Inlet Friction Coefficient given Keulegan Repletion Coefficient Formula

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King’s Inlet Friction Coefficient [Dimensionless] is defined as the ratio between friction force and normal force. Check FAQs
K1=1(KK2)2
K1 - King’s Inlet Friction Coefficient?K - Keulegan Repletion Coefficient [dimensionless]?K2 - King’s 1st Inlet Friction Coefficient?

Inlet Friction Coefficient given Keulegan Repletion Coefficient Example

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With units
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Here is how the Inlet Friction Coefficient given Keulegan Repletion Coefficient equation looks like with Values.

Here is how the Inlet Friction Coefficient given Keulegan Repletion Coefficient equation looks like with Units.

Here is how the Inlet Friction Coefficient given Keulegan Repletion Coefficient equation looks like.

28.4444Edit=1(0.75Edit0.25Edit)2
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Inlet Friction Coefficient given Keulegan Repletion Coefficient Solution

Follow our step by step solution on how to calculate Inlet Friction Coefficient given Keulegan Repletion Coefficient?

FIRST Step Consider the formula
K1=1(KK2)2
Next Step Substitute values of Variables
K1=1(0.750.25)2
Next Step Prepare to Evaluate
K1=1(0.750.25)2
Next Step Evaluate
K1=28.4444444444444
LAST Step Rounding Answer
K1=28.4444

Inlet Friction Coefficient given Keulegan Repletion Coefficient Formula Elements

Variables
King’s Inlet Friction Coefficient
King’s Inlet Friction Coefficient [Dimensionless] is defined as the ratio between friction force and normal force.
Symbol: K1
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Keulegan Repletion Coefficient [dimensionless]
Keulegan Repletion Coefficient [dimensionless] is mainly dependent on the King’s Inlet Friction Coefficient.
Symbol: K
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
King’s 1st Inlet Friction Coefficient
King’s 1st Inlet Friction Coefficient [Dimensionless] is defined as the ratio between friction force and normal force.
Symbol: K2
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other formulas in Inlet Currents and Tidal Elevations category

​Go Average Velocity in Channel for Flow through Inlet into Bay
Vavg=AbdBayAavg
​Go Average Area over Channel Length for Flow through Inlet into Bay
Aavg=AbdBayVavg
​Go Surface Area of Bay for Flow through Inlet into Bay
Ab=VavgAavgdBay
​Go Change of Bay Elevation with Time for Flow through Inlet into Bay
dBay=AavgVavgAb

How to Evaluate Inlet Friction Coefficient given Keulegan Repletion Coefficient?

Inlet Friction Coefficient given Keulegan Repletion Coefficient evaluator uses King’s Inlet Friction Coefficient = 1/(Keulegan Repletion Coefficient [dimensionless]*King’s 1st Inlet Friction Coefficient)^2 to evaluate the King’s Inlet Friction Coefficient, The Inlet Friction Coefficient given Keulegan Repletion Coefficient results include the phase lag between bay and. ocean tides, and dimensionless values of maximum inlet velocity and bay. amplitude; these results are presented as functions of the so-called. "repletion coefficient," K. King’s Inlet Friction Coefficient is denoted by K1 symbol.

How to evaluate Inlet Friction Coefficient given Keulegan Repletion Coefficient using this online evaluator? To use this online evaluator for Inlet Friction Coefficient given Keulegan Repletion Coefficient, enter Keulegan Repletion Coefficient [dimensionless] (K) & King’s 1st Inlet Friction Coefficient (K2) and hit the calculate button.

FAQs on Inlet Friction Coefficient given Keulegan Repletion Coefficient

What is the formula to find Inlet Friction Coefficient given Keulegan Repletion Coefficient?
The formula of Inlet Friction Coefficient given Keulegan Repletion Coefficient is expressed as King’s Inlet Friction Coefficient = 1/(Keulegan Repletion Coefficient [dimensionless]*King’s 1st Inlet Friction Coefficient)^2. Here is an example- 28.44444 = 1/(0.75*0.25)^2.
How to calculate Inlet Friction Coefficient given Keulegan Repletion Coefficient?
With Keulegan Repletion Coefficient [dimensionless] (K) & King’s 1st Inlet Friction Coefficient (K2) we can find Inlet Friction Coefficient given Keulegan Repletion Coefficient using the formula - King’s Inlet Friction Coefficient = 1/(Keulegan Repletion Coefficient [dimensionless]*King’s 1st Inlet Friction Coefficient)^2.
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