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The Diameter of a Spherical Particle is the distance across the sphere, passing through its center. Check FAQs
d=vs418(Gs-Gw)
d - Diameter of a Spherical Particle?vs - Settling Velocity of Particles?Gs - Specific Gravity of Spherical Particle?Gw - Specific Gravity of Fluid?

Diameter given Settling Velocity at 10 degree Celsius Example

With values
With units
Only example

Here is how the Diameter given Settling Velocity at 10 degree Celsius equation looks like with Values.

Here is how the Diameter given Settling Velocity at 10 degree Celsius equation looks like with Units.

Here is how the Diameter given Settling Velocity at 10 degree Celsius equation looks like.

0.0015Edit=0.0016Edit418(2.7Edit-1.001Edit)
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Diameter given Settling Velocity at 10 degree Celsius Solution

Follow our step by step solution on how to calculate Diameter given Settling Velocity at 10 degree Celsius?

FIRST Step Consider the formula
d=vs418(Gs-Gw)
Next Step Substitute values of Variables
d=0.0016m/s418(2.7-1.001)
Next Step Prepare to Evaluate
d=0.0016418(2.7-1.001)
Next Step Evaluate
d=0.0015009808831686m
LAST Step Rounding Answer
d=0.0015m

Diameter given Settling Velocity at 10 degree Celsius Formula Elements

Variables
Functions
Diameter of a Spherical Particle
The Diameter of a Spherical Particle is the distance across the sphere, passing through its center.
Symbol: d
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Settling Velocity of Particles
Settling Velocity of particles refers to the rate at which a particle sinks through a fluid under the influence of gravity.
Symbol: vs
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Specific Gravity of Spherical Particle
The Specific Gravity of Spherical Particle is the ratio of its density to the density of water (at 4°C).
Symbol: Gs
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Specific Gravity of Fluid
Specific Gravity of Fluid refers to is the ratio of the fluid’s density to the density of water at a standard temperature (usually 4°C).
Symbol: Gw
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
sqrt
A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number.
Syntax: sqrt(Number)

Other Formulas to find Diameter of a Spherical Particle

​Go Diameter of Particle given Volume of Particle
d=(6Vpπ)13
​Go Diameter of Particle given Settling Velocity
d=3CDρfvs24[g](ρm-ρf)
​Go Diameter of Particle given Settling Velocity with respect to Specific Gravity
d=3CDvs24[g](Gs-1)
​Go Diameter of Particle given Particle Reynold's Number
d=μviscosityReρfvs

How to Evaluate Diameter given Settling Velocity at 10 degree Celsius?

Diameter given Settling Velocity at 10 degree Celsius evaluator uses Diameter of a Spherical Particle = sqrt(Settling Velocity of Particles/(418*(Specific Gravity of Spherical Particle-Specific Gravity of Fluid))) to evaluate the Diameter of a Spherical Particle, The Diameter given Settling Velocity at 10 degree Celsius formula is defined as the calculation of the diameter of a particle based on its settling velocity in water at a temperature of 10°C. Diameter of a Spherical Particle is denoted by d symbol.

How to evaluate Diameter given Settling Velocity at 10 degree Celsius using this online evaluator? To use this online evaluator for Diameter given Settling Velocity at 10 degree Celsius, enter Settling Velocity of Particles (vs), Specific Gravity of Spherical Particle (Gs) & Specific Gravity of Fluid (Gw) and hit the calculate button.

FAQs on Diameter given Settling Velocity at 10 degree Celsius

What is the formula to find Diameter given Settling Velocity at 10 degree Celsius?
The formula of Diameter given Settling Velocity at 10 degree Celsius is expressed as Diameter of a Spherical Particle = sqrt(Settling Velocity of Particles/(418*(Specific Gravity of Spherical Particle-Specific Gravity of Fluid))). Here is an example- 0.001501 = sqrt(0.0016/(418*(2.7-1.001))).
How to calculate Diameter given Settling Velocity at 10 degree Celsius?
With Settling Velocity of Particles (vs), Specific Gravity of Spherical Particle (Gs) & Specific Gravity of Fluid (Gw) we can find Diameter given Settling Velocity at 10 degree Celsius using the formula - Diameter of a Spherical Particle = sqrt(Settling Velocity of Particles/(418*(Specific Gravity of Spherical Particle-Specific Gravity of Fluid))). This formula also uses Square Root (sqrt) function(s).
What are the other ways to Calculate Diameter of a Spherical Particle?
Here are the different ways to Calculate Diameter of a Spherical Particle-
  • Diameter of a Spherical Particle=(6*Volume of One Particle/pi)^(1/3)OpenImg
  • Diameter of a Spherical Particle=(3*Drag Coefficient*Mass Density of Fluid*Settling Velocity of Particles^2)/(4*[g]*(Mass Density of Particles-Mass Density of Fluid))OpenImg
  • Diameter of a Spherical Particle=(3*Drag Coefficient*Settling Velocity of Particles^2)/(4*[g]*(Specific Gravity of Spherical Particle-1))OpenImg
Can the Diameter given Settling Velocity at 10 degree Celsius be negative?
No, the Diameter given Settling Velocity at 10 degree Celsius, measured in Length cannot be negative.
Which unit is used to measure Diameter given Settling Velocity at 10 degree Celsius?
Diameter given Settling Velocity at 10 degree Celsius is usually measured using the Meter[m] for Length. Millimeter[m], Kilometer[m], Decimeter[m] are the few other units in which Diameter given Settling Velocity at 10 degree Celsius can be measured.
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