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If two loads are applied to a cantilever beam as shown in the accompanying drawing, the bending moment at 0 due to the loads is

If two loads are applied to a cantilever beam as shown in the accompanying drawing, the bending moment at 0 due to the loads is

a1X1+a2X2.

(a) Suppose thatX1andX2are independent rv's with means5and10kips, respectively, and standard deviations1.1and2.2kip, respectively. If

a1=6ft

and

a2=12ft,

what is the expected bending moment and what is the standard deviation of the bending moment? (Round your standard deviation to three decimal places.)

expected bending moment kip-ft
standard deviation kip-ft

(b) IfX1andX2are normally distributed, what is the probability that the bending moment will exceed 75 kip-ft? (Round your answer to four decimal places.) (c) Suppose the positions of the two loads are random variables. Denoting them byA1andA2, assume that these variables have means of6and12ft, respectively, that each has a standard deviation of 0.5, and that all

Ai's

and

Xi's

are independent of one another. What is the expected moment now? kip-ft (d) For the situation of part (c), what is the variance of the bending moment? (Round your answer to two decimal places.) kip-ft2 (e) If the situation is as described in part (a) except that

Corr(X1,X2) = 0.5

(so that the two loads are not independent), what is the variance of the bending moment? kip-ft2

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