A bartender slides a beer mug at 1.6 m/s towards a customer at the end of a frictionless bar that is 1.1 m tall. The customer makes a grab for the mug and misses, and the mug sails off the end of the bar. (a) How far away from the end of the bar does the mug hit the floor? 757 (b) What are the speed and direction of the mug at impact?

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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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A bartender slides a beer mug at 1.6 m/s towards a customer at the end of a frictionless bar that is 1.1 m
tall. The customer makes a grab for the mug and misses, and the mug sails off the end of the bar.
(a) How far away from the end of the bar does the mug hit the floor?
757
m
(b) What are the speed and direction of the mug at impact?
speed
This is the speed of an object that falls 1.1 m from rest. Don't neglect the horizontal
motion of the mug before it falls. m/s
direction Draw an arrow to represent the final velocity of the mug. What is the horizontal
component of velocity? (It has not changed since it was sent sliding down the bar!)
What is the vertical component? (It is the same as if the mug were dropped from rest!)
o below the horizontal
Transcribed Image Text:A bartender slides a beer mug at 1.6 m/s towards a customer at the end of a frictionless bar that is 1.1 m tall. The customer makes a grab for the mug and misses, and the mug sails off the end of the bar. (a) How far away from the end of the bar does the mug hit the floor? 757 m (b) What are the speed and direction of the mug at impact? speed This is the speed of an object that falls 1.1 m from rest. Don't neglect the horizontal motion of the mug before it falls. m/s direction Draw an arrow to represent the final velocity of the mug. What is the horizontal component of velocity? (It has not changed since it was sent sliding down the bar!) What is the vertical component? (It is the same as if the mug were dropped from rest!) o below the horizontal
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