The minute hand on a watch is 1.00 cm in length. Assume the origin of the xy-plane is at the center of the clock face, the x-axis points in the same direction as the minute hand at 8:15 a.m., and the y-axis points in the same direction as the minute hand at 8:00 a.m. What is the displacement vector of the tip of the minute hand from 8:00 to 8:20 a.m.? Enter the x and y components of the displacement vector in centimeters separated by a comma. What is the displacement vector of the tip of the minute hand from 8:00 to 9:00 a.m.? Enter the x and y components of the displacement vector in centimeters separated by a comma.
The minute hand on a watch is 1.00 cm in length. Assume the origin of the xy-plane is at the center of the clock face, the x-axis points in the same direction as the minute hand at 8:15 a.m., and the y-axis points in the same direction as the minute hand at 8:00 a.m. What is the displacement vector of the tip of the minute hand from 8:00 to 8:20 a.m.? Enter the x and y components of the displacement vector in centimeters separated by a comma. What is the displacement vector of the tip of the minute hand from 8:00 to 9:00 a.m.? Enter the x and y components of the displacement vector in centimeters separated by a comma.
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The minute hand on a watch is 1.00 cm in length. Assume the origin of the xy-plane is at the center of the clock face, the x-axis points in the same direction as the minute hand at 8:15 a.m., and the y-axis points in the same direction as the minute hand at 8:00 a.m.
What is the displacement vector of the tip of the minute hand from 8:00 to 8:20 a.m.?
Enter the x and y components of the displacement vector in centimeters separated by a comma.
What is the displacement vector of the tip of the minute hand from 8:00 to 9:00 a.m.?
Enter the x and y components of the displacement vector in centimeters separated by a comma.
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