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| Accuracy | Question | Correct/Attempt | Last Answer |
|---|---|---|---|
| 100% | Chain Rule with a Trigonometric Function AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 1/1 | December 15, 2025 13:59 |
| 100% | Implicit Differentiation at a Point AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 1/1 | December 15, 2025 13:59 |
| 0% | Mean Value Theorem Application AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 0/1 | December 15, 2025 13:59 |
| 100% | Mean Value Theorem Application AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 1/1 | December 15, 2025 13:59 |
| 100% | Applying The Mean Value Theorem AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 1/1 | December 15, 2025 13:59 |
| 0% | Derivative of a Composite Trigonometric Function AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 0/1 | December 15, 2025 13:51 |
| 100% | Function From Second Derivative and Conditions AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 1/1 | December 15, 2025 13:51 |
| 0% | Derivative of an Inverse Function AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 0/1 | December 15, 2025 13:51 |
| 0% | Difference Between Local Extrema AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 0/1 | December 15, 2025 13:51 |
| 100% | Solving a Rational Equation AP Calculus AB / Unit 5: Analytical Applications of Differentiation | 1/1 | December 15, 2025 13:51 |
| 100% | Mean Value Theorem Application AP Calculus AB / Unit 4: Contextual Applications of Differentiation | 1/1 | December 15, 2025 13:11 |
| 100% | Related Rates Shadow Problem AP Calculus AB / Unit 4: Contextual Applications of Differentiation | 1/1 | December 15, 2025 13:11 |
| 100% | Average Rate of Change AP Calculus AB / Unit 4: Contextual Applications of Differentiation | 1/1 | December 15, 2025 13:11 |
| 0% | Interpreting the Derivative of Velocity AP Calculus AB / Unit 4: Contextual Applications of Differentiation | 0/1 | December 15, 2025 13:11 |
| 100% | Which of the following is an example of applying the derivative to determine the instantaneous velocity from a position function? In this context, the derivative gives the slope of the tangent line to the position function, representing the instantaneous rate of change (velocity). AP Calculus AB / Unit 4: Contextual Applications of Differentiation | 1/1 | December 15, 2025 13:11 |
| 100% | Implicit Differentiation Process AP Calculus AB / Unit 3: Differentiation: Composite, Implicit, and Inverse Functions | 1/1 | December 15, 2025 13:04 |
| 0% | Derivative of an Inverse Logarithmic Function AP Calculus AB / Unit 3: Differentiation: Composite, Implicit, and Inverse Functions | 0/1 | December 15, 2025 13:04 |
| 100% | Chain Rule Application Order AP Calculus AB / Unit 3: Differentiation: Composite, Implicit, and Inverse Functions | 1/1 | December 15, 2025 13:04 |
| 100% | Differentiate $$y= (\tan(2*x))^3$$ with respect to x. Which of the following represents the correct derivative $$y'$$? AP Calculus AB / Unit 3: Differentiation: Composite, Implicit, and Inverse Functions | 1/1 | December 15, 2025 13:04 |
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