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Pascal's Principle Calculator

Result

1,000.00N

Result: 1,000.00 N

The same pressure acts on both pistons, so the force grows with the area ratio: F₂ = F₁ × A₂ ÷ A₁. A piston ten times larger gives ten times the force. Enter areas, not diameters — with diameters the ratio would be squared and the answer far too large.

The numbers at a glance

Held fixed: Input force F₁ 100.00 N, Small piston area A₁ 5.0000 cm².

Large piston area A₂ (cm²)Result (N)
20.0000400.00
40.0000800.00
50.0000Your value1,000.00
60.00001,200.00
80.00001,600.00
100.00002,000.00

Worked examples

Case 1
Input force F₁
100N
Small piston area A₁
5cm²
Large piston area A₂
50cm²

1,000.00N

Open with these values
Case 3
Input force F₁
200N
Small piston area A₁
10cm²
Large piston area A₂
25cm²

500.00N

Open with these values

How it's calculated

F₂ = F₁ × A₂ ÷ A₁

  1. StepEnter the force pushing on the small piston.
  2. StepEnter both piston areas in the same unit — the ratio cancels it out.
  3. ResultRead the force at the large piston, in the unit of the input force.

Reference table

F₁, A₁, A₂Area ratioF₂ (N)
100, 5, 5one to one100
200, 10, 25two and a half to one500
50, 2, 8four to one200
12.5, 1.25, 6.25five to one62.5
100, 5, 50ten to one1000

Questions

How do I calculate the output force?

Multiply the input force by the ratio of the piston areas: F₂ = F₁ × A₂ ÷ A₁. A 100 N force on a 5 cm² piston against a 50 cm² piston gives 1000 N. Keep both areas in the same unit so the ratio stays unitless.

What is Pascal's principle?

Pressure applied to a confined, incompressible fluid is transmitted equally and undiminished in every direction. In a hydraulic press the same pressure therefore acts on both pistons, and the larger one produces a proportionally larger force.

Why does a hydraulic press multiply force?

Because pressure is force divided by area and is identical on both pistons. The output force scales with the area ratio A₂ ÷ A₁, so a piston ten times larger produces ten times the force.

Does a hydraulic press create energy?

No — the large piston gains force but loses distance by the same ratio. To lift it by 1 cm at an area ratio of ten, the small piston has to travel 10 cm. You trade a long, easy stroke for a short, powerful one.

Do I enter areas or diameters?

Areas. If you only know the piston diameters, convert each one first with A = π × (d ÷ 2)². Entering diameters directly would understate the ratio, because area grows with the square of the diameter.

Sources and last check

  1. en.wikipedia.org

Information, not professional advice.