subject
Physics, 23.11.2020 14:40 ewinter13

The support condition of the truss shown as Figure 1 below are such that the truss is pinned at A and supported by pin rollers at E. The truss is subjected to loading as shown on the Figure.
a) Calculate the reactions at supports A and E.
b) Calculate the force in each member of the truss. Reproduce and fill in the given table
by placing your answers in the columns designated (Force in the member) and
(Nature of the Force i. e. strut or tie)
80KN
с
90KN
3m
D
B
60kN
4m
А
E
F
40 KN
3m
3
3
Зm


The support condition of the truss shown as Figure 1 below are such that the truss is pinned at

A

ansver
Answers: 2

Other questions on the subject: Physics

image
Physics, 21.06.2019 20:00, brainbean
Excuse ! extra points plus ! super desperate ! the position of an object does not move relative to a reference point. relative to the reference point the object _. a.) is not moving. b.) is moving.
Answers: 1
image
Physics, 22.06.2019 05:30, emmeaw245
The volume of a gas is halved during an adiabatic compression that increases the pressure by a factor of 2.5. what is the specific heat ratio? show the math steps .
Answers: 3
image
Physics, 22.06.2019 07:00, math1325
How do you tell if someone actually cares about you? and just say they do?
Answers: 2
image
Physics, 22.06.2019 09:40, alyssa32900
(a) assume the equation x = at^3 + bt describes the motion of a particular object, with x having the dimension of length and t having the dimension of time. determine the dimensions of the constants a and b. (use the following as necessary: l and t, where l is the unit of length and t is the unit of time.) (b) determine the dimensions of the derivative dx/dt = 3at^2 + b. (use the following as necessary: l and t, where l is the unit of length and t is the unit of time.)
Answers: 1
You know the right answer?
The support condition of the truss shown as Figure 1 below are such that the truss is pinned at A a...

Questions in other subjects:

Konu
Business, 29.07.2019 10:00
Konu
Mathematics, 29.07.2019 10:00