Question

Suppose a horse leans against a wall as in Figure 5.35. Calculate the force exerted on...

Suppose a horse leans against a wall as in Figure 5.35. Calculate the force exerted on the wall assuming that force is horizontal and using the data in the schematic representation of the situation. Note that the force exerted on the wall is equal and opposite to the force exerted on the horse, keeping it in equilibrium. The total mass of the horse and rider is 675 kg. Take the data to be accurate to three digits.
N

5-35.gif
Figure 5.35

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

=> mass (m) = 6.75 kg from figure;. By using equilibrince of torque. >> Force [1.a] = W (0:35] -0 we know : =) W = mg Sub in

Add a comment
Know the answer?
Add Answer to:
Suppose a horse leans against a wall as in Figure 5.35. Calculate the force exerted 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
  • 5.35? ture. The E-KN- cOUupies AE, and BE 5.33 Determine the tension in each of the...

    5.35? ture. The E-KN- cOUupies AE, and BE 5.33 Determine the tension in each of the three ropes supporting the 800-b 5.34 Using only one equilibrium equation, compute the force in rope AD of of the plate and the supporting sract e determinc the forces in members AD W#800 lb Figure P5.33, P5.34 crate Prob. 5.33. 5.35 The homogeneous 25-kg bar A B is supported by a ball-and-socket joint at A. End B, which leans against a frictionless vertical wall,...

  • () Calculate the magnitude (in N) and direction of the force (in degrees counterclockwise from the...

    () Calculate the magnitude (in N) and direction of the force (in degrees counterclockwise from the vertical) on each foot of the horse in figure (b) (two are on the ground), assuming the center of mass of the horse is midway between the feet. The total mass of the horse and rider is 524 kg 1.0 m 1.4 m 0.36 m (a) (b) magnitude Counterclockwise from the vertical direction (b) What is the minimum coefficient of friction between the hooves...

  • A uniform stationary ladder of length L = 5.5 m and mass M= 11 kg leans against a smooth vertical wall

    A uniform stationary ladder of length L = 5.5 m and mass M= 11 kg leans against a smooth vertical wall, while its bottom legs rest on a rough horizontal floor. The coefficient of static friction between floor and ladder is μ=0.35. The ladder makes an angle θ=54° with respect to the floor. A painter of mass 8M stands on the ladder a distance d from its base.Part (a) Find the magnitude of the normal force N, in newtons, exerted...

  • III. A 3.0 m long and 2.0 m wide carton of mass 100 kg leans against a smooth wall as shown in the figure. The coef...

    III. A 3.0 m long and 2.0 m wide carton of mass 100 kg leans against a smooth wall as shown in the figure. The coefficient of static friction between the floor and the lower end of the carton is 0.80. The normal force at the floor is:

  • A 10 kg block is pushed against a vertical wall by a horizontal force of 100...

    A 10 kg block is pushed against a vertical wall by a horizontal force of 100 N as shown in the figure the coefficient of static friction between the block and the wall is 0.60 and the coefficient of kinetic friction is 0.40 which of the following statements is true if the block is initially at rest 1) The block slides down the wall with an acceleration of magnitude 3.8 m/s2 The block will slide down the wall because the...

  • In the figure, a block weighing 22.0 N is held at rest against a vertical wall...

    In the figure, a block weighing 22.0 N is held at rest against a vertical wall by a horizontal force F of magnitude 60 N. The coefficient of static friction between the wall and the block is 0.55, and the coefficient of kinetic friction between them is 0.38. In six experiments, a second force is applied to the block and directed parallel to the wall with these magnitudes and directions: 33 N, up, 13 N, up, 47 N, up, 61...

  • In the figure, a block weighing 22.0 N is held at rest against a vertical wall...

    In the figure, a block weighing 22.0 N is held at rest against a vertical wall by a horizontal force F→ of magnitude 60 N. The coefficient of static friction between the wall and the block is 0.55, and the coefficient of kinetic friction between them is 0.38. In six experiments, a second force P→ is applied to the block and directed parallel to the wall with these magnitudes and directions: (a)33 N, up, (b)11 N, up, (c)48 N, up,...

  • from the graph in Figure 2. 2 kg 100 N/m Foooo A student is conducting an...

    from the graph in Figure 2. 2 kg 100 N/m Foooo A student is conducting an experiment to analyze the mechanical energy of a block-spring system. The student places a block of mass 2kg on a horizontal surface and attaches the block to a horizontal spring of negligible mass and spring constant 100N/m, as shown in the figure. There is negligible friction between the block and the horizontal surface. The other end of the spring is attached to a wall....

  • In Example 5.7, we pushed on two blocks on a table. Suppose three blocks are in...

    In Example 5.7, we pushed on two blocks on a table. Suppose three blocks are in contact with one another on a frictionless, horizontal surface as shown in the figure below. A horizontal force F is applied to m. Take m1 -2.00 kg, m2-3.00 kg, m3 5.20 kg, and F 25.0 N (a) Draw a separate free-body diagram for each block. (b) Determine the acceleration of the blocks. magnitude direction-Select m/s2 to the right to the left (c) Find the...

  • 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...

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