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can you do it according to basic free-fall equations? ( not advance one) and please help me to lable the event in the diagram. Free

can you do it according to basic free-fall equations? ( not advance one) and please help me to lable the event in the diagram.

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Free Fall Motion motion when only gravity affects the object - we ignore air resistance in this case, all objects have the same acceleration, regardless of weight this is called the freefall acceleration, g - +9.8 m's', directed down whether object is moving up or down a =-g where g= 9.2 m/ s since the acceleration is constant, we can use constant acceleration equations with y instead of x Free Fall Equations: In) y =4+V.t- L. g = +9.8 m/s " Constant Acceleration Equations (1) v = V.-qt (2) v = Un+ at (3) V=V- Zgly-y.) (3) =va + 2a(1 - 1.) Freefall Example PHYS 410 First Lent Names 1. Ball 2 is released from rest and, at the same time, ball I is launched upward from the ground with an unknown initial velocity, vou. They eventually collide. See figure below. - dog, for both Ball 1 Ball 2 is released from Known Ball I, way =? D V, = ?V, = ? They 6 floor (a) Find the time of collision if the knowns are & and g. This means your answer must be in Terms of k and g. 1: ball 1 0: ball 1 0: ball 2 I: ball 2 Ball Z zat (3 ) V = V. - at Save for +: y =y, +V.t - 1 t =02 (1) V = V.- qt select (f) for t. (3 ) V" = Vo - Zgly- 4. ) (4 ) V, = Voz-qt 9 = +9.8 m/s ? (b) Find vey in terms of the known variables, & and g. she t = 2 into liy to get Vor he = V. 2 ") - 25 (4) ( by ) Val = 4 13gh gin are knowns (c) Let A = 100 m. Find numerical values for the time of collision and voy. 5 = +9.8m 5 2Free Fall Worksheet PHYS 410 First /Last Names 1. Two balls are launched towards each other as shown in Ball 2 is launched the figure below. Let d = 16.0 m, ball 1 launch speed = downward with 8.00 m's, and ball 2 launch speed = 10.0 m/'s. h = ? velocity vor (a) What value of A will result in a collision located at floor level? O Ball 1 is launched upward with velocity ver Floor (b) What is the velocity of each ball at the time of collision? [OVER)

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