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| Accuracy | Question | Correct/Attempt | Last Answer |
|---|---|---|---|
| 50% | Average Value of a Function AP Calculus AB / Unit 8: Applications of Integration | 1/2 | May 14, 2026 02:59 |
| 50% | Derivative Using the Product Rule AP Calculus AB / Unit 8: Applications of Integration | 1/2 | May 14, 2026 02:57 |
| 100% | Area Between Two Curves AP Calculus AB / Unit 8: Applications of Integration | 2/2 | May 14, 2026 02:54 |
| 100% | Disk Method Volume Formula AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:49 |
| 100% | Area Between Two Curves AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:48 |
| 50% | Consider the piecewise function defined by $$f(x)=\begin{cases} 2*x+1 & 0\le x<1 \\ 3*x-1 & 1\le x\le 2 \end{cases}$$. Which of the following expressions represents the correct calculation of the average value of $$f(x)$$ on the interval $$[0,2]$$? AP Calculus AB / Unit 8: Applications of Integration | 1/2 | May 14, 2026 02:36 |
| 100% | Average Flow Rate Over an Interval AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:33 |
| 100% | Volume by Disk Method AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:31 |
| 100% | Volume With Circular Cross Sections AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:30 |
| 100% | Average Value of an Exponential Function AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:26 |
| 100% | Volume by Revolution About the X-Axis AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:25 |
| 100% | Find the volume of the solid formed when the region bounded by $$y=x$$ and $$y=x^2$$ (with $$x$$ between $$0$$ and $$1$$) is revolved about the line $$y=-1$$ using the washer method. AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:24 |
| 100% | Volume With Known Cross Sections AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:20 |
| 100% | Solving for Time from a Displacement Integral AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:14 |
| 100% | Position Function From Acceleration AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:13 |
| 100% | Average Value of a Function AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:10 |
| 100% | Ranking Functions by Average Value AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:09 |
| 100% | Definite Integral As Net Change AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:09 |
| 100% | Instantaneous Velocity from Position Function AP Calculus AB / Unit 8: Applications of Integration | 1/1 | May 14, 2026 02:08 |
| 100% | Separating Variables in a Differential Equation AP Calculus AB / Unit 7: Differential Equations | 1/1 | May 7, 2026 02:17 |
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