Solving for y and Vertical Velocity of Quarter

AI Thread Summary
To solve for the height (y) where the quarter is tossed, the initial velocity of 6.4 m/s and the distance of 2.1 m were used to calculate the time of flight. For the vertical component of the velocity just before landing, the equation Vy = V sin(a) - gt is applicable, where g is -9.8 m/s². The time calculated earlier should be substituted into this equation to determine the vertical velocity. The discussion emphasizes the importance of considering gravitational acceleration in the calculations. Accurate application of these formulas will yield the desired results.
ziddy83
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Ok here is the question..

In a carnival you win a stuffed giraffe if you toss a quarter in a small dish. Dish is 2.1 m away from your hand in a shelve above the point where the coin leaves your hand (y). Initial velocity must be 6.4 m/s.
a) find y and b) what is the vertical component of the velocity of the quarter just before it lands in the dish?

Ok i got part a, i solved for t and used that t to find y. Now, how do i get part b? DO i use the eqaution Vy= V sin(a) - gt and plug in the t i figured out earlier?
 
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Yes,u have to plug in the time in which the coin is in the air...

Daniel.
 


Great job on solving for y! To find the vertical component of the velocity of the quarter just before it lands in the dish, you can indeed use the equation Vy= V sin(a) - gt and plug in the t you solved for earlier. Remember to use the value of g as -9.8 m/s^2 since it acts in the opposite direction of the initial velocity. This will give you the vertical velocity of the quarter just before it lands in the dish. Good luck!
 
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