subject
Engineering, 20.02.2020 19:15 heartykwarteng12

You have a solid square copper ground support, 2 inch per side X 6 inches tall, and it is loaded axially (long axis)with 1600 pounds (force). You have instrumented one rectangular flat of the support with 2 strain gages (half bridge construction). The strain gages are made from modified Karma - Alloy K, that has a nominal resistance R0 = 350Ω, and that has a gage factor GF = 2.107.

a. Look up the Modulus and Poisson’s Ratio of Copper.
b. What would be the change in resistance of a longitudinal strain gage, and a transverse strain gage, under these conditions?
c. If the bridge excitation is VEXC = 10 volts, what are the ∆V outputs of the Wheatstone bridge, for 2 εL, 2 εT , and 1 εT & 1 εL
d. If you change to a Full Bridge design (four strain gages), what is the ∆V output of the bridge circuit?
e. Locate the strain gages in a Wheatstone Bridge schematic to give a - ∆V (minus delta V) output for compression!

ansver
Answers: 1

Another question on Engineering

question
Engineering, 04.07.2019 18:10
Assuming compressible flow of air and that the measurements are done at flagstaff a pitot static tube that gives the difference of total and static pressure measures 0.35 m of mercury. what is the velocity of air? assume the temperature to be 300k. (submit your excel or matlab calculation sheet)
Answers: 1
question
Engineering, 04.07.2019 18:10
The flow rate of air through a through a pipe is 0.02 m5/s. a pitot static tube is placed in the flow. the radius of the pitot static tube is 1 mm. assuming the flow to be steady and the air to be at 300k, calculate the difference in total and static pressure if the diameter of the pipe is: (a) d 0.1 m d 0.05 m (c) d 0.01 m
Answers: 2
question
Engineering, 04.07.2019 18:20
For each of the following process: a) sketch the p-v diagram, b)sketch t-s diagram, c) sketch t-v diagram, d) sketch the boundary work on one of the diagrams (a, b or c) and e) sketch the reversible heat transfer on one of the diagrams (a, b or c): 1- isobaric process from compressed liquid to superheated vapor 2- isothermal process from compressed liquid to superheated vapor 3- isentropic process from compressed liquid to superheated vapor
Answers: 3
question
Engineering, 06.07.2019 04:30
Acylindrical tank is capable of storing 20,000 foot-pounds [ft ibf] of energy for use in your roommate's 2006 subaru wrx. the tank contains nitrous oxide, n20, which you may assume is an ideal gas and has a molecular weight of 44 grams per mole 1g/mol. the tank fits in a space in the trunk that is no wider than 6 inches fin] and no longer than 10 inches [inj, and you may assume the warm clemson weather is keeping the temperature of the tank inside the trunk at a constant 100 degrees fahrenheit [°fl. what is the weight of the nitrous oxide occupying the tank when full, in units of dynes
Answers: 1
You know the right answer?
You have a solid square copper ground support, 2 inch per side X 6 inches tall, and it is loaded axi...
Questions
question
Mathematics, 12.03.2021 19:30
question
Mathematics, 12.03.2021 19:30
question
Chemistry, 12.03.2021 19:30
question
Mathematics, 12.03.2021 19:30
question
Chemistry, 12.03.2021 19:30
question
Mathematics, 12.03.2021 19:30
question
Mathematics, 12.03.2021 19:30
Questions on the website: 13722363