Question

A 70 Kg block slides down a smooth inclined surface as shown in the figure. Determine the terminal velocity of the block (in
0 0
Add a comment Improve this question Transcribed image text
Answer #1

PB 42 Fs MASS M = 70 kg OIL THIEF Ness y = 0.1 mm = Ixiom TOIL VISCOSITY U = 0.44 Nis 1m2 → CONTACT AREA A = 0.30 m - from fo

Add a comment
Know the answer?
Add Answer to:
A 70 Kg block slides down a smooth inclined surface as shown in the figure. Determine...
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
  • CE 331- Fluid Mechanics and Hydraulics Instructor: Dr. Salim Bawazir HW 6- Viscosity Sliding Down an...

    CE 331- Fluid Mechanics and Hydraulics Instructor: Dr. Salim Bawazir HW 6- Viscosity Sliding Down an Inclined Surface Problem continue 4b. A 10-kg block slides down a smooth inclined surface as shown in figure below. Determine the terminal velocity of the block if the 0.1-mm gap between the block and the surface contains SAE 30 oil at 60 deg. Fahrenheit with seia-038 NS/m2. Assume the velocity distribution in the gap is linear, and the area of the block in contact...

  • A block of weight W slides down an inclined plane with a constant velocity V while...

    A block of weight W slides down an inclined plane with a constant velocity V while lubricated by a thin film of a fluid. The film contact area is A and its thickness is h. Assuming a linear velocity distribution in the film, derive an expression for the viscosity ? of the fluid. Calculate the viscosity ? of the fluid if the block mass is 6 kg, A = 35 cm, , ? = 30°, V = 20 m/s and...

  • A block of weight W slides down an inclined plane that is lubricated by a thin...

    A block of weight W slides down an inclined plane that is lubricated by a thin film of oil as shown in the figure below. Block Oil Plane surface The film contact area is A, and its thickness is h. Part A Assuming a linear velocity distribution in the film, derive an expression for the terminal (zero-acceleration) speed, V, of the block. O V = Wh cos e JA OV=hA cose дW V= Wh sin e MA OV - PA...

  • The 2,5-kg block A is released from rest in the position shown and slides down on...

    The 2,5-kg block A is released from rest in the position shown and slides down on a curved surface. The block then hits the 3-kg pallet B. The block and the pallet move together and come to rest after sliding a distance d across the floor. Suppose that the curved surface is rough and velocity of block A before hitting the pallet B is 5,5 m/s. Determine the impulse exerted by the pallet B on the block A during impact....

  • A block with mass  m = 5.00kg slides down a surface inclined 36.9 ? to the horizontal (the figure (Figure 1)...

    A block with mass  m = 5.00kg slides down a surface inclined 36.9 ? to the horizontal (the figure (Figure 1) ). The coefficient of kinetic friction is 0.26. A string attached to the block is wrapped around a flywheel on a fixed axis at O. The flywheel has mass 8.16kg and moment of inertia 0.500 kg?m2 with respect to the axis of rotation. The string pulls without slipping at a perpendicular distance of 0.350m from that axis. Part A What...

  • A 12 kg block begins from rest and slides down an inclined plane. After 10s the...

    A 12 kg block begins from rest and slides down an inclined plane. After 10s the block has a velocity of 18 m/s. The plane's angle of Inclination is .524 radians. What is the coefficient of friction between the plane and block? What is the Kenetic energy of the block at t=15s? What is the total work done by all the forces acting on the block after it slides down the plane for a distance of 1m?

  • A 4.5-kg block slides down an inclined plane that makes an angle of 28° with the...

    A 4.5-kg block slides down an inclined plane that makes an angle of 28° with the horizontal. Starting from rest, the block slides a distance of 2.4 m in 5.2 s. Find the coefficient of kinetic friction between the block and plane.

  • 2. a- A 1.5 kg block slides down an inclined ramp with u 0.4. If the...

    2. a- A 1.5 kg block slides down an inclined ramp with u 0.4. If the ramp angle is 17.0° and the length of it is 30.0 m, assuming it started sliding at 5 m/s. Find the speed of the block as it reaches the end of the ramp b- a- A 3 kg block is pushed against a spring with negligible mass and force constant k 4500 N/m, compressing it 0.220 m. When the block is released, it moves...

  • As shown in the figure, a block weighing 150 NN slides down a plane inclined at...

    As shown in the figure, a block weighing 150 NN slides down a plane inclined at an angle of iθ = 35°. The coefficient of friction between the block and the incline is 0.28. As shown in the figure, a block weighing 150 N slides down a plane inclined at an angle of i = 35º. The coefficient of friction between the block and the incline is 0.28. m их e Part A Find the acceleration of the block. Express...

  • A 3.0 kg block slides along a horizontal frictionless surface with a speed of 9.8 m/s....

    A 3.0 kg block slides along a horizontal frictionless surface with a speed of 9.8 m/s. The block makes a smooth transition to a frictionless ramp inclined at an angle of 35.0

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