*31. ssm A car is being pulled out of the mud by two forces that are ap- plied by the two ropes shown in the drawing. The dashed line in the draw- ing bisects the 30.0° angle. The magnitude of the force applied by each rope is 2900 newtons. Arrange the force vectors tail to head and use the graphical technique to answer the following questions. (a) How much force would a single rope need to apply to accomplish the same effect as the two forces added together? (b) How would the single rope be directed relative to the dashed line? 2900 newtons 30.0° 2900 newtons

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter5: Newton's Law Of Motion
Section: Chapter Questions
Problem 19P: Two ropes are attached to a tree, and forces of and are applied. The forces are coplanar (In the...
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*31. ssm A car is being pulled out of the mud by two forces that are ap-
plied by the two ropes shown in the drawing. The dashed line in the draw-
ing bisects the 30.0° angle. The magnitude of the force applied by each
rope is 2900 newtons. Arrange the force vectors tail to head and use the
graphical technique to answer the following questions. (a) How much
force would a single rope need to apply to accomplish the same effect as
the two forces added together? (b) How would the single rope be directed
relative to the dashed line?
2900 newtons
30.0°
2900 newtons
Transcribed Image Text:*31. ssm A car is being pulled out of the mud by two forces that are ap- plied by the two ropes shown in the drawing. The dashed line in the draw- ing bisects the 30.0° angle. The magnitude of the force applied by each rope is 2900 newtons. Arrange the force vectors tail to head and use the graphical technique to answer the following questions. (a) How much force would a single rope need to apply to accomplish the same effect as the two forces added together? (b) How would the single rope be directed relative to the dashed line? 2900 newtons 30.0° 2900 newtons
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