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An engineer is designing a waterslide for a water park, where water flows down to create a fast yet safe ride for park visitors.
The slide is 25 meters long and begins at a height of 10 meters, with a safe speed of 12 meters per second at the bottom.
Bernoulli's equation helps calculate the water's speed, relating the potential energy, kinetic energy, and pressure at both points that are open to air. It assumes no friction and treats water as an ideal fluid.
At the top of the slide, the water is at rest, and its velocity increases as it descends.
With the slide's height of 10 meters, the calculated speed of the water at the bottom is approximately 14 meters per second, which exceeds the safe limit.
The slide's height must be lowered to reduce the speed to a safe level.
After recalculating for a speed of 12 meters per second, the slide height should be reduced to approximately 7.34 meters.
This ensures that the water flows down the slide safely, preventing it from exceeding the safe speed as it reaches the bottom.
When designing a water slide, controlling the speed of water flow is crucial for rider safety while maintaining an exciting experience. As water flows…
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