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Differential Calculus Simulations

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20 simulations1 topic families

Showing 20 of 20 simulations.

Statics simulation family

Differential Calculus

20 simulations
2D

Functions, Limits, and Continuity - Theory & Concepts - Limit Explorer

Master the foundational concepts of calculus: basic function properties, domain and range, limits, limit laws, the Squeeze Theorem, and continuity.

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2D

Functions, Limits, and Continuity - Theory & Concepts - Epsilon Delta

Master the foundational concepts of calculus: basic function properties, domain and range, limits, limit laws, the Squeeze Theorem, and continuity.

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2D

Functions, Limits, and Continuity - Theory & Concepts - Continuity Explorer

Master the foundational concepts of calculus: basic function properties, domain and range, limits, limit laws, the Squeeze Theorem, and continuity.

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2D

The Derivative - Theory & Concepts - Secant Tangent

Master the core of differential calculus: the historical context, one-sided derivatives, differentiability, differentiation rules, and implicit differentiation.

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2D

Derivatives of Transcendental Functions - Theory & Concepts - Transcendental Explorer

Expand your differentiation skills to trigonometric, exponential, logarithmic, and hyperbolic functions, including inverse hyperbolic derivatives.

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Derivatives of Transcendental Functions - Theory & Concepts - Exponential Growth

Expand your differentiation skills to trigonometric, exponential, logarithmic, and hyperbolic functions, including inverse hyperbolic derivatives.

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2D

Theorems of Calculus - Theory & Concepts

Understand the foundational theorems that bridge the gap between continuous functions and derivatives: the Extreme Value Theorem, Rolle's Theorem, the Mean Value Theorem, and Cauchy's MVT.

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2D

Theorems of Calculus - Theory & Concepts - L Hopital Rule

Understand the foundational theorems that bridge the gap between continuous functions and derivatives: the Extreme Value Theorem, Rolle's Theorem, the Mean Value Theorem, and Cauchy's MVT.

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2D

Theorems of Calculus - Theory & Concepts - Newtons Method

Understand the foundational theorems that bridge the gap between continuous functions and derivatives: the Extreme Value Theorem, Rolle's Theorem, the Mean Value Theorem, and Cauchy's MVT.

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2D

Applications of the Derivative - Theory & Concepts - Ladder

Apply differentiation to solve problems in motion, optimization, geometric analysis, and marginal cost.

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Applications of the Derivative - Theory & Concepts - Cone Related Rates

Apply differentiation to solve problems in motion, optimization, geometric analysis, and marginal cost.

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Applications of the Derivative - Theory & Concepts - Canal Optimization

Apply differentiation to solve problems in motion, optimization, geometric analysis, and marginal cost.

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2D

Differentials and Approximations - Theory & Concepts - Linear Approximation

Learn how to use differentials to approximate function values and calculate errors, and discover Newton's Method and Taylor/Maclaurin Polynomials.

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Differentials and Approximations - Theory & Concepts - Newtons Method

Learn how to use differentials to approximate function values and calculate errors, and discover Newton's Method and Taylor/Maclaurin Polynomials.

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Partial Differentiation - Theory & Concepts - Partial Deriv

Expand calculus to multivariable functions, partial derivatives, the gradient vector, the second partials test, and Lagrange Multipliers.

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2D

Partial Differentiation - Theory & Concepts - Gradient Vector

Expand calculus to multivariable functions, partial derivatives, the gradient vector, the second partials test, and Lagrange Multipliers.

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Radius of Curvature - Theory & Concepts - Superelevation Curvature

Understand the curvature of a function, the radius of curvature, parametric/polar forms, and the osculating circle, essential concepts for highway engineering and structural analysis.

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2D

Radius of Curvature - Theory & Concepts

Understand the curvature of a function, the radius of curvature, parametric/polar forms, and the osculating circle, essential concepts for highway engineering and structural analysis.

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Derivatives of Parametric and Polar Curves - Theory & Concepts - Calculus Projectile Parametric

Learn how to find derivatives, slopes, and tangency angles for curves defined parametrically and in polar coordinates.

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Derivatives of Parametric and Polar Curves - Theory & Concepts - Parametric Polar

Learn how to find derivatives, slopes, and tangency angles for curves defined parametrically and in polar coordinates.

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