Question

30. As shown in the diagram above, two freely hanging weights, each having a mass of M, are connected by a light thread that
explain


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

NSWER) Intially mass en we have One side Then on both added of the toe side of a mass Rope . Rope is of im on Free Face BodyE = - (n)g (Aegotive sign is doo to F2 = + (M+m) & Acceleration of System lasys I = a Efext Total Mass E Fext a rt F2 z-img +

Add a comment
Know the answer?
Add Answer to:
explain 30. As shown in the diagram above, two freely hanging weights, each having a mass...
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
  • 3. As shown on the right, a thick ring with a mass of 200.0 grams has...

    3. As shown on the right, a thick ring with a mass of 200.0 grams has very low mass spokes and a low mass central hub supporting it on a very low friction bearing. String of negligible mass is tied and wrapped around the outer edge so it can freely M, -200.0 grams R, 5.00 cm R, 10.00 em unwind, but not slip. Attached to the end of the string is a mass of 100.0 grams. The outer radius of...

  • 14. Two masses are connected by a string which passes over a pulley with negligible mass...

    14. Two masses are connected by a string which passes over a pulley with negligible mass and friction. One mass hangs vertically and one mass slides on a frictionless 30.0 degree incline. The vertically hanging mass is 6.00 kg and the mass on the incline is 4.00 kg. The magnitude of the acceleration of the 4.00 kg mass is 15. Two masses are connected by a string which passes over a pulley with negligible mass and friction. One mass hangs...

  • Two cylinders, each having mass m, are linked by a connecting rod whose mass is negligible. A hor...

    Two cylinders, each having mass m, are linked by a connecting rod whose mass is negligible. A horizontal force F(t) is applied to the right cylinder, and neither cylinder slips in its rolling motion. In the initial position, the angle θ locating the connecting pin is zero. Derive the equation of motion for this angle. We were unable to transcribe this image Two cylinders, each having mass m, are linked by a connecting rod whose mass is negligible. A horizontal...

  • need the “exercise” answered. thanks PRACTICE IT Use the worked example above to help you solve this problem. A block with mass m 4.30 kg and a ball with mass m2 = 7.50 kg are connected by a lig...

    need the “exercise” answered. thanks PRACTICE IT Use the worked example above to help you solve this problem. A block with mass m 4.30 kg and a ball with mass m2 = 7.50 kg are connected by a light string that passes over a frictionless pulley, as shown in figure (a). The coefficient of kinetic friction between the block and the surface is 0.300. (a) Find the acceleration of the two objects and the tension in the string. a= 5.16...

  • All questions added because it is needed for Question 6 to 11 to be answered (I believe). Answer Question 6 to 11. Ple...

    All questions added because it is needed for Question 6 to 11 to be answered (I believe). Answer Question 6 to 11. Please. Thank you Practical 3: Rotation due to an External Moment - Pre-Lab Preparation Rotation due to an External Moment: Pre-lab Preparation In this practical exercise you will investigate the angular acceleration of a disc about its centre of mass due to an applied moment, and determine the moment of inertia of the disc. Write down the equation...

  • An electric dipole consists of two particles, each having the same mass, m. The two particles...

    An electric dipole consists of two particles, each having the same mass, m. The two particles have the charges + q and - and are separated by the distance d, as shown in the figure. At time t =0 turns on for a constant electric field E pointing along the positive z-direction. The field causes the dipole to rotate. Derive an expression of dipole angular acceleration vector a as soon as the field has just been lit. We were unable...

  • 3. For experiment A, use equations 1&3 to develop a general equation for the value of...

    3. For experiment A, use equations 1&3 to develop a general equation for the value of tension (T) based on the values of the two masses. You will need this later to answer lab question (4), so write it in now. 4. Based on the "net force" and "total mass" approach that was used to derive equations 3,4, and 5; develop the equation for acceleration of two masses (m, and m2) hanging vertically from either side of a frictionless pulley....

  • ttwo astronauts, each having a mass of 88.0 kg, are connected by a 10.0-m rope of...

    ttwo astronauts, each having a mass of 88.0 kg, are connected by a 10.0-m rope of negligible mass. They are isolated in space, moving in circles around the point halfway between them at a speed of 5.60 m/s. Treating the astronauts as particles, calculate each of the following. Two astronauts are connected by a taut horizontal rope of length d. They rotate counterclockwise about a point labeled CG at the midpoint of the rope. (a) the magnitude of the angular...

  • As shown in Figure 3(a), a wooden block B with mass mg 2.4 kg on a rough inclined plane is connected to a massless sp...

    As shown in Figure 3(a), a wooden block B with mass mg 2.4 kg on a rough inclined plane is connected to a massless spring (k 160 N/m) by a massless cord passing over a pulley P of radius R 0.25 m and mass M, 0.60 kg. The angle of the inclined plane is 0 37 and the coefficients of static and kinetic frictions are g 0.35 and A 0.30 respectively The frictional force at the axle of the pulley...

  • 3. A very thin circular hoop of mass m and radius r is made to roll,...

    3. A very thin circular hoop of mass m and radius r is made to roll, without slipping, down a ramp with an angle of inclination (with respect to the horizontal), as shown in the figure below. See Figure 3. Note: The moment of inertia of the thin circular hoop is given by: I houp = mra Consider a system consisting of a ladder with a painter climbing said ladder. The ladder has a length 1 = 5,00 meters and...

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