Question

MY NOTES Two blocks connected by a rope of negligible mass are being dragged by a horizontal force (see figure below). Suppos
0 0
Add a comment Improve this question Transcribed image text
Answer #1

Given, Mam of the 1st block mi = 10 kg man of the and block m₂ = 20kg Applied fonce F = 69 N co-efficient of kinetic friction(1) Using the value of a in Eg (1) we get, T-mige l=m, a Da T = mi(a + mi(augu) 10x(1-3.19.80.102) T = 2 3 N Tension in the r

Add a comment
Know the answer?
Add Answer to:
MY NOTES Two blocks connected by a rope of negligible mass are being dragged by a...
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
  • MY NOTE Two blocks connected by a rope of negligible mass are being dragged by a...

    MY NOTE Two blocks connected by a rope of negligible mass are being dragged by a horizontal force (see figure below). Suppose - 79.0 N, m,- 14.0 kg, m, - 24.0 kg, and the coefficient of kinetic friction between each block and the surface is 0.104. (a) Draw a free-body diagram for each block. Choose the fie selected (1) Determine the acceleration of the system. (e) Determine the tension in the rope.

  • A block of mass m2 = 38 kg on a horizontal surface is connected to a...

    A block of mass m2 = 38 kg on a horizontal surface is connected to a mass m2 = 20.1 kg that hangs vertically as shown in the figure below. The two blocks are connected by a string of negligible mass passing over a frictionless pulley. The coefficient of kinetic friction between m, and the horizontal surface is 0.24. m (a) What is the magnitude of the acceleration (in m/s2) of the hanging mass? 3.39 Did you draw a free-body...

  • A block of mass m1 = 36 kg on a horizontal surface is connected to a...

    A block of mass m1 = 36 kg on a horizontal surface is connected to a mass m2 = 17.1 kg that hangs vertically as shown in the figure below. The two blocks are connected by a string of negligible mass passing over a frictionless pulley. The coefficient of kinetic friction between m1 and the horizontal surface is 0.25. (a) What is the magnitude of the acceleration (in m/s2) of the hanging mass? ____ m/s2 (b) Determine the magnitude of...

  • A block of mass m1 = 39 kg on a horizontalsurface is connected to a...

    A block of mass m1 = 39 kg on a horizontal surface is connected to a mass m2 = 22.5 kg that hangs vertically as shown in the figure below. The two blocks are connected by a string of negligible mass passing over a frictionless pulley. The coefficient of kinetic friction betweenm1 and the horizontal surface is 0.23.A) What is the magnitude of the acceleration (in m/s2) of the hanging mass?B) Determine the magnitude of the tension (in N) in...

  • Two blocks are connected by a light rope that passes over a pulley of 0.15 m...

    Two blocks are connected by a light rope that passes over a pulley of 0.15 m radius and moment of inertia I. The blocks move to the right with an acceleration of 1.00 m / s2 on ramps with coefficients of kinetic friction of 0.1 between the blocks and the inclined plane a) Find the net torque (Nm) acting on the pulley b) Determine its moment of inertia I (in Kg / m2) a = 1.00 m/s2 ETA TB mA...

  • Two blocks, each of mass m = 6.90 kg , are connected by a massless rope...

    Two blocks, each of mass m = 6.90 kg , are connected by a massless rope and start sliding down a slope of incline θ = 40.0 ∘ at t=0.000 s. The slope's top portion is a rough surface whose coefficient of kinetic friction is μk = 0.350. At a distance d = 2.90 m from block A's initial position the slope becomes frictionless. What is the velocity of the blocks 4.10 s after the blocks have started moving? Assume...

  • In the figure below, two blocks are connected over a pulley. The mass of block A...

    In the figure below, two blocks are connected over a pulley. The mass of block A is 22 kg 3. and the coefficient of kinetic friction between A and the incline is i* =028. The mass of block B is 18 kg. Angle 0 is 30°. The system is prepared at rest but it starts moving as soon as it is released Frictionless massless pulley Assume that The system is subject to the regular force of gravity. The connecting rope...

  • Two blocks are connected by a massless rope.

    Two blocks are connected by a massless rope. The rope passes over an ideal (frictionless and massless) pulley such that one block with mass m1=13.75 kg is on a horizontal table and the other block with mass m2=6.5 kg hangs vertically. Both blocks experience gravity and the tension force, T. Use the coordinate system specified in the diagram. Part (a) Assuming friction forces are negligible, write an expression, using only the variables provided, for the acceleration that the block of mass...

  • The figure below shows two blocks connected to each other by a light cable that passes...

    The figure below shows two blocks connected to each other by a light cable that passes over a pulley with negligible friction. The block of mass m1 = 4.50 kg lies on a horizontal table with negligible friction, while the block of mass m2 = 11.2 kg hangs vertically. (a) What is the magnitude of the acceleration of each block (in m/s2)? (Here, a1 is the acceleration of m1,and a2 is the acceleration of m2.) a1 = m/s2 a2 =...

  • Two masses are connected by a massless rope. The mass of object 1 is 5.5 kg,...

    Two masses are connected by a massless rope. The mass of object 1 is 5.5 kg, and it rests on a surface with a 1.7 coefficient for static friction (us) and a .90 coefficient for kinetic friction (uk). Object 2 has a mass of 8.3 kg and hangs over the edge of the surface by a frictionless, massless pulley. The two objects begin at rest when object 2 is released to hang freely. A.) Draw a free body diagram for...

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