1. Find the resultant using (a) the head-to-tail method, and (b) the parallelogram method: A clever adventurer on a treasure hunt reads the following instructions from his map: Walk 347 m east of a large acacia tree, then 764 m at a direction 25° north of east, then 465 m in a southwesternly direction. Because he studied physics in college, he uses vector using graphical methods to make his search easier. According to his graphs, how what direction should he walk to get directly to the treasure?

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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1. Find the resultant using (a) the head-to-tail method, and (b) the parallelogram method:
A clever adventurer on a treasure hunt reads the following instructions from his map:
Walk 347 m east of a large acacia tree, then 764 m at a direction 25° north of east, then
465 m in a southwesternly direction. Because he studied physics in college, he uses vector
using graphical methods to make his search easier. According to his graphs, how
what direction should he walk to get directly to the treasure?
2U00232, M2U00233, .
2. Find the magnitude and direction of the resultant for Number 1 by finding the
components of each displacement, and then summing them up.
D (10.0 m)
30°
53°
25°
C (12.0 m)
A (8.00 m)
Figure A1-1. Displacements on a Cartesian plane
B(15.0 m)
Transcribed Image Text:1. Find the resultant using (a) the head-to-tail method, and (b) the parallelogram method: A clever adventurer on a treasure hunt reads the following instructions from his map: Walk 347 m east of a large acacia tree, then 764 m at a direction 25° north of east, then 465 m in a southwesternly direction. Because he studied physics in college, he uses vector using graphical methods to make his search easier. According to his graphs, how what direction should he walk to get directly to the treasure? 2U00232, M2U00233, . 2. Find the magnitude and direction of the resultant for Number 1 by finding the components of each displacement, and then summing them up. D (10.0 m) 30° 53° 25° C (12.0 m) A (8.00 m) Figure A1-1. Displacements on a Cartesian plane B(15.0 m)
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