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one of these representations is not like the others. tap on the one tha…

Question

one of these representations is not like the others. tap on the one that doesnt belong. \the object covers the same horizontal distance every second.\

Explanation:

Step1: Analyze the first representation (velocity vectors)

In projectile - like motion (assuming horizontal and vertical components), the horizontal velocity component \(v_x\) should be constant (in the absence of air resistance). The first representation (with velocity vectors) shows horizontal velocity vectors of the same length (indicating constant \(v_x\)) and vertical velocity vectors changing (due to gravity).

Step2: Analyze the second representation (acceleration vectors)

In projectile - like motion, the acceleration is only due to gravity (\(a = g=- 9.8\ m/s^{2}\) vertically). The second representation (with acceleration vectors) shows only vertical acceleration vectors (matching the physical reality of projectile - like motion where \(a_x = 0\) and \(a_y=-g\)).

Step3: Analyze the table

In projectile - like motion, the horizontal velocity \(v_x\) should be constant. In the table, \(v_x\) is changing (\(v_x\) values are \(0.0,16.0,32.0,48.0,64.0\ m/s\) at \(t = 0.0,1.0,2.0,3.0,4.0\ s\) respectively). This is incorrect as there is no horizontal acceleration (\(a_x = 0\) implies \(v_x=v_{x0}\) constant) in the ideal case (no air resistance) for the motion described by the first two representations.

Answer:

The table