PLEASE ANSWER PART 2 . In the World Pond Hockey tournament held in Plaster Rock, NB, a puck on the ice travels 20.0 m [25° W of N], gets deflected, and travels 30.0 m [35° N of W]. 1. Determine where the puck will end up with respect to its starting point, e.g., the puck's total displacement, using the three different methods discussed. 2. In the same tournament, a player is positioned 35 m [40° W of S] of the net. He shoots the puck 25 m [E] to a teammate. What second displacement does the puck have to travel to make it to the net? Find the answer using the component method and one of the other two methods discussed.
PLEASE ANSWER PART 2 . In the World Pond Hockey tournament held in Plaster Rock, NB, a puck on the ice travels 20.0 m [25° W of N], gets deflected, and travels 30.0 m [35° N of W]. 1. Determine where the puck will end up with respect to its starting point, e.g., the puck's total displacement, using the three different methods discussed. 2. In the same tournament, a player is positioned 35 m [40° W of S] of the net. He shoots the puck 25 m [E] to a teammate. What second displacement does the puck have to travel to make it to the net? Find the answer using the component method and one of the other two methods discussed.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter3: Vectors
Section: Chapter Questions
Problem 55PQ: Two birds begin next to each other and then fly through the air at the same elevation above level...
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PLEASE ANSWER PART 2
. In the World Pond Hockey tournament held in Plaster Rock, NB, a puck on the ice travels 20.0 m [25° W of N], gets deflected, and travels 30.0 m [35° N of W].
1. Determine where the puck will end up with respect to its starting point, e.g., the puck's total displacement, using the three different methods discussed.
2. In the same tournament, a player is positioned 35 m [40° W of S] of the net. He shoots the puck 25 m [E] to a teammate. What second displacement does the puck have to travel to make it to the net? Find the answer using the component method and one of the other two methods discussed.
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