Write the primary dimensions of each of the following variables from the field of thermodynamics , showing all your work: ( a ) energy E: ( b ) specific energy e = E/m: ( c ) power W . Answers: ( a ) { m 1 L 2 t -2 } , ( b ) { L 2 t -2 } , ( c ) { m 1 L 2 t -3 }
Write the primary dimensions of each of the following variables from the field of thermodynamics , showing all your work: ( a ) energy E: ( b ) specific energy e = E/m: ( c ) power W . Answers: ( a ) { m 1 L 2 t -2 } , ( b ) { L 2 t -2 } , ( c ) { m 1 L 2 t -3 }
Solution Summary: The author explains the primary dimension of energy, which is expressed as energy per unit mass.
Write the primary dimensions of each of the following variables from the field of thermodynamics, showing all your work: (a) energy E: (b) specific energy e = E/m: (c) power W.
Answers: (a)
{
m
1
L
2
t
-2
}
, (b)
{
L
2
t
-2
}
, (c)
{
m
1
L
2
t
-3
}
Science that deals with the amount of energy transferred from one equilibrium state to another equilibrium state.
1- The thrust (P l ) of a propeller depends upon diameter (D); speed (u)
through a fluid density (p); revolution per minute (N); and dynamic viscosity
(u) Show that:
P = (p D² u²) f
P Du
[;
where fis any function.
Storage is required for 35000 kg of propane, received as a gas at 10 °C and 1 atm. Your
engineering team was tasked to propose a suitable method of storage. One of the
proposed methods is to store the gas in a cylinder tank as gas at 10 °C and 1 atm. You
need to calculate the volume of the tank required to support your proposal. You decided
to use the truncated Virial Equation to find the volume required. Discuss whether the
proposed storage can be implemented in terms of the dimension of the tank and cost.
Please answer this question using methods of repeating variables/ dimensional analysis. Thank you
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