A golf ball is hit off a tee at the edge of a cliff. Its x and y coordinates as functions of time are given by the following expressions: x = - (18.0m / s) t y y = (4.00m / s) t- (4.90m /s2)t2 (a) Write a vector expression for the ball’s position as a function of time, using the unit vectors and . By taking derivatives, obtain expressions for (b) the velocity vector as a function of time and (c) the acceleration vector as a function of time. Next use unit–vector notation to write expressions for (d) the position, (e) the velocity, and (f) the acceleration of the golf ball, all at t 3.00 s.

 2. A golf ball is hit off a tee at the edge of a cliff. Its x and y coordinates as functions of time are given by the following expressions: 

x = - (18.0m / s) t y y = (4.00m / s) t- (4.90m /s2)t2

(a) Write a vector expression for the ball’s position as a function of time, using the unit vectors and . By taking derivatives, obtain expressions for (b) the velocity vector as a function of time and (c) the acceleration vector as a function of time. Next use unit–vector notation to write expressions for (d) the position, (e) the velocity, and (f) the acceleration of the golf ball, all at t  3.00 s.





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