Question

nT5B-CT20:Ropes Pulling Boxes Ill-Rope Tension Shown below are boxes that are being pulled by a force Falong frictionless sur

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

Em Hm Am Em Systen - I System - 2 Let the acceleration of the system i and system wila. 1 -3m. a System - TA- ma Systers - 2System in m. Let Let the combined mass of the the acceleration is a. Sepstem mg copo 1 masine song m.a = my copo ( a) acceler

Add a comment
Know the answer?
Add Answer to:
nT5B-CT20:Ropes Pulling Boxes Ill-Rope Tension Shown below are boxes that are being pulled by a force...
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
  • nT5B-RT21: Ropes Pulling Identical Boxes I-Rope Tension Shown below are boxes that are being pulled by...

    nT5B-RT21: Ropes Pulling Identical Boxes I-Rope Tension Shown below are boxes that are being pulled by ropes along frictionless surfaces, accelerating toward the left. All of the boxes are identical, and the accelerations of the boxes are indicated in each figure Smallest Rank (from largest to smallest) the magnitude of the tension in these ropes. Largest 2 3 4 OR, all of these ropes have the same tension OR. We cannot determine the ranking for the tensions. Please explain your...

  • Two boxes, each of mass 2.0 kg. are connected by a rope. acceleration= 5 m/s^2 A.)...

    Two boxes, each of mass 2.0 kg. are connected by a rope. acceleration= 5 m/s^2 A.) draw a free body diagram for each box B.) considering the ropes are lightweight... B1.)what is the tension in the top rope? B2.) what is the tension of the rope connecting the two boxes? C.)considering the ropes are steel cables with a mass of 1.0 kg... C1.) what would be the force of the steel cable on the top box? C2.) what would be...

  • Name: Per: Short Answers 1. Shown below are boxes that are being pulled by ropes along...

    Name: Per: Short Answers 1. Shown below are boxes that are being pulled by ropes along frictionless surfaces, accelerating toward the left. All of the boxes are identical, of mass m, and the accelerations (e.g. 3a, 2a, a) of the boxes are indicated in each figure. [4 points] Rank the magnitude of the tension in these ropes (A, B, C... F). Largest 1 5_ 6_ _Smalles

  • An athlete is measuring the force by their flexor muscle by pulling a rope horizontally at...

    An athlete is measuring the force by their flexor muscle by pulling a rope horizontally at a constant force. While pulling the rope the muscle applies a force on the forearm an angle of 71° as shown in the diagram. While keeping your forearm completely vertical, the tension in the rope is at 185N. The athlete's muscle is attached to the forearm 5 cm from the elbow joint and that the weight of your forearm is 22 N with a...

  • 3) A water skier is being pulled by a rope attached to a speed boat moving...

    3) A water skier is being pulled by a rope attached to a speed boat moving at a constant velocity. Consider the following four forces: (1) the force of the boat pulling the rope, (2) the force of the skier pulling on the rope, (3) the force of the boat pushing the water, and (4) the force of the water pushing on the boat. Which two forces are an “action- reaction” pair that is consistent with Newton's third law of...

  • Three crates with various contents are being pulled by a 3575-N force across a horizontal, frictionless...

    Three crates with various contents are being pulled by a 3575-N force across a horizontal, frictionless roller-conveyor system. The group of boxes is accelerating on the conveyor at 1.578 m/s2 to the right. Between each adjacent pair of boxes is a force meter that measures the magnitude of the tension in the connecting rope. Assume that the ropes and force meters are massless.

  • Question 4 (force vectors) Two people are pulling on a crate through two ropes. Person A...

    Question 4 (force vectors) Two people are pulling on a crate through two ropes. Person A is on the left pulling toward the left with a force of 50 N at 45° and person B is on the right pulling toward the right at an angle of 30°. Here is what the situation looks like from above. The resulting acceleration of the crate is at 0°. acceleration direction person B F 30° person A 50 N 45° 130% 45% crate...

  • Question 4 (force vectors) Two people are pulling on a crate through two ropes. Person A...

    Question 4 (force vectors) Two people are pulling on a crate through two ropes. Person A is on the left pulling toward the left with a force of 50 N at 45° and person B is on the right pulling toward the right at an angle of 30%. Here is what the situation looks like from above. The resulting acceleration of the crate is at 0°. acceleration direction person B F@30% person A , 50 N 45o (30% 45°! crate...

  • . Three ropes are attached to a very light ring. See the diagram below. The view...

    . Three ropes are attached to a very light ring. See the diagram below. The view in the diagram is looking down on the system. Two ropes are anchored to walls at right angles. The third rope pulls as shown. The system is in static equilibrium. a. Draw a free body diagram of the ring, including a coordinate system. b. What is the magnitude of the tension in Rope 1? T1 = c. What is the magnitude of the tension...

  • Three boxes are connected by two ropes on a frictionless surface as shown below. A 100...

    Three boxes are connected by two ropes on a frictionless surface as shown below. A 100 N force is exerted on the 50 kg box. Calculate: a. the acceleration of the system. Fp = 100 N 35 kg 75 kg 50 kg b. the tension in the rope between the 35 kg box and the 75 kg box.

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