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The temperature of liquid is the degree or intensity of heat present in a liquid. Check FAQs
T=PVTΦ-Ξ
T - Temperature of Liquid?P - Pressure?VT - Volume?Φ - Helmholtz Free Entropy?Ξ - Gibbs Free Entropy?

Temperature given Gibbs and Helmholtz free entropy Example

With values
With units
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Here is how the Temperature given Gibbs and Helmholtz free entropy equation looks like with Values.

Here is how the Temperature given Gibbs and Helmholtz free entropy equation looks like with Units.

Here is how the Temperature given Gibbs and Helmholtz free entropy equation looks like.

0.8542Edit=800Edit63Edit70Edit-11Edit
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Temperature given Gibbs and Helmholtz free entropy Solution

Follow our step by step solution on how to calculate Temperature given Gibbs and Helmholtz free entropy?

FIRST Step Consider the formula
T=PVTΦ-Ξ
Next Step Substitute values of Variables
T=800Pa63L70J/K-11J/K
Next Step Convert Units
T=800Pa0.06370J/K-11J/K
Next Step Prepare to Evaluate
T=8000.06370-11
Next Step Evaluate
T=0.854237288135593K
LAST Step Rounding Answer
T=0.8542K

Temperature given Gibbs and Helmholtz free entropy Formula Elements

Variables
Temperature of Liquid
The temperature of liquid is the degree or intensity of heat present in a liquid.
Symbol: T
Measurement: TemperatureUnit: K
Note: Value can be positive or negative.
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.
Volume
Volume is the amount of space that a substance or object occupies or that is enclosed within a container.
Symbol: VT
Measurement: VolumeUnit: L
Note: Value should be greater than 0.
Helmholtz Free Entropy
The Helmholtz Free Entropy is used to express the effect of electrostatic forces in an electrolyte on its thermodynamic state.
Symbol: Φ
Measurement: EntropyUnit: J/K
Note: Value can be positive or negative.
Gibbs Free Entropy
The Gibbs free entropy is an entropic thermodynamic potential analogous to the free energy.
Symbol: Ξ
Measurement: EntropyUnit: J/K
Note: Value can be positive or negative.

Other Formulas to find Temperature of Liquid

​Go Temperature given internal energy and Helmholtz free entropy
T=US-Φ
​Go Temperature given Helmholtz free energy and Helmholtz free entropy
T=-(AΦ)
​Go Temperature given Gibbs free entropy
T=(U+(PVT)S-Ξ)
​Go Temperature given Gibbs free energy and Gibbs free entropy
T=-(GΞ)

How to Evaluate Temperature given Gibbs and Helmholtz free entropy?

Temperature given Gibbs and Helmholtz free entropy evaluator uses Temperature of Liquid = (Pressure*Volume)/(Helmholtz Free Entropy-Gibbs Free Entropy) to evaluate the Temperature of Liquid, The Temperature given Gibbs and Helmholtz free entropy formula is defined as the ratio product of pressure and volume to the change in entropy of the system. Temperature of Liquid is denoted by T symbol.

How to evaluate Temperature given Gibbs and Helmholtz free entropy using this online evaluator? To use this online evaluator for Temperature given Gibbs and Helmholtz free entropy, enter Pressure (P), Volume (VT), Helmholtz Free Entropy (Φ) & Gibbs Free Entropy (Ξ) and hit the calculate button.

FAQs on Temperature given Gibbs and Helmholtz free entropy

What is the formula to find Temperature given Gibbs and Helmholtz free entropy?
The formula of Temperature given Gibbs and Helmholtz free entropy is expressed as Temperature of Liquid = (Pressure*Volume)/(Helmholtz Free Entropy-Gibbs Free Entropy). Here is an example- 0.854237 = (800*0.063)/(70-11).
How to calculate Temperature given Gibbs and Helmholtz free entropy?
With Pressure (P), Volume (VT), Helmholtz Free Entropy (Φ) & Gibbs Free Entropy (Ξ) we can find Temperature given Gibbs and Helmholtz free entropy using the formula - Temperature of Liquid = (Pressure*Volume)/(Helmholtz Free Entropy-Gibbs Free Entropy).
What are the other ways to Calculate Temperature of Liquid?
Here are the different ways to Calculate Temperature of Liquid-
  • Temperature of Liquid=Internal Energy/(Entropy-Helmholtz Free Entropy)OpenImg
  • Temperature of Liquid=-(Helmholtz Free Energy of System/Helmholtz Free Entropy)OpenImg
  • Temperature of Liquid=((Internal Energy+(Pressure*Volume))/(Entropy-Gibbs Free Entropy))OpenImg
Can the Temperature given Gibbs and Helmholtz free entropy be negative?
Yes, the Temperature given Gibbs and Helmholtz free entropy, measured in Temperature can be negative.
Which unit is used to measure Temperature given Gibbs and Helmholtz free entropy?
Temperature given Gibbs and Helmholtz free entropy is usually measured using the Kelvin[K] for Temperature. Celsius[K], Fahrenheit[K], Rankine[K] are the few other units in which Temperature given Gibbs and Helmholtz free entropy can be measured.
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