Question

Question 1 10 pts Two blocks A and B are connected by a massless string over a massless, frictionless pulley, as shown in the
0 0
Add a comment Improve this question Transcribed image text
Answer #1

mg Tove Me side img when pulley is massless, both has same tension. Q = EE m a = F - Ff ting - FT (mi+m2) a= mag-Ff Fe = UFN

Add a comment
Know the answer?
Add Answer to:
Question 1 10 pts Two blocks A and B are connected by a massless string over...
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
  • Two different blocks ?A and ?B are connected together via a massless string over a massless...

    Two different blocks ?A and ?B are connected together via a massless string over a massless and frictionless pulley fixed to the edge of a table. Block A is falling straight down while block B is sliding along the horizontal table. The coefficient of kinetic friction between block B and the surface of the table is ?k; air resistance is negligible. a. Visualize the situation with an annotated sketch, and motion and free-body diagrams: b. Derive an expression for the...

  • Two different blocks ?A and ?B are connected together via a massless string over a massless...

    Two different blocks ?A and ?B are connected together via a massless string over a massless and frictionless pulley fixed to the edge of a table. Block A is falling straight down while block B is sliding along the horizontal table. The coefficient of kinetic friction between block B and the surface of the table is ?k; air resistance is negligible. 1a. Visualize the situation with an annotated sketch, and motion and free-body diagrams: 1b. Derive an expression for the...

  • Two blocks with masses ?1 and ?2 are connected by a massless string that passes over...

    Two blocks with masses ?1 and ?2 are connected by a massless string that passes over a massless pulley as shown. ?1 has a mass of 2.25 kg and is on an incline of ?1=43.5∘ with coefficient of kinetic friction ?1=0.205 . ?2 has a mass of 6.75 kg and is on an incline of ?2=35.5∘ with coefficient of kinetic friction ?2=0.105 . The two‑block system is in motion with the block of mass ?2 sliding down the ramp. Find...

  • In the figure, two 6.20 kg blocks are connected by a massless string over a pulley...

    In the figure, two 6.20 kg blocks are connected by a massless string over a pulley of radius 2.40 cm and rotational inertia of 7.40 Times 10^-1 kg m^2. The string does not slip on the pulley; and there is no friction between the table and the sliding block; the pulley's axis is frictionless. When this system is released from rest the pulley turns through 1.30 rad in 91.0 ms and the acceleration of the blocks is constant. What are...

  • Two blocks with masses M1 and M2 are connected by a massless string that passes over...

    Two blocks with masses M1 and M2 are connected by a massless string that passes over a massless pulley as shown. M1 has a mass of 2.25 kg and is on an incline of θ1=42.5 with coefficient of kinetic friction μ1=0.205. M2 has a mass of 7.25 kg and is on an incline of θ2=31.5 with coefficient of kinetic friction μ2=0.105. The two‑block system is in motion with the block of mass M2 sliding down the ramp. Find the magnitude...

  • Two blocks with masses M1 and M2 are connected by a massless string that passes over a massless pulley as shown

    Two blocks with masses M1 and M2 are connected by a massless string that passes over a massless pulley as shown. M1 has a mass of 2.25 kg and is on an incline of θ1=43.5° with coefficient of kinetic friction μ1=0.205 . M2 has a mass of 6.15 kg and is on an incline of θ2=35.5° with coefficient of kinetic friction μ2=0.105. The two-block system is in motion with the block of mass M2 sliding down the ramp.Find the magnitude...

  • In the figure, two 5.60 kg blocks are connected by a massless string over a pulley...

    In the figure, two 5.60 kg blocks are connected by a massless string over a pulley of radius 2.20 cm and rotational inertia 7.40 times 10^-4 kg-m^2. The string does not slip on the pulley; it is not known whether there is friction between the table and the sliding block; the pulley's axis is frictionless. When this system is released from rest, the pulley turns through 1.00 rad in 179 ms and the acceleration of the blocks is constant. What...

  • In the figure, two 5.10 kg blocks are connected by a massless string over a pulley...

    In the figure, two 5.10 kg blocks are connected by a massless string over a pulley of radius 2.50 cm and rotational inertia 7.40 x 10-4 kg.m2. The string does not slip on the pulley; it is not known whether there is friction between the table and the sliding block; the pulley's axis is frictionless. When this system is released from rest, the pulley turns through 0.600 rad in 109 ms and the acceleration of the blocks is constant. What...

  • Two blocks are connected by massless string that is wrapped around a pulley. Block 1 has...

    Two blocks are connected by massless string that is wrapped around a pulley. Block 1 has a mass m1=5.30m1=5.30 kg, block 2 has a mass m2=2.50m2=2.50 kg, while the pulley has a mass of 1.60 kg and a radius of 14.1 cm. The pulley is frictionless, and the surface mass 1 is on is also frictionless. If the blocks are released from rest, how far will block 2 fall in 2.60 s?

  • Problem 1: Two blocks of mass: m, =25 kg and m2=45 kg are connected by that...

    Problem 1: Two blocks of mass: m, =25 kg and m2=45 kg are connected by that passes over a pulley as show in the figure. The coefficients of kinetic and static friction between m, and the table are 0.25 and = 0.45, respectively a massless string 1 (a) Identify and label all forces and draw the free- body diagram for each block (b) Will the system be in static equilibrium? Assume the pulley is frictionless. m2 (e) Find the tension...

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