Question

Two blocks of masses 20 kg and 8.0 kg are connected together by a light string...

Two blocks of masses 20 kg and 8.0 kg are connected together by a light string and rest on a frictionless, level surface. Attached to the 8.0-kg mass is a second light string, which a person uses to pull both blocks horizontally. If the two-block system accelerates at 1.0 m/s2, what is the tension in the second string attached to the 8.0-kg mass?

a. 6.0 N

b. 4.0 N

c. 14 N

d. 28 N

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

given

first mass m1 = 20 Kg

second mass m2 = 8 Kg

acceleration a = 1 m/sec2

using equation F = m a

or

F = ( m1 + m2 ) a

= ( 20 + 8 ) x 1

= 28 N

the the tension in the second string attached to the 8.0-kg mass m2 is 28 N

Option " d " is correct.

Add a comment
Answer #2

The tension is from the 20 g mass acting on the 8 gram mass. So in the equation F=ma, the mass is 20g because that is what is contributing to the tension force. Thus, F= (20)(0.5)=10 

source: ...
answered by: ...
Add a comment
Know the answer?
Add Answer to:
Two blocks of masses 20 kg and 8.0 kg are connected together by a light string...
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 blocks of masses 20 kg and 8 kg are connected together by a light string...

    Two blocks of masses 20 kg and 8 kg are connected together by a light string and rest on a frictionless level surface. Attached to the 8 kg mass is another light string, which a person uses to to pull both blocks horizontally. If the two block system accelerates at 0.50 m/s2 what is the tension in the connecting string between the blocks?

  • Two blocks of masses 24 kg and 9 kg are connected together by a light string...

    Two blocks of masses 24 kg and 9 kg are connected together by a light string and rest on a frictionless level surface. Attached to the 9-kg mass is another light string, which a person uses to pull both blocks horizontally. If the two-block system accelerates at 0.6 m/s2 what is the tension in the connecting string between the blocks?

  • Two blocks, joined by a string, have masses of 6.0 kg and 9.0 kg. They rest...

    Two blocks, joined by a string, have masses of 6.0 kg and 9.0 kg. They rest on a frictionless horizontal surface. A 2nd string, attached only to the 9 kg block, has horizontal force = 30 N applied to it. Both blocks accelerate. Find the tension in the string between the blocks.

  • Two objects with masses of 2.45 kg and 4.15 kg are connected by a light string...

    Two objects with masses of 2.45 kg and 4.15 kg are connected by a light string that passes over a light frictionless pulley to form an Atwood machine, as in Figure 5.14a. Figure 5.14a (a) Determine the tension in the string. Incorrect: Your answer is incorrect. N (b) Determine the acceleration of each object. m/s2 upwards (2.45 kg mass) m/s2 downwards (4.15 kg mass) (c) Determine the distance each object will move in the first second of motion if they...

  • Two blocks A and B with mA = 1.3 kg and mg = 0.88 kg are...

    Two blocks A and B with mA = 1.3 kg and mg = 0.88 kg are connected by a string of negligible mass. They rest on a frictionless horizontal surface. You pull on block A with a horizontal force of 7.6 N. (a) Find the magnitude of the acceleration (in m/s2) of the blocks. O m/s2 (b) Determine the tension in N) in the string connecting the two blocks. ON (c) How will the tension in the string be affected...

  • Two objects with masses of 2.90 kg and 6.90 kg are connected by a light string...

    Two objects with masses of 2.90 kg and 6.90 kg are connected by a light string that passes over a frictionless pulley, as in the figure below. (a) Determine the tension in the string. (Enter the magnitude only.) CN (b) Determine the acceleration of each object. (Enter the magnitude only.) 0 m/s2 (c) Determine the distance each object will move in the first second of motion if both objects start from rest. cm

  • Two objects with masses of m1 = 2.70 kg and m2 = 5.70 kg are connected...

    Two objects with masses of m1 = 2.70 kg and m2 = 5.70 kg are connected by a light string that passes over a frictionless pulley, as in the figure below. (a) Determine the tension in the string. (Enter the magnitude only.) N (b) Determine the acceleration of each object. (Enter the magnitude only.) m/s2 (c) Determine the distance each object will move in the first second of motion if both objects start from rest. m Two objects with masses...

  • Two blocks m1 and m2 with masses 50 kg and 100 kg respectively are connected by...

    Two blocks m1 and m2 with masses 50 kg and 100 kg respectively are connected by a string over a pulley that is frictionless with negligible mass. The 50 kg block slides on a 37 degree incline that has a coefficient of kinetic friction of 0.25. This block is also attached to a wall at the base of the incline by an ideal spring that has a spring coefficient of 100 N/m. The system is released from rest with a...

  • An 8.0 kg box and a 4.0 kg box are tied together and placed on a...

    An 8.0 kg box and a 4.0 kg box are tied together and placed on a frictionless surface. A second string is attached to the 8.0 kg box and a horizontal force of 24 N is applied to the second string. Find the tension in the string between the boxes.

  • Two blocks are connected by a string that passes over a frictionless pulley, as shown in...

    Two blocks are connected by a string that passes over a frictionless pulley, as shown in the figure. The pulley has a mass of mp = 2.00 kg, and can be treated as a uniform solid disk that rotates about its center. Block A, with a mass = 3.00 kg, rests on a ramp measuring 3.0 m vertically and 4.0 m horizontally. Block B hangs vertically below the pulley. Note that you can solve this exercise entirely using forces, torques,...

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