Volume of Body given Buoyant Force Solution

STEP 0: Pre-Calculation Summary
Formula Used
Volume of Body = Buoyant Force/(Density of Fluid*[g])
V = Fbuoyant/(ρFluid*[g])
This formula uses 1 Constants, 3 Variables
Constants Used
[g] - Gravitational acceleration on Earth Value Taken As 9.80665
Variables Used
Volume of Body - (Measured in Cubic Meter) - Volume of Body is the amount of space that a substance or object occupies or that is enclosed within a container.
Buoyant Force - (Measured in Newton) - Buoyant Force is the upward force exerted by any fluid upon a body placed in it.
Density of Fluid - (Measured in Kilogram per Cubic Meter) - Density of Fluid is defined as the mass of fluid per unit volume of the said fluid.
STEP 1: Convert Input(s) to Base Unit
Buoyant Force: 10.8 Newton --> 10.8 Newton No Conversion Required
Density of Fluid: 1.225 Kilogram per Cubic Meter --> 1.225 Kilogram per Cubic Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
V = Fbuoyant/(ρFluid*[g]) --> 10.8/(1.225*[g])
Evaluating ... ...
V = 0.899015110217276
STEP 3: Convert Result to Output's Unit
0.899015110217276 Cubic Meter --> No Conversion Required
FINAL ANSWER
0.899015110217276 0.899015 Cubic Meter <-- Volume of Body
(Calculation completed in 00.004 seconds)

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11 Buoyancy and Floatation Calculators

Bottom Force on Plate
​ Go Bottom Force = Density of Fluid*[g]*(Distance of Top Edge from Free Surface+Vertical Distance of Point from Free Surface)*Area of Surface
Buoyant Force on Flat Plate of Uniform Thickness
​ Go Buoyant Force = Density of Fluid*[g]*Vertical Distance of Point from Free Surface*Area of Surface
Top Force on Plate
​ Go Top Force = Density of Fluid*[g]*Distance of Top Edge from Free Surface*Area of Surface
Submerged Volume given Weight of Fluid Body
​ Go Submerged Volume = Weight of Fluid Body/(Density of Fluid*[g])
Weight of Submerged Portion of Floating Body
​ Go Weight of Fluid Body = Density of Fluid*[g]*Submerged Volume
Volume of Body given Buoyant Force
​ Go Volume of Body = Buoyant Force/(Density of Fluid*[g])
Buoyant Force given Volume of Body
​ Go Buoyant Force = Density of Fluid*[g]*Volume of Body
Volume of Plate
​ Go Volume of Body = Height of Plate*Area of Surface
Bottom Force given Buoyant Force and Top Force
​ Go Bottom Force = Buoyant Force+Top Force
Top Force given Buoyant Force and Bottom Force
​ Go Top Force = Bottom Force-Buoyant Force
Buoyant Force given Bottom and Top Force
​ Go Buoyant Force = Bottom Force-Top Force

Volume of Body given Buoyant Force Formula

Volume of Body = Buoyant Force/(Density of Fluid*[g])
V = Fbuoyant/(ρFluid*[g])

What is Fluid Mechanics?

Fluid dynamics is “the branch of applied science that is concerned with the movement of liquids and gases”. It involves a wide range of applications such as calculating force & moments, determining the mass flow rate of petroleum through pipelines, predicting weather patterns, understanding nebulae in interstellar space, and modelling fission weapon detonation.

What is Hydrostatic Pressure?

Hydrostatic pressure is defined as “The pressure exerted by a fluid at equilibrium at any point of time due to the force of gravity”. Hydrostatic pressure is proportional to the depth measured from the surface as the weight of the fluid increases when a downward force is applied. The fluid pressure can be caused by gravity, acceleration or forces when in a closed container. Consider a layer of water from the top of the bottle. There is the pressure exerted by the layer of water acting on the sides of the bottle. As we move down from the top of the bottle to the bottom, the pressure exerted by the top layer on the bottom adds up. This phenomenon is responsible for more pressure at the bottom of the container.

How to Calculate Volume of Body given Buoyant Force?

Volume of Body given Buoyant Force calculator uses Volume of Body = Buoyant Force/(Density of Fluid*[g]) to calculate the Volume of Body, The Volume of Body given Buoyant Force formula is defined as the function of density of fluid, gravitational acceleration and buoyant force. Buoyant force is the upward force a fluid exerts on an object. Archimedes' Principle is the fact that buoyant force is equal to the weight of the displaced fluid. The following factors affect buoyant force: the density of the fluid, the volume of the fluid displaced, the local acceleration due to gravity. An object whose density is greater than that of the fluid in which it is submerged tends to sink. If the object is either less dense than the liquid or is shaped appropriately (as in a boat), the force can keep the object afloat. In terms of relative density, if the relative density is less than one, it floats in water and substances with a relative density greater than one sink in water. Volume of Body is denoted by V symbol.

How to calculate Volume of Body given Buoyant Force using this online calculator? To use this online calculator for Volume of Body given Buoyant Force, enter Buoyant Force (Fbuoyant) & Density of Fluid Fluid) and hit the calculate button. Here is how the Volume of Body given Buoyant Force calculation can be explained with given input values -> 0.899015 = 10.8/(1.225*[g]).

FAQ

What is Volume of Body given Buoyant Force?
The Volume of Body given Buoyant Force formula is defined as the function of density of fluid, gravitational acceleration and buoyant force. Buoyant force is the upward force a fluid exerts on an object. Archimedes' Principle is the fact that buoyant force is equal to the weight of the displaced fluid. The following factors affect buoyant force: the density of the fluid, the volume of the fluid displaced, the local acceleration due to gravity. An object whose density is greater than that of the fluid in which it is submerged tends to sink. If the object is either less dense than the liquid or is shaped appropriately (as in a boat), the force can keep the object afloat. In terms of relative density, if the relative density is less than one, it floats in water and substances with a relative density greater than one sink in water and is represented as V = Fbuoyant/(ρFluid*[g]) or Volume of Body = Buoyant Force/(Density of Fluid*[g]). Buoyant Force is the upward force exerted by any fluid upon a body placed in it & Density of Fluid is defined as the mass of fluid per unit volume of the said fluid.
How to calculate Volume of Body given Buoyant Force?
The Volume of Body given Buoyant Force formula is defined as the function of density of fluid, gravitational acceleration and buoyant force. Buoyant force is the upward force a fluid exerts on an object. Archimedes' Principle is the fact that buoyant force is equal to the weight of the displaced fluid. The following factors affect buoyant force: the density of the fluid, the volume of the fluid displaced, the local acceleration due to gravity. An object whose density is greater than that of the fluid in which it is submerged tends to sink. If the object is either less dense than the liquid or is shaped appropriately (as in a boat), the force can keep the object afloat. In terms of relative density, if the relative density is less than one, it floats in water and substances with a relative density greater than one sink in water is calculated using Volume of Body = Buoyant Force/(Density of Fluid*[g]). To calculate Volume of Body given Buoyant Force, you need Buoyant Force (Fbuoyant) & Density of Fluid Fluid). With our tool, you need to enter the respective value for Buoyant Force & Density of Fluid 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 Volume of Body?
In this formula, Volume of Body uses Buoyant Force & Density of Fluid. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Volume of Body = Height of Plate*Area of Surface
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