km/h, o of 3. The ship's resultant velocity is therefore, (Answers in 2 decimal places.)

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter2: Vectors
Section: Chapter Questions
Problem 63P: Assuming the +x-axis is horizontal to the right for the vectors in the preceding figure, find (a)...
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A ship is sailing the Caribbean Sea at 30 km/h, 60° SofW when it encounters a wind with an average speed of
20 km/h going towards the direction 20° NofW.Apassenger of the ship wants to determine the resultant
velocity of the ship. Help him by using the component method in solving for the vector resultant and by filling
in the blanks below.
1. Complete the table below.
x- component
y - component
Velocity
(4 decimal places)
(4 decimal places)
ship
30 km/h, 60°SofW
km/h
km/h
wind
20 km/h, 20°NofW
km/h
km/h
2. From the table above, the x- and y- components of the resultant velocity are
km/h and
km/h, respectively. (Answers are in 4 decimal places.)
3. The ship's resultant velocity is therefore,
km/h,
ow of
. (Answers in 2 decimal places.)
Transcribed Image Text:A ship is sailing the Caribbean Sea at 30 km/h, 60° SofW when it encounters a wind with an average speed of 20 km/h going towards the direction 20° NofW.Apassenger of the ship wants to determine the resultant velocity of the ship. Help him by using the component method in solving for the vector resultant and by filling in the blanks below. 1. Complete the table below. x- component y - component Velocity (4 decimal places) (4 decimal places) ship 30 km/h, 60°SofW km/h km/h wind 20 km/h, 20°NofW km/h km/h 2. From the table above, the x- and y- components of the resultant velocity are km/h and km/h, respectively. (Answers are in 4 decimal places.) 3. The ship's resultant velocity is therefore, km/h, ow of . (Answers in 2 decimal places.)
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