Solution
Related Formula
P = P₀ + ρ g h F = Δ P · ACore Logic
Let's analyze the pressure acting on the window at depth h = 3~m from both sides:
- Water side (density ρw = 1.0 × 10³~kg/m³):
- Denser liquid side (density ρl = 1.5 × 10³~kg/m³):
The net pressure difference pushing on the window is:
Δ P = Pl - Pw = (ρl - ρw) g h Δ P = (1.5 × 10³ - 1.0 × 10³) × 10 × 3 = 500 × 30 = 15000~N/m²The window has area A = 100~cm² = 100 × 10⁻⁴~m² = 10⁻²~m².
To keep the door from opening, we must apply a force balancing the pressure difference:
F = Δ P · A = 15000 × 10⁻² = 150~NStep 1: Final Conclusion
The required force is
150\mathrm{~N}.Pattern Recognition
For a vertical interface between two fluids, the net pressure difference is simply given by
\Delta P = \Delta \rho \cdot g h. The ambient atmospheric pressureP_0$ cancels out since it acts on both sides of the window.Chapter Mix
Class 11 Physics: Mechanical Properties of Fluids