Question
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Mason wants to use a sheet of fiberboard 21 inches long to create a skateboard ramp with a height of inches at its highest end. Find the angle of elevation made by the ramp with the ground. Round your answer to the nearest tenth of a degree.

Ask by Brooks Carrillo. in the United States
Feb 03,2025

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Tutor-Verified Answer

Answer

To find the angle of elevation, we need both the ramp length and its height. Please provide the height in inches, and I'll help calculate the angle.

Solution

It looks like the height of the ramp is missing from your question. To determine the angle of elevation, we'll need both the length of the ramp (21 inches) and its height. **Here's the information we need:** - **Ramp Length (Hypotenuse):** 21 inches - **Ramp Height (Opposite Side):** *[Please provide this value]* **Once you provide the height, we can calculate the angle of elevation using the sine function:** \[ \sin(\theta) = \frac{\text{Opposite}}{\text{Hypotenuse}} \] \[ \theta = \arcsin\left(\frac{\text{Height}}{21}\right) \] Please provide the height of the ramp in inches, and I'll be happy to help you find the angle of elevation!

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Beyond the Answer

To solve for the angle of elevation, we can use the sine function, which is defined as the ratio of the opposite side to the hypotenuse in a right triangle. Given that the height of the ramp is 12 inches and the length of the ramp (the hypotenuse) is 21 inches, we can use the formula: \[ \sin(\theta) = \frac{\text{opposite}}{\text{hypotenuse}} = \frac{12}{21} \] Calculating this gives us: \[ \sin(\theta) = \frac{12}{21} = \frac{4}{7} \approx 0.5714 \] Now, we need to find the angle \(\theta\): \[ \theta = \sin^{-1}(0.5714) \approx 34.0^\circ \] Thus, the angle of elevation made by the ramp with the ground is approximately 34.0 degrees! This is a great way to combine physics with mathematics while also providing a practical application in skateboarding. Additionally, it encourages thinking about angles and beams in construction—a valuable skill in various trades!

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