Calculateur d'intégrale définie
Approximez numériquement une intégrale définie via la méthode de Simpson.
Tableau d'amortissement
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Introduction
Definite Integral Calculator — Numerically approximate a definite integral via Simpson's rule. Enter Coefficient a, Exponent n, Lower bound, Upper bound, Steps to get an instant, accurate result.
Formule
Numerically approximated using Simpson's rule: the interval [lower, upper] is split into an even number of subintervals and the area under a×xⁿ is estimated with a weighted sum, rather than solved symbolically.
Étape par étape
- Enter the Coefficient a.
- Enter the Exponent n.
- Enter the Lower bound.
- Enter the Upper bound.
- Enter the Steps.
- Click Calculate to see your result instantly.
Exemple concret
Example: With Coefficient a = 1, Exponent n = 2, Lower bound = 0, Upper bound = 3, Steps = 100, the Definite Integral Calculator gives Result: 9.
Questions Fréquentes
Is this an exact result?
How many subintervals are used?
What inputs does the Definite Integral Calculator need?
How accurate is the Definite Integral Calculator?
Is the Definite Integral Calculator free to use?
À propos de Calculateur d'intégrale définie
The Definite Integral Calculator uses a real, verifiable formula — Numerically approximated using Simpson's rule: the interval [lower, upper] is split into an even number of subintervals and the area under a×xⁿ is estimated with a weighted sum, rather than solved symbolically. — so results are accurate every time, not an approximation.