Engineering, 29.07.2020 23:01 akiib
The principal strains are ε p 1 = 715 με , ε p 2 = 570 με , for a point in a body subjected to plane strain. Assume θ p = 33.86 ∘ . Construct Mohr’s circle and use it to (a) determine the strains ε x , ε y , and γ x y . (Assume ε x > ε y ) (b) determine the maximum in-plane shear strain and the absolute maximum shear strain. (c) draw a sketch showing the angle θ p , the principal strain deformations, and the maximum in-plane shear strain distortions. On a piece of paper, construct Mohr’s circle. Enter the strains corresponding to the center C and radius R of Mohr’s circle.
Answers: 1
Engineering, 04.07.2019 18:10, Strick1530
Which of the following components of a pid controlled accumulates the error over time and responds to system error after the error has been accumulated? a)- proportional b)- derivative c)- integral d)- on/off.
Answers: 2
Engineering, 04.07.2019 18:10, nandalabella06
True or false (explain) (110)[111] is a slip system in bcc metals . the {111} family in fcc contains 8 planes. resolved shear stress (rss) in single crystals is just related to the applied stress. critical resolved shear stress (crss) in single crystal metals is direct proportional to the number of defects in the structure
Answers: 2
Engineering, 04.07.2019 18:10, wyattlb97
Water at the rate of 1 kg/s is forced through a tube with a 2.5 cm inner diameter. the inlet water temperature is 15°c, and the outlet water temperature is 50°c. the tube wall temperature is 14°c higher than the local water temperature all along the length of the tube. what is the length of the tube?
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Engineering, 04.07.2019 18:20, yasyyas646646
Agas mixture consists of 8 kmol of h2 and 2 kmol of n2. determine the mass of each gas and the apparent gas constant of the mixture.
Answers: 3
The principal strains are ε p 1 = 715 με , ε p 2 = 570 με , for a point in a body subjected to plane...
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