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

STEP 0: Pre-Calculation Summary
Formula Used
Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter^2)
Gf = G-(vs*18*ν/[g]*D^2)
This formula uses 1 Constants, 5 Variables
Constants Used
[g] - Gravitational acceleration on Earth Value Taken As 9.80665
Variables Used
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.
Specific gravity of particle - Specific gravity of particle is the ratio of density of particle to density of standard material.
Settling Velocity - (Measured in Meter per Second) - Settling velocity is defined as the terminal velocity of a particle in still fluid.
Kinematic Viscosity - (Measured in Square Meter per Second) - The kinematic Viscosity is an atmospheric variable defined as the ratio between the dynamic viscosity μ and the density ρ of the fluid.
Diameter - (Measured in Meter) - Diameter is a straight line passing from side to side through the center of a body or figure, especially a circle or sphere.
STEP 1: Convert Input(s) to Base Unit
Specific gravity of particle: 16 --> No Conversion Required
Settling Velocity: 1.5 Meter per Second --> 1.5 Meter per Second No Conversion Required
Kinematic Viscosity: 7.25 Stokes --> 0.000725 Square Meter per Second (Check conversion here)
Diameter: 10 Meter --> 10 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Gf = G-(vs*18*ν/[g]*D^2) --> 16-(1.5*18*0.000725/[g]*10^2)
Evaluating ... ...
Gf = 15.8003905513096
STEP 3: Convert Result to Output's Unit
15.8003905513096 --> No Conversion Required
FINAL ANSWER
15.8003905513096 15.80039 <-- Specific Gravity of Fluid
(Calculation completed in 00.004 seconds)

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Meerut Institute of Engineering and Technology (MIET), Meerut
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5 Specific Gravity of Fluid Calculators

Specific Gravity of Fluid given Settling Velocity calculated in Fahrenheit
Go Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity in specific gravity of fluid/418*Diameter^2*((Outside Temperature+10)/60))
Specific Gravity of Fluid for temperature given Fahrenheit and diameter greater than 0.1mm
Go Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity in specific gravity of fluid*60/418*Diameter*(Temperature in Fahrenheit+10))
Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity
Go Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter^2)
Specific Gravity of Fluid given Settling Velocity given Celsius
Go Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity in specific gravity of fluid*100/418*Diameter^2*(3*Temperature+70))
Specific Gravity of Fluid given Settling Velocity at 10 degree Celsius
Go Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity in specific gravity of fluid/418*Diameter^2)

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

Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter^2)
Gf = G-(vs*18*ν/[g]*D^2)

What is kinematic viscosity?

Kinematic viscosity is a measure of a fluid's internal resistance to flow under gravitational forces. It is determined by measuring the time in seconds, required for a fixed volume of fluid to flow a known distance by gravity through a capillary within a calibrated viscometer at a closely controlled temperature.

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

Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity calculator uses Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter^2) to calculate 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 for liquids is nearly always measured with respect to water at its densest; for gases, reference is air at room temperature. Specific Gravity of Fluid is denoted by Gf symbol.

How to calculate Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity using this online calculator? To use this online calculator 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) and hit the calculate button. Here is how the Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity calculation can be explained with given input values -> 15.80039 = 16-(1.5*18*0.000725/[g]*10^2).

FAQ

What is Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity?
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 for liquids is nearly always measured with respect to water at its densest; for gases, reference is air at room temperature and is represented as Gf = G-(vs*18*ν/[g]*D^2) or Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter^2). Specific gravity of particle is the ratio of density of particle to density of standard material, Settling velocity is defined as the terminal velocity of a particle in still fluid, The kinematic Viscosity is an atmospheric variable defined as the ratio between the dynamic viscosity μ and the density ρ of the fluid & Diameter is a straight line passing from side to side through the center of a body or figure, especially a circle or sphere.
How to calculate Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity?
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 for liquids is nearly always measured with respect to water at its densest; for gases, reference is air at room temperature is calculated using Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity*18*Kinematic Viscosity/[g]*Diameter^2). To calculate Specific Gravity of Fluid given Settling Velocity with respect to Kinematic Viscosity, you need Specific gravity of particle (G), Settling Velocity (vs), Kinematic Viscosity (ν) & Diameter (D). With our tool, you need to enter the respective value for Specific gravity of particle, Settling Velocity, Kinematic Viscosity & Diameter and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Specific Gravity of Fluid?
In this formula, Specific Gravity of Fluid uses Specific gravity of particle, Settling Velocity, Kinematic Viscosity & Diameter. We can use 4 other way(s) to calculate the same, which is/are as follows -
  • Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity in specific gravity of fluid/418*Diameter^2)
  • Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity in specific gravity of fluid/418*Diameter^2*((Outside Temperature+10)/60))
  • Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity in specific gravity of fluid*100/418*Diameter^2*(3*Temperature+70))
  • Specific Gravity of Fluid = Specific gravity of particle-(Settling Velocity in specific gravity of fluid*60/418*Diameter*(Temperature in Fahrenheit+10))
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