of 1.50 m/s. After the collision, block A moves 12 degrees west of south with a speed of 0.500 m/s. The two blocks do NOT stick together after the collision. (a) What is the magnitude and direction...

  • 1a . A constant force of 32.3 N pulls on a 20 kg block on a...

    1a . A constant force of 32.3 N pulls on a 20 kg block on a horizontal surface. The force is directed at 30o above the horizontal. A friction force impedes the motion. If at the start of the motion the block was at rest and after 11 meters it has a velocity of 3, what is the coefficient of friction? 1b. What is the work done by the constant force when the block is moved 8 meters? 2.What constant,...

  • Block A of mass, mA = 1.7 kg is shot from a spring device of spring...

    Block A of mass, mA = 1.7 kg is shot from a spring device of spring constant, k = 700 N/m along a frictionless horizontal surface. The initial compression of the spring is 0.300 m. The shot makes the block rise to another horizontal level at a height h= 1m above the first. On this horizontal it collides with another stationary block B of mass mB = 3.5 kg. The blocks stick together and encounter a rough surface. The blocks...

  • A block is pulled along a rough horizontal surface by force of magnitude 100 Newtons, at...

    A block is pulled along a rough horizontal surface by force of magnitude 100 Newtons, at an angle of 30 degrees as shown. The block has a mass M=20.0 kg, and the coefficient of kinetic friction between the block and the surface is 0.50. a)The horizontal component of the tension, T, is b)The normal force exerted upward by the floor on the block has a magnitude of c)If the block moves 10.0 m to the right, the work done by...

  • A block of mass m -2.00 kg collides head on with a block of mass m-...

    A block of mass m -2.00 kg collides head on with a block of mass m- 10.0 kg initially at rest on a rough horizontal surface. The block m strikes m2 with a speed of 4.00 m/s. Immediately after the very brief inelastic collision, the 2.00 kg block bounces back with a speed of 1.20 m/s. Ignore the effect of friction during the collision. (a) 4pts.] Calculate the speed of the 10.0 kg block immediately after the collision. (b) 4...

  • dragged over a rough, horizontal surface by a 70.0 N force acting at 20.0° above the...

    dragged over a rough, horizontal surface by a 70.0 N force acting at 20.0° above the horizontal. The block is displaced s (a) Find the work done on the block by the 70.0 N force. Find the work done on the block by the normal force. (c) Find the work done on the block by the gravitational force. Find the work done on the block by the force of kinetic friction? (e) Find the total change in the block's kinetic...

  • (20%) Problem 5: A body of mass 1.8 kg and initial speed of 39 m/s collides with an initially res...

    only need part c (20%) Problem 5: A body of mass 1.8 kg and initial speed of 39 m/s collides with an initially resting body of mass 19 kg. The bodies stick together after the collision and continue moving (in the direction of the initially moving body). The motion takes place on a horizontal flat surface with negligible friction. 33% Part (a) Find the speed of the combined body immediately after the collision, in meters per second 3.375 Correct! 33%...

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT