Concept explainers
You are building additional storage space in your garage. You decide to suspend a 10.0-kg sheet of plywood of dimensions 0.600 m wide by 2.25 m long from the ceiling. The plywood will be held in a horizontal orientation by four light vertical chains attached to the plywood at its corners and mounted to the ceiling. After you complete the job of suspending the plywood from the ceiling, you choose three cubic boxes to place on the shelf. Each box is 0.750 m on a side. Box 1 has a mass of 50.0 kg, box 2 has a mass of 100 kg, and box 3 has a mass of 125 kg. The mass of each box is uniformly distributed within the box and each box is centered on the front-to-back width of the shelf. Unbeknownst to you, one of the chains on the right-hand end of your shelf is defective and will break if subjected to a force of more than 700 N. There are six possible arrangements of the three boxes on the shelf, for example, from left to right, Box 1, Box 2, Box 3, and Box 1, Box 3, Box, 2, and four more. Which arrangements are safe (that is, the defective chain will not break if the boxes are arranged in this way), and which arrangements are dangerous?
The arrangement of the boxes that are safe and the arrangement of the boxes that are dangerous.
Answer to Problem 1P
The arrangement of the boxes that are safe are
Explanation of Solution
Given info: The mass of the sheet of the plywood is
The chains are all hinged at the center only so the angle made by the chain with the plywood is
The free body diagram of the arrangement
Figure (1)
Take the moment in the above diagram on the left end.
Here,
Substitute
So the tension in each chain in arrangement
The free body diagram of the arrangement
Figure (2)
Take the moment in the above diagram on the left end.
Substitute
So the tension in each chain in arrangement
The free body diagram of the arrangement
Figure (3)
Take the moment in the above diagram on the left end.
Substitute
So the tension in each chain in arrangement
The free body diagram of the arrangement
Figure (4)
Take the moment in the above diagram on the left end.
Substitute
So the tension in each chain in arrangement
The free body diagram of the arrangement
Figure (5)
Take the moment in the above diagram on the left end.
Substitute
So the tension in each chain in arrangement
The free body diagram of the arrangement
Figure (6)
Take the moment in the above diagram on the left end.
Substitute
So the tension in each chain in arrangement
Conclusion:
Therefore, the arrangement of the boxes that are safe are
Want to see more full solutions like this?
Chapter 12 Solutions
Physics for Scientists and Engineers with Modern Physics
- A U-shaped wire is dipped in a soap solution, and removed. The thin soap film formed between the wire and the light slider supports a weight of 1.5 x 10N (which includes the small weight of the slider). The length of the slider is 30 cm. What is the surface tension of the film?arrow_forwardArchie designs an arch of a certain width and height to serve as an outdoor sculpture in a park. To achieve the size and shape for the strongest possible arch, he suspends a chain from two equally elevated supports as far apart as the arch is wide and allows the chain to hang as low as the arch is high. He then designs the arch to have exactly the inverted shape of the hanging chain. Explain why.arrow_forwardThe elastic limit of an alloy is 5.0×108 N/m2. What is the minimum radius ?min of a 9.0 m long wire made from the alloy if a single strand is designed to support a commercial sign that has a weight of 8000 N and hangs from a fixed point? To stay within safety codes, the wire cannot stretch more than 5.0 cm. ?min = ? marrow_forward
- A cable used to lift heavy materials can resist breaking even under a load of 1 meganewtons. The steel cable must support twice that load for safety purposes. By how much the steel cable will stretch if it carries 1 meganewtons of load? Assume 8.0 m initial length of the cable. Group of answer choices 0.01 m 0.001 m 0.2 m 0.1 m 0.02 m 0.002 marrow_forward0.25 m 25 kN B A 0.4 m E 0.2 m In the assembly shown points B and D are connected by double link members BD and points C and E are connected by a single link CE. Each of the three vertical links has an 8x 40-mm uniform rectangular cross section and each of the four pins has a 16-mm diameter. Member ABC has a 12x 50-mm uniform rectangular cross section. For the loading shown, determine 2) The force in link CE (kN) • (Positive if tension and Negative if compression)arrow_forwardDetermine the x, y, and z-coordinates of the mass center of the body constructed of three pieces of uniform thin plate which are welded together. Answers: y- 315 mm 375 mm 70 mm mm mm mm 180 mm 135 mm 210 mmarrow_forward
- Your doctor has told you to watch your weight. Of course, your weight comprises two factors, so you assume that she wants you to watch both your mass and the local value of g. Which explains why you are carrying a small mass mm on an elastic band wherever you go. Most of the time, the elastic band is stretched by a distance of 2.1 cm. However, when you have finished lunch, you go into a very tall building and take the high speed lift (or elevator depending on where you live). Soon after the doors close, you notice that the band (which has linear elastic properties) is stretched by a total distance of 3.5 cm. a) At what rate is the lift accelerating? _____ m.s−2 b) Your doctor will want to know the factor by which your weight has increased after that lunch. Suppose that you stand on scales in the lift while it is accelerating as described above. According to the scales, your weight has increased by a factor of _____ My answers are a)6.6 and b)1.67 but they're wrong.arrow_forward*71. D A 61-kg snow skier is being pulled up a 12° slope by a steel cable. The cable has a cross-sectional area of 7.8 × 10-5 m². The cable applies a force to the skier, and, in doing so, the cable stretches by 2.0 X 10-* m. A frictional force of magnitude 68 N acts on the skis and is directed opposite to the skier's motion. If the skicr's acceleration up the slope has a magnitude of 1.1 m/s², what is the original (unstretched) length of the cable?arrow_forwardA tow truck is pulling a car out of a ditch by means of a steel cable that is 9.2 m long and has a radius of 0.50 cm. When the car just begins to move, the tension in the cable is 279.6 N. How much has the cable stretched from its initial length? Assume Ysteel is 2x1011 N/m2arrow_forward
- Experiments using “optical tweezers” measure the elasticity of individual DNA molecules. For small enough changes in length, the elasticity has the same form as that of a spring. A DNA molecule is anchored at one end, then a force of 1.5 nN (1.5 x 10-9 N) pulls on the other end, causing the molecule to stretch by 5.0 nm (5.0 x 10-9 m). What is the spring constant of that DNA molecule?arrow_forward16arrow_forwardThe assembly shown in the figure is welded to collar A that fits on a vertical pin. The pin can exert couples about the x- and z-axes but does not prevent motion along or about the y-axis. E 120 mm F A 60 mm 90 mm D 80 mm C 45 mm For the load W= 660 N, determine the tension in each cable and the reaction at A. The tension in cable CFis N. |N. |N) i +([ The tension in cable DE is The reaction at A is (| N) k.arrow_forward
- Physics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPrinciples of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage Learning
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage Learning