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A Baseball travels under the effect of the force of gravity so its velocity is constantly changing. It is, therefore, not possible to give a sensible answer to the question.

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velocity = distance/time = 38/1.7 = 22.35 m/s

Assuming the velocity doesn't change during the flight - WHICH IS A SIMPLIFICATION - simply divide the distance by the time.

Q: Find the velocity in meters per second of a baseball thrown 38m from third base in 1.7s?

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The answer depends on whether the ball is thrown vertically upwards or downwards. That critical piece of information is not provided!

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Answer: 3 seconds

Acceleration is change of speed / time, so in this case you have 90 miles per hour per second. While this is a valid unit of acceleration (a unit of distance divided by two time units), you may want to convert this to other units. Reminder: 1 hour = 3600 second; and 1 mile = 5280 feet.

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ρ=mvρ= 0.130 x 30ρ= 3.9 Kgms-1

The momentum of the baseball can be calculated using the formula: momentum = mass x velocity. Plugging in the values, we get momentum = 0.148 kg x 35 m/s = 5.18 kgยทm/s. So, the momentum of the baseball thrown toward home plate is 5.18 kgยทm/s.

After a second, the ball will still have a horizontal velocity of 8 meters per second. It will also have a vertical velocity of 9.8 meters per second (Earth's acceleration is about 9.8 meters per square second). The combined speed (using the Law of Pythagoras) is about 12.65 meters per second.

To find the velocity, you can use the formula: Velocity = Distance / Time. In this case, the distance is 38 meters and the time is 1.7 seconds. So, the velocity of the baseball thrown from third base to first base is 38 meters / 1.7 seconds = 22.35 meters per second.

If you divide the distance 38 m by the time of travel 1.7 s, then the velocity of the baseball is 22.35 m/s toward first base.

The initial velocity of the ball thrown upward at 16 ft per second is 16 ft/s.

A baseball thrown with little velocity to fool a hitter is called a changeup. Also known as a change, changay or change-piece.

The object will have the same acceleration of 9.8 meters per second squared whether you drop it or throw it downward. The initial velocity from throwing it will affect its overall velocity as it falls, but the acceleration due to gravity remains constant.

9.8

The vertical component of the initial velocity of the ball thrown horizontally from a window is zero. The ball's initial velocity in the vertical direction is influenced only by the force of gravity, not the horizontal throw.

22.35294117647059

The ball goes up 5.1 meters.