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Both calculators run independently — change the inputs on either side to compare results.
Calculus
Surface of Revolution Calculator
Calculates the surface area formed when a quadratic curve f(x) = c0 + c1·x + c2·x² is rotated around the x-axis or y-axis over a chosen interval. Ideal for calculus courses and 3D design problems involving solids of revolution.
Fill in the required fields to see your result.
Calculus
Numerical Derivative Calculator
Compute the derivative of a power function f(x) = c·x^n + k at a chosen point using either the analytical power rule or a numerical finite-difference approximation. Select 'analytical', 'forward', or 'central' to compare exact and approximate results.
Fill in the required fields to see your result.
Key differences
| Surface of Revolution Calculator | Numerical Derivative Calculator | |
|---|---|---|
| Category | Calculus | Calculus |
| Inputs required | 6 | 5 |
| Result | Surface Area (square units) | Derivative Value |
| What it does | Calculates the surface area formed when a quadratic curve f(x) = c0 + c1·x + c2·x² is rotated around the x-axis or y-axis over a chosen interval. Ideal for calculus courses and 3D design problems involving solids of revolution. | Compute the derivative of a power function f(x) = c·x^n + k at a chosen point using either the analytical power rule or a numerical finite-difference approximation. Select 'analytical', 'forward', or 'central' to compare exact and approximate results. |