Find the distance a.

Answer to Problem 7.148P
The distance a is
Explanation of Solution
Given information:
The length of the cable AB is
The value of angle
The collar at A is slides freely and the collar at B is prevented from the moving.
Calculation:
Show the free-body diagram of the cable assembly as in Figure 1.
Refer Equation 7.16 in the textbook.
Write the equation of the catenary cable as follows;
Differentiate the equation with x;
The slope at point A is;
The length of the portion AC is;
The length of the portion CB is;
Find the distance
Substitute 10 ft for L,
Find the distance
Find the distance
Consider the triangle ABD;
Find the value of
Find the distance a using the relation.
Use the trial and error procedure to find the value of a.
Consider the value of c and for the given value of
Find the angle
Trial 1:
Consider a trial value of 1.60 ft for c.
Substitute 1.60 ft for c and
Substitute 1.60 ft for c and 1.410 ft for
Substitute 1.60 ft for c and 1.410 ft for
Substitute 1.60 ft for c and 3.777 ft for
Substitute 1.410 ft for
The calculated value of
Trial 2:
Consider a trial value of 1.70 ft for c.
Substitute 1.70 ft for c and
Substitute 1.70 ft for c and 1.498 ft for
Substitute 1.70 ft for c and 1.498 ft for
Substitute 1.70 ft for c and 3.891 ft for
Substitute 1.498 ft for
The calculated value of
Trial 3:
Consider a trial value of 1.8652 ft for c.
Substitute 1.8652 ft for c and
Substitute 1.8652 ft for c and 1.644 ft for
Substitute 1.8652 ft for c and 1.644 ft for
Substitute 1.8652 ft for c and 4.064 ft for
Substitute 1.644 ft for
The calculated value of
Therefore, the value of c is 1.8652 ft.
Substitute 2.638 ft for
Therefore, the distance a is
Want to see more full solutions like this?
Chapter 7 Solutions
VECTOR MECHANICS FOR ENGINEERS: STATICS
- The 4-lbs piece of putty is dropped 12 ft onto the 16-lbs block initially at rest on the two springs, each with a stiffness k = 5 lbs/in. Calculate the additional deflection d of the springs due to the impact of the putty, which adheres to the block upon contact.arrow_forwardSolve this probem. Draw the diagram and show how the moments are calculated in all of the directionsarrow_forwardSolve this problem and show all of the workarrow_forward
- The 4-lbs piece of putty is dropped 12 ft onto the 16-lbs block initially at rest on the two springs, each with a stiffness k = 5 lbs/in. Calculate the additional deflection d of the springs due to the impact of the putty, which adheres to the block upon contact.arrow_forwardA converging elbow (see the figure below) turns water through an angle of 135° in a vertical plane. The flow cross section diameter is 400 mm at the elbow inlet, section (1), and 200 mm at the elbow outlet, section (2). The elbow flow passage volume is 0.2 m³ between sections (1) and (2). The water volume flowrate is 0.1 m³/s and the elbow inlet and outlet pressures are 140 kPa and 90 kPa. The elbow mass is 11 kg. Calculate the (a) horizontal (x direction) and (b) vertical (z direction) anchoring forces required to hold the elbow in place. D₂- Section (1)- D₁ = 400 mm 135° 200 mm Section (2) (a) Fx= i 20809.96 N (b) Fz= i -120265 Narrow_forward2: A rectangular aluminum block is loaded uniformly in three directions. The loadings are as follows:a 50 kN total resulting compressive load in the x-direction, a 200 kPa uniformly distributed tensile load in they-direction, and a 0.03 MN total resulting tensile load in the z-direction. The block has the following dimensions:L = 1 m, b = 20 cm, h = 350 mm. Use E = 70 GPa and ν = 0.25.Determine the strain in the x and y axes respectively. For the strain in the y-direction to be equal to 0, how much uniformly distributed load inthe surface of y-direction should be added? (+ for tensile, - for compressive) Answers: 5 -1.122 x10-5 / 3 decimals 6 5.102 x10-6 / 3 decimals 7 -0.357 MPa / 3 decimalsarrow_forward
- A spherical balloon with a diameter of 9 m is filled with water vapour at 200˚C and 200 kPa. Determine the mass of water in the balloon. The R value for water is 0.4615 kJ/kg∙K.arrow_forwardCorrect answers are written below. Detailed and correct solution only with fbd. I will upvote. 1: A 3 m alloy shaft fixed at one end has a torsional shearing stress capacity of 55 MPa. Due to improper fabrication, its cross-sectionalarea has become irregularly shaped. Its effective polar moment of inertia has become 2 x10-7 m4, and the maximum torque stress acts at 7.5 cm fromthe center of the shaft.[1]: If the shaft is to be replaced by a properly manufactured solid circular shaft that has a maximumshearing stress capacity of 70 MN/m2, what is the minimum diameter required so it can withstand the sameload? [2]: Calculate the thickness of a hollow circular shaft with the same outside diameter calculated initem [1] that can carry the same load. Limit the maximum shearing stress of the hollow circular shaft to0.09 GPa.Determine the angle of twist on the free end of the shaft. Use G = 150 x103 GPa. [3]: Use the solidcircular shaft from [1] and use the hollow circular shaft from [2].…arrow_forwardtwo closed 1 m3 chambers are filled with fluid at 25˚C and 1 atm. One is filled with pure carbon dioxide and one is filled with pure water. Only considering the weight of the fluids, which chamber is heavier?arrow_forward
- Correct answers are written below. Detailed and correct solution only with fbd. I will upvote. 1: A 3 m alloy shaft fixed at one end has a torsional shearing stress capacity of 55 MPa. Due to improper fabrication, its cross-sectionalarea has become irregularly shaped. Its effective polar moment of inertia has become 2 x10-7 m4, and the maximum torque stress acts at 7.5 cm fromthe center of the shaft.[1]: If the shaft is to be replaced by a properly manufactured solid circular shaft that has a maximumshearing stress capacity of 70 MN/m2, what is the minimum diameter required so it can withstand the sameload? [2]: Calculate the thickness of a hollow circular shaft with the same outside diameter calculated initem [1] that can carry the same load. Limit the maximum shearing stress of the hollow circular shaft to0.09 GPa.Determine the angle of twist on the free end of the shaft. Use G = 150 x103 GPa. [3]: Use the solidcircular shaft from [1] and use the hollow circular shaft from [2].…arrow_forwardPlease can you assist me with the attached question. Many thanks.arrow_forwardPlease can you assist me with the attached question. Many thanks.arrow_forward
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY





