The Reynolds transport theorem provides a way to relate what is happening to the system and what is happening in the control volume. In the equation below, for a fixed, non- deforming control volume, the first term is: DB sys Dt d = at Bpdv + √ BpV. ñda dt CV CS a. the rate of change of the property B for a specific part of the fluid b. the rate of change of B within the control volume c. the flow of B into the control volume d. the flow of B out of the control volume

Structural Analysis
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Chapter2: Loads On Structures
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The Reynolds transport theorem provides a way to relate what is happening to the system
and what is happening in the control volume. In the equation below, for a fixed, non-
deforming control volume, the first term is:
DB sys
Dt
=
de Bpdv + √ BpV. ñd A
1 S
dt
CV
CS
a. the rate of change of the property B for a specific part of the fluid
b. the rate of change of B within the control volume
c. the flow of B into the control volume
d. the flow of B out of the control volume
Transcribed Image Text:The Reynolds transport theorem provides a way to relate what is happening to the system and what is happening in the control volume. In the equation below, for a fixed, non- deforming control volume, the first term is: DB sys Dt = de Bpdv + √ BpV. ñd A 1 S dt CV CS a. the rate of change of the property B for a specific part of the fluid b. the rate of change of B within the control volume c. the flow of B into the control volume d. the flow of B out of the control volume
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