From the given beam loaded as shown, Let P = 12 kips, L = 6 ft,
a = 3 ft. E = 29 x 10^6 psi, I = 722 in^4.
Determine the following: Use Bracket
Method
Use the dimension of the beam below to determine the I-moment of
inertia ( disregard the I-moment of inertia given above)
a. Equation of the slope
b. Equation of the deflection curve
c. The deflection at the midpoint.
d. The slope at point B.
4P kips 5P k/ft 2 in TI B. C A D 6 in L/2 L/2 L =
From the given beam loaded as shown, Let P = 12 kips, L = 6 ft, a = 3 ft. E = 29 x 10^6 psi, I = 722 in^4. Determine the
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From the given beam loaded as shown, Let P = 12 kips, L = 6 ft, a = 3 ft. E = 29 x 10^6 psi, I = 722 in^4. Determine the
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