ll Globe 8:50 AM @ 87% Quiz 02 Set A... lution and encircle/box your final answer. 1. The overhead electric hoist C rides along a track on the horizontalbeam AB. In addition to the 500-kN vertical force carried by the hoist, the beam also supports the three vertical forces shown in Figure Q02.01. Determine the distance x for which the resultant of the four forces would act at the center of the span AB. 300 kN 120 kN 200 kN - 2 m 8 m -3 m- m B 500 kN Figure Q02.01 2. In Figure QO2.02, knowing that the resultant of the couple and the two forces shown is a force R acting through point O, determine P and R. P 150 lb y 60° 875 lb · ft Figure Q02.02

Principles of Heat Transfer (Activate Learning with these NEW titles from Engineering!)
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ISBN:9781305387102
Author:Kreith, Frank; Manglik, Raj M.
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Chapter5: Analysis Of Convection Heat Transfer
Section: Chapter Questions
Problem 5.48P
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ll Globe
8:50 AM
@ 87%
Quiz 02 Set A...
lution and encircle/box your final answer.
1. The overhead electric hoist C rides along a track on the horizontalbeam AB. In
addition to the 500-kN vertical force carried by the hoist, the beam also
supports the three vertical forces shown in Figure Q02.01. Determine the
distance x for which the resultant of the four forces would act at the center of
the span AB.
300 kN
120 kN
200 kN
- 2 m
8 m
-3 m-
m
B
500 kN
Figure Q02.01
2. In Figure QO2.02, knowing that the resultant of the couple and the two forces
shown is a force R acting through point O, determine P and R.
P
150 lb
y
60°
875 lb · ft
Figure Q02.02
Transcribed Image Text:ll Globe 8:50 AM @ 87% Quiz 02 Set A... lution and encircle/box your final answer. 1. The overhead electric hoist C rides along a track on the horizontalbeam AB. In addition to the 500-kN vertical force carried by the hoist, the beam also supports the three vertical forces shown in Figure Q02.01. Determine the distance x for which the resultant of the four forces would act at the center of the span AB. 300 kN 120 kN 200 kN - 2 m 8 m -3 m- m B 500 kN Figure Q02.01 2. In Figure QO2.02, knowing that the resultant of the couple and the two forces shown is a force R acting through point O, determine P and R. P 150 lb y 60° 875 lb · ft Figure Q02.02
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