Solid Waste Engineering
Solid Waste Engineering
3rd Edition
ISBN: 9781305888357
Author: Worrell
Publisher: Cengage
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Chapter 4, Problem 4.7P
To determine

Theoretical maximum capacity

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Show complete solutions. (2 decimal places) 1. Imagine the plumb bob as a perfect cone, compute for the volume of steel needed to make thecone if the dimension are a diameter of 60 mm and a height of 40 mm.   The height of a cone shaped tank for liquid storage in a chemical factory is 9 ft with a diameter of14 ft. a) what is the volume of liquid the tank can hold in cubic feet? (5 pts); b) if the storage tankreleases water with a rate of 350 liters per minute, how many minutes will it take for the tank beemptied?
Rigid bar ABC is supported by pin-connected axial member (1) and by a pin connection at C, as shown in the figure. A 5,600-lb concentrated load is applied to the rigid bar at A. Member (1) is a 3.25-in-wide by 1.00-in-thick rectangular bar made of steel with a yield strength of oy = 32,000 psi. The pin at C has an ultimate shear strength of oy = 64,000 psi. Assume P = 5,600 Ib, a = 19 in, b= 29 in., c= 12 in., and d = 22 in. (a) Determine the axial force in member (1) (positive if in tension and negative if in compression). (b) Determine the factor of safety in member (1) with respect to its yield strength. (c) Determine the magnitude of the resultant reaction force acting at pin C. (d) If a minimum factor of safety of FS = 2.7 with respect to the ultimate shear strength is required, determine the minimum diameter that may be used for the pin at C. P B (1) d D C Side view b of connection Answers: (a) F1= i 13559.431 Ib (b) FS1 = i (c) Fc= Ib (d) dpin = in.
Two forces of magnitude TA= 8859 lb and TB= 15198 lb are applied as shown to a welded connection. Knowing that the connection is in equilibrium and angle X is 33.1°, determine the magnitude of TD (Ib). ... 0016.png TB TO Te Round off ONLY on the FINAL ANSWER expressed in 3 decimal places. Add your answer O 89 minutes remaining pe here to search
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