EBK MECHANICS OF MATERIALS
7th Edition
ISBN: 8220100257063
Author: BEER
Publisher: YUZU
expand_more
expand_more
format_list_bulleted
Textbook Question
Chapter 1.5, Problem 44P
For the joint and loading of Prob. 1.43, determine the factor of safety when L = 180 mm.
Expert Solution & Answer
Want to see the full answer?
Check out a sample textbook solutionStudents have asked these similar questions
1.18 Determine the smallest safe cross-sectional areas of members CD, GD, and
GF for the truss shown. The working stresses are 140 MPa in tension and 100 MPa in
compression. (The working stress in compression is smaller to reduce the danger of
buckling.)
B
6 m
4 m
4m
E
6 m H 6 m Ġ 6m
F 6m
140 kN
140 kN
A.
A set of 10 bolts is to be used to
provide a clamping force of
50000 lb between two
components of a machine. The
load is shared equally among
the 4 bolts. Knowing that the
grade of the material is SAE
Grade 4, if each is to be stressed
to 90 %of its proof strength.
Then the required tensile stress
area is:
Select one:
A. A, = 0.0714 in
В.
B. A, = 0.22 in
%3D
2.
C. A, = 0.0865 in
2.
D. A, = 0.0855 in
Solve both parts
Chapter 1 Solutions
EBK MECHANICS OF MATERIALS
Ch. 1.2 - Two solid cylindrical rods AB and BC are welded...Ch. 1.2 - Two solid cylindrical rods AB and BC are welded...Ch. 1.2 - Two solid cylindrical rods AB and BC are welded...Ch. 1.2 - Two solid cylindrical rods AB and BC are welded...Ch. 1.2 - A strain gage located at C on the surface of bone...Ch. 1.2 - Two brass rods AB and BC, each of uniform...Ch. 1.2 - Each of the four vertical links has an 8 36-mm...Ch. 1.2 - Link AC has a uniform rectangular cross section 18...Ch. 1.2 - Three forces, each of magnitude P = 4 kN, are...Ch. 1.2 - Link BD consists of a single bar 1 in. wide and 12...
Ch. 1.2 - For the Pratt bridge truss and loading shown,...Ch. 1.2 - The frame shown consists of four wooden members,...Ch. 1.2 - An aircraft tow bar is positioned by means of a...Ch. 1.2 - Two hydraulic cylinders are used to control the...Ch. 1.2 - Determine the diameter of the largest circular...Ch. 1.2 - Two wooden planks, each 12 in. thick and 9 in....Ch. 1.2 - When the force P reached 1600 lb, the wooden...Ch. 1.2 - A load P is applied to a steel rod supported as...Ch. 1.2 - The axial force in the column supporting the...Ch. 1.2 - Three wooden planks are fastened together by a...Ch. 1.2 - A 40-kN axial load is applied to a short wooden...Ch. 1.2 - An axial load P is supported by a short W8 40...Ch. 1.2 - Link AB, of width b = 2 in. and thickness t=14...Ch. 1.2 - Determine the largest load P that can be applied...Ch. 1.2 - Knowing that = 40 and P = 9 kN, determine (a) the...Ch. 1.2 - The hydraulic cylinder CF, which partially...Ch. 1.2 - For the assembly and loading of Prob. 1.7,...Ch. 1.2 - Two identical linkage-and-hydraulic-cylinder...Ch. 1.5 - Two wooden members of uniform rectangular cross...Ch. 1.5 - Two wooden members of uniform rectangular cross...Ch. 1.5 - The 1.4-kip load P is supported by two wooden...Ch. 1.5 - Two wooden members of uniform cross section are...Ch. 1.5 - A centric load P is applied to the granite block...Ch. 1.5 - A 240-kip load P is applied to the granite block...Ch. 1.5 - A steel pipe of 400-mm outer diameter is...Ch. 1.5 - A steel pipe of 400-mm outer diameter is...Ch. 1.5 - A steel loop ABCD of length 5 ft and of 38-in....Ch. 1.5 - Link BC is 6 mm thick, has a width w = 25 mm, and...Ch. 1.5 - Link BC is 6 mm thick and is made of a steel with...Ch. 1.5 - Members AB and BC of the truss shown are made of...Ch. 1.5 - Members AB and BC of the truss shown are made of...Ch. 1.5 - Link AB is to be made of a steel for which the...Ch. 1.5 - Two wooden members are joined by plywood splice...Ch. 1.5 - For the joint and loading of Prob. 1.43, determine...Ch. 1.5 - Three 34-in.-diameter steel bolts are to be used...Ch. 1.5 - Three steel bolts are to be used to attach the...Ch. 1.5 - A load P is supported as shown by a steel pin that...Ch. 1.5 - A load P is supported as shown by a steel pin that...Ch. 1.5 - A steel plate 14 in. thick is embedded in a...Ch. 1.5 - Determine the factor of safety for the cable...Ch. 1.5 - Link AC is made of a steel with a 65-ksi ultimate...Ch. 1.5 - Solve Prob. 1.51, assuming that the structure has...Ch. 1.5 - Each of the two vertical links CF connecting the...Ch. 1.5 - Solve Prob. 1.53, assuming that the pins at C and...Ch. 1.5 - In the structure shown, an 8-mm-diameter pin is...Ch. 1.5 - In an alternative design for the structure of...Ch. 1.5 - Prob. 57PCh. 1.5 - The Load and Resistance Factor Design method is to...Ch. 1 - In the marine crane shown, link CD is known to...Ch. 1 - Two horizontal 5-kip forces are applied to pin B...Ch. 1 - For the assembly and loading of Prob. 1.60,...Ch. 1 - Two steel plates are to be held together by means...Ch. 1 - A couple M of magnitude 1500 N m is applied to...Ch. 1 - Knowing that link DE is 18 in. thick and 1 in....Ch. 1 - A 58-in.-diameter steel rod AB is fitted to a...Ch. 1 - In the steel structure shown, a 6-mm-diameter pin...Ch. 1 - Prob. 67RPCh. 1 - A force P is applied as shown to a steel...Ch. 1 - The two portions of member AB are glued together...Ch. 1 - The two portions of member AB are glued together...
