Volume using Enthalpy, Internal Energy and Pressure Formula

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Volume is the amount of space that a substance or object occupies or that is enclosed within a container. Check FAQs
VT=H-UP
VT - Volume?H - Enthalpy?U - Internal Energy?P - Pressure?

Volume using Enthalpy, Internal Energy and Pressure Example

With values
With units
Only example

Here is how the Volume using Enthalpy, Internal Energy and Pressure equation looks like with Values.

Here is how the Volume using Enthalpy, Internal Energy and Pressure equation looks like with Units.

Here is how the Volume using Enthalpy, Internal Energy and Pressure equation looks like.

39.3164Edit=1.51Edit-0.25Edit38.4Edit
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Volume using Enthalpy, Internal Energy and Pressure Solution

Follow our step by step solution on how to calculate Volume using Enthalpy, Internal Energy and Pressure?

FIRST Step Consider the formula
VT=H-UP
Next Step Substitute values of Variables
VT=1.51KJ-0.25J38.4Pa
Next Step Convert Units
VT=1510J-0.25J38.4Pa
Next Step Prepare to Evaluate
VT=1510-0.2538.4
Next Step Evaluate
VT=39.31640625
LAST Step Rounding Answer
VT=39.3164

Volume using Enthalpy, Internal Energy and Pressure Formula Elements

Variables
Volume
Volume is the amount of space that a substance or object occupies or that is enclosed within a container.
Symbol: VT
Measurement: VolumeUnit:
Note: Value should be greater than 0.
Enthalpy
Enthalpy is the thermodynamic quantity equivalent to the total heat content of a system.
Symbol: H
Measurement: EnergyUnit: KJ
Note: Value can be positive or negative.
Internal Energy
The internal energy of a thermodynamic system is the energy contained within it. It is the energy necessary to create or prepare the system in any given internal state.
Symbol: U
Measurement: EnergyUnit: J
Note: Value should be greater than 0.
Pressure
Pressure is the force applied perpendicular to the surface of an object per unit area over which that force is distributed.
Symbol: P
Measurement: PressureUnit: Pa
Note: Value can be positive or negative.

Other formulas in Thermodynamic Property Relations category

​Go Enthalpy using Internal Energy, Pressure and Volume
H=U+PVT
​Go Internal Energy using Enthalpy, Pressure and Volume
U=H-PVT
​Go Pressure using Enthalpy, Internal Energy and Volume
P=H-UVT
​Go Gibbs Free Energy using Enthalpy, Temperature and Entropy
G=H-TS

How to Evaluate Volume using Enthalpy, Internal Energy and Pressure?

Volume using Enthalpy, Internal Energy and Pressure evaluator uses Volume = (Enthalpy-Internal Energy)/Pressure to evaluate the Volume, The Volume using Enthalpy, Internal Energy and Pressure formula is defined as the ratio of the difference of enthalpy and internal energy to the pressure. Volume is denoted by VT symbol.

How to evaluate Volume using Enthalpy, Internal Energy and Pressure using this online evaluator? To use this online evaluator for Volume using Enthalpy, Internal Energy and Pressure, enter Enthalpy (H), Internal Energy (U) & Pressure (P) and hit the calculate button.

FAQs on Volume using Enthalpy, Internal Energy and Pressure

What is the formula to find Volume using Enthalpy, Internal Energy and Pressure?
The formula of Volume using Enthalpy, Internal Energy and Pressure is expressed as Volume = (Enthalpy-Internal Energy)/Pressure. Here is an example- 39.31641 = (1510-0.25)/38.4.
How to calculate Volume using Enthalpy, Internal Energy and Pressure?
With Enthalpy (H), Internal Energy (U) & Pressure (P) we can find Volume using Enthalpy, Internal Energy and Pressure using the formula - Volume = (Enthalpy-Internal Energy)/Pressure.
Can the Volume using Enthalpy, Internal Energy and Pressure be negative?
No, the Volume using Enthalpy, Internal Energy and Pressure, measured in Volume cannot be negative.
Which unit is used to measure Volume using Enthalpy, Internal Energy and Pressure?
Volume using Enthalpy, Internal Energy and Pressure is usually measured using the Cubic Meter[m³] for Volume. Cubic Centimeter[m³], Cubic Millimeter[m³], Liter[m³] are the few other units in which Volume using Enthalpy, Internal Energy and Pressure can be measured.
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