Supply all missing information with the correct numerical values. Do not include the units. Round off all answers to two decimal places. Juanito is pulling a cart with 15.00-N force due 20.00 degrees North of West. Find a vector of equal length perpendicular to the force exerted by Juanito Let the force exerted by Juanito be and the force perpendicular to that force be FP. The vector makes an angle of degrees with respect to the positive x-axis. Subtracting 90 degrees from that standard angle, F, should be due degrees north of east, Since we know that the magnitude of F is equal to that of and we also know the angle of F we can calculate the components of which results to: Î + P

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter5: More Applications Of Newton’s Laws
Section: Chapter Questions
Problem 40P
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Supply all missing information with the correct numerical values. Do not include the units. Round off all answers to two decimal places.
Juanito is pulling a cart with 15.00-N force due 20.00 degrees North of West. Find a vector of equal length perpendicular to the force exerted by Juanito
Let the force exerted by Juanito be
and the force perpendicular to that force be FP.
The vector
makes an angle of
degrees with respect to the positive x-axis. Subtracting 90 degrees from that standard angle, F, should be due
degrees north of east,
Since we know that the magnitude of F
is equal to that of
and we also know the angle of F
we can calculate the components of
which results to:
Î +
P
Transcribed Image Text:Supply all missing information with the correct numerical values. Do not include the units. Round off all answers to two decimal places. Juanito is pulling a cart with 15.00-N force due 20.00 degrees North of West. Find a vector of equal length perpendicular to the force exerted by Juanito Let the force exerted by Juanito be and the force perpendicular to that force be FP. The vector makes an angle of degrees with respect to the positive x-axis. Subtracting 90 degrees from that standard angle, F, should be due degrees north of east, Since we know that the magnitude of F is equal to that of and we also know the angle of F we can calculate the components of which results to: Î + P
(COLLAB) Simulate projectile motion with air resistance in PhysLab. A shuttlecock is launched from the ground with an initial speed of 38.0323 m/s at an angle of 5.3909 degrees with respect to the
horizontal. The shuttlecock experiences air resistance with a drag coefficient of 0.1029 in an environment where the air density is 0.3129 kg/m3. If the shuttlecock has a radius of 3.4 cm and a mass of 5.2
grams, what is the maximum height reached by the shuttlecock? Assume that the experiment is done near the surface of the earth.
Transcribed Image Text:(COLLAB) Simulate projectile motion with air resistance in PhysLab. A shuttlecock is launched from the ground with an initial speed of 38.0323 m/s at an angle of 5.3909 degrees with respect to the horizontal. The shuttlecock experiences air resistance with a drag coefficient of 0.1029 in an environment where the air density is 0.3129 kg/m3. If the shuttlecock has a radius of 3.4 cm and a mass of 5.2 grams, what is the maximum height reached by the shuttlecock? Assume that the experiment is done near the surface of the earth.
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