a. Suppose you were doing a problem in not two, but three dimensions. Write all 4 kinematic equations for the z axis (i.e., with the appropriate z subscripts) b. A ball is executing projectile motion and has initial position vector , initial velocity vector vo, and constant acceleration à graphed below. Its height is 20m, speed is 4m/s inclined at 39° and the acceleration is due to Earth's gravity. Compute the numerical values of the 6 quantities xo, Yo, Vxo, Vyo, ax, ay
a. Suppose you were doing a problem in not two, but three dimensions. Write all 4 kinematic equations for the z axis (i.e., with the appropriate z subscripts) b. A ball is executing projectile motion and has initial position vector , initial velocity vector vo, and constant acceleration à graphed below. Its height is 20m, speed is 4m/s inclined at 39° and the acceleration is due to Earth's gravity. Compute the numerical values of the 6 quantities xo, Yo, Vxo, Vyo, ax, ay
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a. Suppose you were doing a problem in not two, but three dimensions. Write all 4 kinematic
equations for the z axis (i.e., with the appropriate z subscripts)
b. A ball is executing projectile motion and has initial position vector ro, initial velocity vector
o, and constant acceleration à graphed below. Its height is 20m, speed is 4m/s inclined at
39⁰ and the acceleration is due to Earth's gravity. Compute the numerical values of the 6
quantities Xo, Yo, Vxo, Vyo, ax, ay
y
20m
O
18
39⁰
vo
8"
Transcribed Image Text:1.C.
a. Suppose you were doing a problem in not two, but three dimensions. Write all 4 kinematic
equations for the z axis (i.e., with the appropriate z subscripts)
b. A ball is executing projectile motion and has initial position vector ro, initial velocity vector
o, and constant acceleration à graphed below. Its height is 20m, speed is 4m/s inclined at
39⁰ and the acceleration is due to Earth's gravity. Compute the numerical values of the 6
quantities Xo, Yo, Vxo, Vyo, ax, ay
y
20m
O
18
39⁰
vo
8
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