Consider the frictionless water slide in the figure below. h₁ h₂ B 1. If a 12.00kg dog starts from rest and slides down the water slide and has a velocity of 2.00m in the horizontal direction at point A, determine the height h₁ of the slide. S m 2. If the bottom of the slide (point A) is 5.00m above the water level, how far horizontally does the dog travel between point A and when it reaches the water at point B? m Equal Less than 3. How would increasing the mass of the dog impact your calculations above? It would result in the height of the slide being greater OIt would result in the height of the slide being less O It would result in the dog's horizontal distance being greater OIt would result in the dog's horizontal distance being less It wouldn't impact any of the calculations 4. If the slide had friction, would the dog's velocity at point A be greater than, less than, or equal to the velocity without friction? O Greater than
Consider the frictionless water slide in the figure below. h₁ h₂ B 1. If a 12.00kg dog starts from rest and slides down the water slide and has a velocity of 2.00m in the horizontal direction at point A, determine the height h₁ of the slide. S m 2. If the bottom of the slide (point A) is 5.00m above the water level, how far horizontally does the dog travel between point A and when it reaches the water at point B? m Equal Less than 3. How would increasing the mass of the dog impact your calculations above? It would result in the height of the slide being greater OIt would result in the height of the slide being less O It would result in the dog's horizontal distance being greater OIt would result in the dog's horizontal distance being less It wouldn't impact any of the calculations 4. If the slide had friction, would the dog's velocity at point A be greater than, less than, or equal to the velocity without friction? O Greater than
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