You are in the Himalayas seeking out the beautiful but elusive Snow Leopard. Suddenly, you hear the low growl of the hungry predator. There, 41.5ft behind you perched on an outcropping 4.20m high is a well camouflaged, sneering, and ready to pounce leopard (sneering leopards?). In an instant, he leaps with a speed of 9.50m/s at an angle of 32.0°. How far from you does he land?

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Need help with problem number 8 only pls 

Certainly! Here is the transcription of the text designed for an educational website:

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**6.** My favorite projectile to launch is ________

**7.** You launch a projectile which has a \( \Delta x = 51.0 \, \text{m} \), and then double the velocity but keep the angle the same, what is the new \( \Delta x \). Assume \( \Delta y = 0.00 \, \text{m} \) for both projectiles.

\( \Delta x = \) ________

**8.** You are in the Himalayas seeking out the beautiful but elusive Snow Leopard. Suddenly, you hear the low growl of the hungry predator. There, 41.5 ft behind you, perched on an outcropping 4.20 m high, is a well-camouflaged, sneering, and ready-to-pounce leopard (sneering leopards?). In an instant, he leaps with a speed of 9.50 m/s at an angle of 32.0°. How far from you does he land?

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Note: No graphs or diagrams are present in the image.
Transcribed Image Text:Certainly! Here is the transcription of the text designed for an educational website: --- **6.** My favorite projectile to launch is ________ **7.** You launch a projectile which has a \( \Delta x = 51.0 \, \text{m} \), and then double the velocity but keep the angle the same, what is the new \( \Delta x \). Assume \( \Delta y = 0.00 \, \text{m} \) for both projectiles. \( \Delta x = \) ________ **8.** You are in the Himalayas seeking out the beautiful but elusive Snow Leopard. Suddenly, you hear the low growl of the hungry predator. There, 41.5 ft behind you, perched on an outcropping 4.20 m high, is a well-camouflaged, sneering, and ready-to-pounce leopard (sneering leopards?). In an instant, he leaps with a speed of 9.50 m/s at an angle of 32.0°. How far from you does he land? --- Note: No graphs or diagrams are present in the image.
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