What is the upper bound of the blitz nozzle's above-horizontal range?

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Multiple Choice

What is the upper bound of the blitz nozzle's above-horizontal range?

Explanation:
Water streams follow a parabolic path, so how far they travel horizontally before hitting the ground depends on the launch angle. With a blitz nozzle, the outlet speed is effectively fixed, and you’re balancing how much of that speed goes into forward motion versus lifting the water upward. Too shallow a angle and you don’t gain enough height to stay aloft long enough to travel far; too steep a angle and most of the speed goes into lifting the water up, leaving little forward velocity and causing the stream to fall short. The best balance for maximum distance above the ground—the upper bound of the above-horizontal range—for this nozzle setup is about 50 degrees. That angle provides enough vertical lift to stay aloft longer while still preserving substantial horizontal velocity, producing the greatest forward reach. Angles significantly higher (like 60 or 70 degrees) shift too much of the speed into vertical motion, reducing forward travel; angles lower than about 50 degrees don’t provide enough vertical lift to maximize how far the stream can go. Hence the 50-degree mark is the optimal upper bound in this context.

Water streams follow a parabolic path, so how far they travel horizontally before hitting the ground depends on the launch angle. With a blitz nozzle, the outlet speed is effectively fixed, and you’re balancing how much of that speed goes into forward motion versus lifting the water upward. Too shallow a angle and you don’t gain enough height to stay aloft long enough to travel far; too steep a angle and most of the speed goes into lifting the water up, leaving little forward velocity and causing the stream to fall short.

The best balance for maximum distance above the ground—the upper bound of the above-horizontal range—for this nozzle setup is about 50 degrees. That angle provides enough vertical lift to stay aloft longer while still preserving substantial horizontal velocity, producing the greatest forward reach.

Angles significantly higher (like 60 or 70 degrees) shift too much of the speed into vertical motion, reducing forward travel; angles lower than about 50 degrees don’t provide enough vertical lift to maximize how far the stream can go. Hence the 50-degree mark is the optimal upper bound in this context.

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