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Buoyant Force — result sheet
Calculate the upward buoyant-force magnitude from fluid density, displaced volume, and local gravitational acceleration.
Inputs used
Results
Visual chart
Breakdown
Calculation steps
Returned data table
Formula and methodology
Formula: Buoyant force = fluid density x displaced volume x gravitational acceleration.
Archimedes' principle states that the buoyant force equals the weight of the displaced fluid. The input volume is the fluid volume displaced by the immersed portion.
This result follows the calculator's declared inputs, precision, validation boundaries, and model limits.
Input contract
- Fluid density — kg/m^3; minimum 0; maximum 1000000
- Displaced volume — m^3; minimum 0; maximum 1000000000
- Gravitational acceleration — m/s^2; minimum 1.0E-6; maximum 100
Worked example
| Input | Value |
|---|---|
| Fluid density | 1000 |
| Displaced volume | 0.002 |
| Gravitational acceleration | 9.80665 |
Buoyant force 19.6133 N.
Assumptions and limits
- Density, volume, and gravity use the stated SI units and are nonnegative, with positive gravity.
- The fluid is treated as static and uniform; surface tension, compressibility, and flow effects are not modeled.
Calculator note
Source and methodology
Use the official WorldCalculate methodology policy for the source, formula, precision, and boundary standards behind this calculator.
Planning estimate, not financial, medical, legal, or professional advice. © WorldCalculate — reuse with attribution. Built and curated by Hassan ALRowaie.
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