Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights Solution

STEP 0: Pre-Calculation Summary
Formula Used
Buoyant Force = (Specific Weight of body*Specific Volume at Point 1+Specific Weight 2*Specific Volume at Point 2)
FBuoyant = (ω*ν1+ω1*ν2)
This formula uses 5 Variables
Variables Used
Buoyant Force - (Measured in Newton) - Buoyant Force is the upward force exerted by any fluid upon a body placed in it.
Specific Weight of body - (Measured in Newton per Cubic Meter) - Specific Weight of body the ratio of a body’s weight P to its volume V.
Specific Volume at Point 1 - (Measured in Cubic Meter per Kilogram) - Specific Volume at Point 1 is the number of cubic meters occupied by one kilogram of matter. It is the ratio of a material's volume to its mass.
Specific Weight 2 - (Measured in Newton per Cubic Meter) - Specific Weight 2 is the specific weight of 2nd fluid.
Specific Volume at Point 2 - (Measured in Cubic Meter per Kilogram) - Specific Volume at Point 2 is the number of cubic meters occupied by one kilogram of matter. It is the ratio of a material's volume to its mass.
STEP 1: Convert Input(s) to Base Unit
Specific Weight of body: 75537 Newton per Cubic Meter --> 75537 Newton per Cubic Meter No Conversion Required
Specific Volume at Point 1: 0.001 Cubic Meter per Kilogram --> 0.001 Cubic Meter per Kilogram No Conversion Required
Specific Weight 2: 65500 Newton per Cubic Meter --> 65500 Newton per Cubic Meter No Conversion Required
Specific Volume at Point 2: 0.816 Cubic Meter per Kilogram --> 0.816 Cubic Meter per Kilogram No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
FBuoyant = (ω*ν112) --> (75537*0.001+65500*0.816)
Evaluating ... ...
FBuoyant = 53523.537
STEP 3: Convert Result to Output's Unit
53523.537 Newton --> No Conversion Required
FINAL ANSWER
53523.537 53523.54 Newton <-- Buoyant Force
(Calculation completed in 00.004 seconds)

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Buoyancy Force and Center of Buoyancy Calculators

Cross Sectional Area of Prism given Buoyancy Force
​ LaTeX ​ Go Cross-Sectional Area of Body = Buoyant Force/(Specific Weight of body*Difference in Pressure Head)
Specific Weight pf Fluid given Buoyancy Force
​ LaTeX ​ Go Specific Weight of body = Buoyant Force/(Difference in Pressure Head*Cross-Sectional Area of Body)
Pressure Head Difference given Buoyancy Force
​ LaTeX ​ Go Difference in Pressure Head = Buoyant Force/(Specific Weight of body*Cross-Sectional Area of Body)
Buoyant Force on Vertical Prism
​ LaTeX ​ Go Buoyant Force = Specific Weight of body*Difference in Pressure Head*Cross-Sectional Area of Body

Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights Formula

​LaTeX ​Go
Buoyant Force = (Specific Weight of body*Specific Volume at Point 1+Specific Weight 2*Specific Volume at Point 2)
FBuoyant = (ω*ν1+ω1*ν2)

What is meant by Specific Weight?

Specific Weight is the weight of a substance per unit volume in absolute units equal to the density multiplied by the acceleration of gravity.

How to Calculate Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights?

Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights calculator uses Buoyant Force = (Specific Weight of body*Specific Volume at Point 1+Specific Weight 2*Specific Volume at Point 2) to calculate the Buoyant Force, Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights is force that causes objects to float. Buoyant Force is upward force exerted by fluid that opposes weight of object immersed in fluid. Buoyant Force is denoted by FBuoyant symbol.

How to calculate Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights using this online calculator? To use this online calculator for Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights, enter Specific Weight of body (ω), Specific Volume at Point 1 1), Specific Weight 2 1) & Specific Volume at Point 2 2) and hit the calculate button. Here is how the Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights calculation can be explained with given input values -> 53523.54 = (75537*0.001+65500*0.816).

FAQ

What is Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights?
Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights is force that causes objects to float. Buoyant Force is upward force exerted by fluid that opposes weight of object immersed in fluid and is represented as FBuoyant = (ω*ν112) or Buoyant Force = (Specific Weight of body*Specific Volume at Point 1+Specific Weight 2*Specific Volume at Point 2). Specific Weight of body the ratio of a body’s weight P to its volume V, Specific Volume at Point 1 is the number of cubic meters occupied by one kilogram of matter. It is the ratio of a material's volume to its mass, Specific Weight 2 is the specific weight of 2nd fluid & Specific Volume at Point 2 is the number of cubic meters occupied by one kilogram of matter. It is the ratio of a material's volume to its mass.
How to calculate Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights?
Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights is force that causes objects to float. Buoyant Force is upward force exerted by fluid that opposes weight of object immersed in fluid is calculated using Buoyant Force = (Specific Weight of body*Specific Volume at Point 1+Specific Weight 2*Specific Volume at Point 2). To calculate Buoyant Force when Body Floats at between two Immiscible Fluids of Specific Weights, you need Specific Weight of body (ω), Specific Volume at Point 1 1), Specific Weight 2 1) & Specific Volume at Point 2 2). With our tool, you need to enter the respective value for Specific Weight of body, Specific Volume at Point 1, Specific Weight 2 & Specific Volume at Point 2 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 Buoyant Force?
In this formula, Buoyant Force uses Specific Weight of body, Specific Volume at Point 1, Specific Weight 2 & Specific Volume at Point 2. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Buoyant Force = Specific Weight of body*Difference in Pressure Head*Cross-Sectional Area of Body
  • Buoyant Force = Specific Weight of body*Volume of Body
  • Buoyant Force = Specific Weight of body*Volume of Body
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