Question

The draw bridge span shown in the figure below has a mass of 9.0e5 kg and a length of 30 m. The center of mass of the span is

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

30 m O Baloncmg tha tou about psint o for tahanal egul bnum Tx lo 11 20 JX10 x 9.8 x30 X cos37 1 20 1 1.06 X10N oton Ce)

Add a comment
Know the answer?
Add Answer to:
The draw bridge span shown in the figure below has a mass of 9.0e5 kg and a length of 30 m. The center of mass of the s...
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
  • Please write legibly and write out all equations and units. Please show all steps. Algebra-based physics only please. 7...

    Please write legibly and write out all equations and units. Please show all steps. Algebra-based physics only please. 7. The draw bridge span shown in the figure below has a mass of 9.0e5 kg and a length of 30 m. The center of mass of the span is at its geometric center The span pivots freely at its base and is supported by a cable that is attached 10 m from this pivot point. When the span is raised 37°...

  • A mass M=171 kg is suspended from the end of a uniform boom as shown. The...

    A mass M=171 kg is suspended from the end of a uniform boom as shown. The boom (mass=76.0 kg, length=2.40 m) is at an angle =56.0 deg from the vertical, and is supported at its mid-point by a horizontal cable and by a pivot at its base. Calculate the tension in the horizontal cable. S M 2484.9 N Submit Answer Incorrect. Tries 3/20 Previous Tries

  • 5. (20 points total) A 15,000 N crane pivots around a friction-free axle at its base...

    5. (20 points total) A 15,000 N crane pivots around a friction-free axle at its base and is supported by a cable making a 25° angle with the crane. The crane is 15 m long and is not uniform, its center of mass being 6.0 m from the axle as measured along the crane. The cable is attached 3.0 m from the upper end of the crane. When the crane is raised to 55° 2.2-m cord Bricks above the horizontal...

  • A 13.5 m boom, AB, of a crane lifting a 3,000 kg load is shown below....

    A 13.5 m boom, AB, of a crane lifting a 3,000 kg load is shown below. The center of mass of the boom is at its geometric center, and the mass of the boom is 2,800 kg. For the position shown, calculate the following. tension T in the cable (in N) N the force at the axle A (Give the magnitude in newtons and the direction in degrees counterclockwise from the +x-axis. Assume that the +x-axis is to the right.)...

  • Problem 5: 20 points A loaded cement mixer truck drives onto an old drawbridge (length =...

    Problem 5: 20 points A loaded cement mixer truck drives onto an old drawbridge (length = 40m and Mbridge = 18,000kg) where it stalls with the truck's center of gravity three quarters of the way across the span. The truck sets its brakes such that it won't move and the bridge is raised by means of a cable attached at the end of the bridge. The truck (and driver) have a mass of mtruck = 30,000kg. When the bridge has...

  • A crate with a mass of 161.5 kg is suspended from the end of a uniform...

    A crate with a mass of 161.5 kg is suspended from the end of a uniform boom with a mass of 71.3 kg. The upper end of the boom is supported by a cable attached to the wall and the lower end by a pivot (marked X) on the same wall. Calculate the tension in the cable. A crate with a mass of 161.5 kg is suspended from the end of a uniform boom with a mass of 71.3 kg....

  • 19. A 10 000-N shark is supported by a cable attached to a 4.00-m rod that...

    19. A 10 000-N shark is supported by a cable attached to a 4.00-m rod that can pivot at the base. Calculate the tension in the tie-rope between the rod and the wall if it is holding the system in the position shown in Figure P12.49. Find the horizontal and vertical forces exerted on the base of the rod. (Neglect the weight of the rod.) 20.01 10 000N 0.0 Figure P12.49

  • A 15,000 N crane pivots around a friction-free axle at its base and is supported by...

    A 15,000 N crane pivots around a friction-free axle at its base and is supported by a cable making a 25∘ angle with the crane (Figure 1). The crane is 16 m long and is not uniform, its center of gravity being 7.0 m from the axle as measured along the crane. The cable is attached 3.0 m from the upper end of the crane. When the crane is raised to 55∘ above the horizontal holding an 11,000 N pallet...

  • 1 pts Question 2 The figure shows a uniform, horizontal beam (length 10 m, mass 28...

    1 pts Question 2 The figure shows a uniform, horizontal beam (length 10 m, mass 28 kg) that is pivoted at the wallI, with its far end supported by a cable that makes an angle of 51° with the horizontal. If a person (mass = 64 kg) stands 3 m from the pivot, what is the tension in the cable? 3.0 m 10.0 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