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Specific Gravity of Fluid is the ratio of the specific weight of a substance to the specific weight of a standard fluid. Check FAQs
Gf=G-(Vs18ν[g]d2)
Gf - Specific Gravity of Fluid?G - Specific Gravity of Particle?Vs - Settling Velocity?ν - Kinematic Viscosity?d - Diameter D?[g] - Gravitational acceleration on Earth?

Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity Example

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Here is how the Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity equation looks like with Values.

Here is how the Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity equation looks like with Units.

Here is how the Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity equation looks like.

16Edit=16Edit-(1.5Edit187.25Edit9.80660.06Edit2)
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Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity Solution

Follow our step by step solution on how to calculate Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity?

FIRST Step Consider the formula
Gf=G-(Vs18ν[g]d2)
Next Step Substitute values of Variables
Gf=16-(1.5m/s187.25St[g]0.06m2)
Next Step Substitute values of Constants
Gf=16-(1.5m/s187.25St9.8066m/s²0.06m2)
Next Step Convert Units
Gf=16-(1.5m/s180.0007m²/s9.8066m/s²0.06m2)
Next Step Prepare to Evaluate
Gf=16-(1.5180.00079.80660.062)
Next Step Evaluate
Gf=15.9999928140598
LAST Step Rounding Answer
Gf=16

Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity Formula Elements

Variables
Constants
Specific Gravity of Fluid
Specific Gravity of Fluid is the ratio of the specific weight of a substance to the specific weight of a standard fluid.
Symbol: Gf
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Specific Gravity of Particle
Specific Gravity of Particle is the ratio of density of particle to density of standard material.
Symbol: G
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Settling Velocity
The Settling Velocity refers to the rate at which a particle suspended in a fluid (like water or air) falls under the influence of gravity until reaches a constant speed.
Symbol: Vs
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Kinematic Viscosity
The Kinematic Viscosity refers to the ratio of dynamic viscosity to the density of the fluid.
Symbol: ν
Measurement: Kinematic ViscosityUnit: St
Note: Value should be greater than 0.
Diameter D
The Diameter D refers to straight line passing from side to side through the center of a body or figure, especially a circle or sphere.
Symbol: d
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Gravitational acceleration on Earth
Gravitational acceleration on Earth means that the velocity of an object in free fall will increase by 9.8 m/s2 every second.
Symbol: [g]
Value: 9.80665 m/s²

Other Formulas to find Specific Gravity of Fluid

​Go Specific Gravity of Fluid given Settling Velocity at 10 Degree Celsius
Gf=G-(Vs418d2)
​Go Specific Gravity of Fluid given Settling Velocity calculated in Fahrenheit
Gf=G-(Vs418d2(to+1060))
​Go Specific Gravity of Fluid given Settling Velocity given Celsius
Gf=G-(Vs100418d2(3t+70))
​Go Specific Gravity of Fluid for Temperature given Fahrenheit and Diameter greater than 0.1mm
Gf=G-(Vs60418d(TF+10))

How to Evaluate Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity?

Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity evaluator uses Specific Gravity of Fluid = Specific Gravity of Particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter D^2) to evaluate the Specific Gravity of Fluid, The Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity formula is defined as relative density, or specific gravity, is ratio of density of substance to density of given reference material. Specific Gravity of Fluid is denoted by Gf symbol.

How to evaluate Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity using this online evaluator? To use this online evaluator for Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity, enter Specific Gravity of Particle (G), Settling Velocity (Vs), Kinematic Viscosity (ν) & Diameter D (d) and hit the calculate button.

FAQs on Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity

What is the formula to find Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity?
The formula of Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity is expressed as Specific Gravity of Fluid = Specific Gravity of Particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter D^2). Here is an example- 15.99999 = 16-(1.5*18*0.000725/[g]*0.06^2).
How to calculate Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity?
With Specific Gravity of Particle (G), Settling Velocity (Vs), Kinematic Viscosity (ν) & Diameter D (d) we can find Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity using the formula - Specific Gravity of Fluid = Specific Gravity of Particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter D^2). This formula also uses Gravitational acceleration on Earth constant(s).
What are the other ways to Calculate Specific Gravity of Fluid?
Here are the different ways to Calculate Specific Gravity of Fluid-
  • Specific Gravity of Fluid=Specific Gravity of Particle-(Settling Velocity/418*Diameter D^2)OpenImg
  • Specific Gravity of Fluid=Specific Gravity of Particle-(Settling Velocity/418*Diameter D^2*((Outside Temperature+10)/60))OpenImg
  • Specific Gravity of Fluid=Specific Gravity of Particle-(Settling Velocity*100/418*Diameter D^2*(3*Temperature+70))OpenImg
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