Part 2: Investigation of Coriolis effect (with zero angular acceleration of the disc and zero acceleration of the slider

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Part 2: Investigation of Coriolis effect (with zero angular acceleration of the disc and zero acceleration of the slider

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Part 2 Investigation Of Coriolis Effect With Zero Angular Acceleration Of The Disc And Zero Acceleration Of The Slider 1
Part 2 Investigation Of Coriolis Effect With Zero Angular Acceleration Of The Disc And Zero Acceleration Of The Slider 1 (94.27 KiB) Viewed 31 times
Part 2: Investigation of Coriolis effect (with zero angular acceleration of the disc and zero acceleration of the slider relative to the disc) Study the 'short videos' using the program (a) under different combinations of operating conditions by changing the angular velocity (magnitude and direction) of the rotating disc and/or the velocity of the slider relative to the disc, and (b) from different reference frames, that is, a fixed frame to ground and a rotating frame fixed to the disc. Part 2A. Draw qualitatively the trajectory of the slider when it moves from the initial position (given in the program*) to the position where the slider reaches the other end of the groove, for the two cases requested, viewed from Camera 1 (fixed to ground). Note that the initial position of the disc is shown in Figure 2A, where the groove is horizontal rightward. Also, briefly justify the reasons for the trajectories you draw. Figure 2A. The initial position of the disc for the activities in Part 2A Figure 2A. The initial position of the disc for the activities in Part 2A Case 1 Write the conditions of your case here Case 2 Write the conditions of your case here
Place your drawing for Case 1 here (hand-drawing is allowed as long as it's legible) Briefly justify your drawing for Case 1 here Place your drawing for Case 2 here (hand-drawing is allowed as long as it's legible) Briefly justify your drawing for Case 2 here Part 2B. Based on your observations in Part 2A and your understanding of Coriolis effect, briefly discuss: the effect of the magnitude of the disc's angular velocity on Coriolis acceleration, and draw a graph" that shows the trend of vs the effect of the direction of the disc's angular velocity on Coriolis acceleration. the effect of the magnitude of the slider's velocity relative to the disc on Coriolis acceleration, and draw a graph* that shows the trend of vs. the effect of the direction of the slider's velocity relative to the disc on Coriolis acceleration. the difference between trajectories of the slider viewed from the fixed and rotating reference frames. *Note: the requested graphs are just qualitative sketches of trends.
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