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.Similar questions
- Can you show sa free body diagram and the solution?arrow_forwardPole AB is 12m. long and its weight W = 35kN. It is being lifted using BC and BD. When the pole is tilted at an angle of 60° from the x-axis, the resultant force acts at point A. 'p 2.6 m 3 m 4.5 m 3m 1. Find the tensile force (kN) in cable BC. В. 21.6 A. 22.5 C. 26.1 D. 28.2 2. Find the tensile force (kN) in cable BD. А. 13.1 В. 11.3 С. 14.5 D. 16.1 3. What is the value of the resultant (kN) acting at point A. В. 65.9 А. 69.5 C. 90.6 D. 56.9arrow_forwardThe cable of the suspension bridge spans L=140m with a sag H=20m. The cable supports a uniformly distributed load of w0 N/m along the horizontal. If the maximum allowable force in the cable is 4 MN, determine the largest permissible value of w0.arrow_forward
- 1.55 In the structure shown, an 8-mm-diameter pin is used at A, and 12-mm-diameter pins are used at B and D. Knowing that the ulti- mate shearing stress is 100 MPa at all connections and that the ultimate normal stress is 250 MPa in each of the two links joining B and D, determine the allowable load P if an overall factor of safety of 3.0 is desired. Тоp view 200 mm +180 mm - 12 mm 8 mm A В C A 20 mm P 8 mm 8 mm - DO 12 mm - Front view Side view Fig. P1.55arrow_forward4. The construction of the post is shown below. The mechanical tube has an OD of 3.0 in and a thickness of 0.220 in. The concrete foundation has a dimension W of 8 inches. What is the largest load F, in kips, that can be applied if the bearing stress between the mechanical tubing and the steel plate is 80 ksi? F a. 96.7 b. 124 W W C. d. 132 154 Mechanical tubing Steel plate Concretearrow_forwardQ.4) Determine the zero forces members at joints 1, 2, 3, if any. 1 MA P 3 000arrow_forward
- please answer number 4.Mech 222- mechanics of deformable bodies:please give detailed solutions and correct answers.i will report to bartleby those tutors who will give incorrect answers.arrow_forwardDo not round intermediate answers. Give your final answer(s) to three decimal places. Check your units. Knowing that the central portion of the link BD has a uniform cross-sectional area of 1350 mm, determine the maguitude of the load P for which the normal stress in that portion of BD is 20 MPa P= 10.975 kN 24 B I=0.3 m 0.73 m 0.62 m Check Anewer lor the Problumarrow_forwardA 12.5 mm thick steel plate is to be punched with 22.5 mm hole. It has an altitude shear stress of 300 MPa. Determine the applied force assuming a factor of safety of 3. A. 285 KN B. 265 kN C. 275 KN D. 255 kNarrow_forward
- 1.21 Determine the smallest allowable cross-sectional areas of members BD, BE, and CE of the truss shown. The working stresses are 20000 psi in tension and 12000 psi in compression. (A reduced stress in compression is specified to reduce the danger of buckling.) D B 12 ft 8 ft E 8 ft A C 8 ft 36 kips 8 ft 00arrow_forwardQ.3.arrow_forwardLink AB is to be made of a steel for which the ultimate normal stress is 450 MPa. Determine the cross-sectional area for AB for which the factor of safety will be 3.50. Assume that the link will be adequately reinforced around the pins at A and B.arrow_forward
arrow_back_ios
SEE MORE QUESTIONS
arrow_forward_ios
Recommended textbooks for you
- International Edition---engineering Mechanics: St...Mechanical EngineeringISBN:9781305501607Author:Andrew Pytel And Jaan KiusalaasPublisher:CENGAGE L
International Edition---engineering Mechanics: St...
Mechanical Engineering
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:CENGAGE L
An Introduction to Stress and Strain; Author: The Efficient Engineer;https://www.youtube.com/watch?v=aQf6Q8t1FQE;License: Standard YouTube License, CC-BY