Three horizontal ropes pull on a large stone stuck in the ground, producing the vector forces A, B, and C shown in the figure (Figure 1). Part A Find the magnitude of a fourth force on the stone that will make the vector sum of the four forces zero. Express your answer in newtons. N Submit Request Answer Figure <1 of 1 Part B Find the direction of a fourth force on the stone that will make the vector sum of the four forces zero. B (80.0 N) Express your answer in degrees. 30.0° A (100.0 N) " counterclockwise from tr-axis 30.0° 53.0° Submit Request Answer C (40.0 N)

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
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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Problem 1.56
Three horizontal ropes pull on a large stone stuck in the ground,
producing the vector forces A, B, and C shown in the figure (Figure 1).
Part A
Find the magnitude of a fourth force on the stone that will make the vector sum of the four forces zero.
Express your answer in newtons.
ΥΠ ΑΣφ
Submit
Request Answer
Figure
1 of 1
Part B
Find the direction of a fourth force on the stone that will make the vector sum of the four forces zero.
B (80.0 N)
Express your answer in degrees.
30.0°
A (100.0 N)
counterclockwise from +r-axis
30.0°
53.0°
Submit
Request Answer
C (40.0 N)
Provide Feedback
P Type here to search
a
Transcribed Image Text:Problem 1.56 Three horizontal ropes pull on a large stone stuck in the ground, producing the vector forces A, B, and C shown in the figure (Figure 1). Part A Find the magnitude of a fourth force on the stone that will make the vector sum of the four forces zero. Express your answer in newtons. ΥΠ ΑΣφ Submit Request Answer Figure 1 of 1 Part B Find the direction of a fourth force on the stone that will make the vector sum of the four forces zero. B (80.0 N) Express your answer in degrees. 30.0° A (100.0 N) counterclockwise from +r-axis 30.0° 53.0° Submit Request Answer C (40.0 N) Provide Feedback P Type here to search a
apter 1
oblem 1.63
You leave the airport in College Station and fly 25.0 km in a direction
34.0° south of east. You then fly 46.0 km due north.
Part A
How far must you then fly to reach a private landing strip that is 32.0 km due west of the College Station airport?
Express your answer with the appropriate units.
HA
R =
Value
Units
Submit
Request Answer
Part B
In what direction?
Express your answer in degrees.
"south of west
Submit
Request Answer
a
24
O Type here to search
Transcribed Image Text:apter 1 oblem 1.63 You leave the airport in College Station and fly 25.0 km in a direction 34.0° south of east. You then fly 46.0 km due north. Part A How far must you then fly to reach a private landing strip that is 32.0 km due west of the College Station airport? Express your answer with the appropriate units. HA R = Value Units Submit Request Answer Part B In what direction? Express your answer in degrees. "south of west Submit Request Answer a 24 O Type here to search
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