Consider a similar device to the one you used today with a pendulum arm length of 45.0 cm and a mass of 225. g. A ball of mass 25.0 g is fired into the ball catch and lodges inside. After the collision, the system rises to an angle of 22.5 degrees. What was the initial speed of the ball coming out of the launcher.
Consider a similar device to the one you used today with a pendulum arm length of 45.0 cm and a mass of 225. g. A ball of mass 25.0 g is fired into the ball catch and lodges inside. After the collision, the system rises to an angle of 22.5 degrees. What was the initial speed of the ball coming out of the launcher.
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![Consider a similar device to the one you used today with a pendulum arm length of 45.0 cm and a mass of 225. g. A ball of
mass 25.0 g is fired into the ball catch and lodges inside. After the collision, the system rises to an angle of 22.5 degrees.
What was the initial speed of the ball coming out of the launcher.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F81139972-35ad-4202-8270-dd91bd1ed18a%2F4a7bd61a-8400-42c4-a57c-9341cc570281%2Fpha3aw_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider a similar device to the one you used today with a pendulum arm length of 45.0 cm and a mass of 225. g. A ball of
mass 25.0 g is fired into the ball catch and lodges inside. After the collision, the system rises to an angle of 22.5 degrees.
What was the initial speed of the ball coming out of the launcher.
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