Question

1. A rod is in static equilibrium as in the drawing below. Sketch the forces on the rod. The rope is parallel to the adjacent wall. The rod is 4 meters long. It has mass m and uniform mass distribution. Find the magnitude of the tension T. Use the g for the gravitational acceleration. rope earth frictionless 2. Janet is tightening a wheel bolt with a wrench 0 She applies force at the point 0.2 n from the bolt axis. The direction of the force is tanugential. The vehicle manufacterer specified torque for tightening a wheel bolt is 100 Nm. Up to what magnitude of force should her force be?
0 0
Add a comment Improve this question Transcribed image text
Answer #1

rN y m ve a 6 0 un g - od BY EU二 100 Nm 足

Add a comment
Know the answer?
Add Answer to:
1. A rod is in static equilibrium as in the drawing below. Sketch the forces on...
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. A solid, thin, uniform rod (length- 1.50m & mass-2.30kg) is atached to a frictionless hinge...

    3. A solid, thin, uniform rod (length- 1.50m & mass-2.30kg) is atached to a frictionless hinge at one end, w end. A horizontal force (F) applied to the other end of the rod rotates it until the attached rope is vertical and the tension in the rope is 35.0N. In this orientation, the angle between the rod and the ground is 25° a. Calculate the gravitational torque exerted on the rod. b. Determine the torque due to the force, F....

  • Static Equlibrium: The principle of static equilibrium is based on Newton's Second Law of Motion in...

    Static Equlibrium: The principle of static equilibrium is based on Newton's Second Law of Motion in the linear (translational) and rotational dimensions. The Second Law in these dimensions are: ∑?_?=0 ∑?_?=0 ∑?=0 where τ = rFsinθ is the torque. When all of these conditions are true, we have achieved static equilibrium. Below is a picture of a rod, suspended by a rope. On either end is an object which exerts a torque on the rod about the pivot point (the...

  • torque and static equilibrium question I have the answers but please show ALL work neatly. (a)...

    torque and static equilibrium question I have the answers but please show ALL work neatly. (a) zero (b) 6930 Nm (c) 1733 N 4. Tension in Drawbridge Chain A single chain is used to raise the draw bridge in a castle. In this problem we will examine the chain tension when the drawbridge is stationary at an angle of 45° with respect to the horizontal. Assume that the chain is also at 45° with respect to horizontal, and the chain...

  • please answer unsolved questions This assignment is set up for sequential assessment Complete each question and...

    please answer unsolved questions This assignment is set up for sequential assessment Complete each question and submit the answer before moving on to the next question Correct answers for each question will be made available once the maximum number of attempts have been made for each submission length of Ladler -7.om Static Equilibrium - Ladder Comprehensive As shown in the figure, the top of a 7.0 m long ladder (mass 2 -20 kg) leans against a frictionless wall. The bottom...

  • Problem 3. (20 points) Consider the following simplified model of a person in static equilibrium in...

    Problem 3. (20 points) Consider the following simplified model of a person in static equilibrium in a yoga pose. The diagram below shows the upward normal forces acting on the hands and feet, as well as the downward weight forces on the upper and lower body. There are also horizontal static friction forces on the hands and feet not shown in this diagram. Assume the weight of the lower body has magnitude 250 N and the weight of the upper...

  • wall length of Ladder=7.om man on middle of ladder mass of man man Ladder's center of...

    wall length of Ladder=7.om man on middle of ladder mass of man man Ladder's center of ma 2.5mm floor 3. 2 m Static Equilibrium - Ladder Comprehensive As shown in the figure, the top of a 7.0-m long ladder (mass 2 = 20 kg) leans against a frictionless wall. The bottom of the ladder rests on a rough floor, with 3.2 m from the wall. The distance from the ladder's center of mass to its bottom end is 2.5 m...

  • 1- What is torque? 2- What are the conditions for the equilibrium? 3- A uniform rod...

    1- What is torque? 2- What are the conditions for the equilibrium? 3- A uniform rod of length L-10 m, weight 490 N is used to support an object with weight Wi-343 N at a distance of x,-4 m and a second load of weight W2-196 N at a distance of x2-9 m. The rod is supported by a cable which is attached at x- 6 m and acting at an angle of 30 degrees with respect to the rod...

  • 2.50 Two slender links, AC and BC, extend from a wall and support a pulley at...

    2.50 Two slender links, AC and BC, extend from a wall and support a pulley at C. A cable, tied at D, passes over the small pulley at C and experience an 80-lb force at its free end E. If the pulley is frictionless and of negligible determine the forces developed in members AC and BC. An inextensible (cannot stretch) cable AC and spring CB are originally horizontal. A 100-N weight is attached to point C, and the system is...

  • Q1: Given that lomega 1-3 radls, calculate the magnitude of lomega_B* 100 100 Your answer Q2: Giv...

    Q1: Given that lomega 1-3 radls, calculate the magnitude of lomega_B* 100 100 Your answer Q2: Given the same conditions as in Q1, calculate the magnitude of omega_C 100 100 Your answer Q3: Calculate the net torque about point A (include both units and direction). 4 KN 2 kN 300 mm 300 mm 3 kN 00 mm400 mm Your answer Q4: Calculate the net torque about point B (include both units and direction).* 4 kN 8 2 kN 300 mm...

  • 2. [1pt] Answer True, False, or Cannot tell to each of the four statements below. E.g.,...

    2. [1pt] Answer True, False, or Cannot tell to each of the four statements below. E.g., if the answer to the first statement is 'true' and to the rest, cannot tell', enter TCCC. a. The solid cylinders and the cylindrical shells have the same mass, the same radius, and turn on frictionless axles. A rope is wrapped around each of them and is acted on as shown. Cylinder shell 3 has the smallest angular acceleration. b. Force F and force...

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