v Ai A Before collision 17B₁1=0 Bi vci B ID 15 Af Di A After collision the magnitude of the final momentum of glider A, PA, greater than, less than, or equal to hat of glider B, PBƒ. Draw a momentum vector diagram to support your answer. . Two gliders, C and D, collide on a level, frictionless track, as shown below. The mass of glider is less than that of glider D (i.e., mc VDi). After the collision, Gliders C and D move in opposite directions with the same final speed (i.e., vcf = VDf). Before collision Vcf v. Bf After collision B Df
v Ai A Before collision 17B₁1=0 Bi vci B ID 15 Af Di A After collision the magnitude of the final momentum of glider A, PA, greater than, less than, or equal to hat of glider B, PBƒ. Draw a momentum vector diagram to support your answer. . Two gliders, C and D, collide on a level, frictionless track, as shown below. The mass of glider is less than that of glider D (i.e., mc VDi). After the collision, Gliders C and D move in opposite directions with the same final speed (i.e., vcf = VDf). Before collision Vcf v. Bf After collision B Df
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Chapter1: Units, Trigonometry. And Vectors
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![5. Predictions Based on Momentum Vector Diagrams
a. Two gliders, A and B, collide on a level, frictionless track, as shown below. The mass of glider
A is less than that of glider B (i.e., mд < m³). The final speed of glider A is greater than that of
glider B (i.e., VAƒ > VBƒ).
V
Ai
A
Before collision
VCi
17B₁1=0
Bi
C
B
Af
Is the magnitude of the final momentum of glider A, PAƒ, greater than, less than, or equal to
that of glider B, PBƒ. Draw a momentum vector diagram to support your answer.
Di
A
b. Two gliders, C and D, collide on a level, frictionless track, as shown below. The mass of glider
C is less than that of glider D (i.e., mc < mp). The initial speed of glider C is greater than that
of glider D (i.e., vci > VDi). After the collision, Gliders C and D move in opposite directions
with the same final speed (i.e., vcf = UDf).
Before collision
D
After collision
Vcf
B
After collision
7Df
D
Is the magnitude of the initial momentum of glider C, PC, greater than, less than, or equal to
that of glider D, P Dil? Draw a momentum vector diagram to support your answer.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff3fb2678-363b-4b49-9fdf-72f65eb687c8%2F5bbd46d4-c667-40f5-b5ca-4112b0a1b2f0%2F0o8ezxk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:5. Predictions Based on Momentum Vector Diagrams
a. Two gliders, A and B, collide on a level, frictionless track, as shown below. The mass of glider
A is less than that of glider B (i.e., mд < m³). The final speed of glider A is greater than that of
glider B (i.e., VAƒ > VBƒ).
V
Ai
A
Before collision
VCi
17B₁1=0
Bi
C
B
Af
Is the magnitude of the final momentum of glider A, PAƒ, greater than, less than, or equal to
that of glider B, PBƒ. Draw a momentum vector diagram to support your answer.
Di
A
b. Two gliders, C and D, collide on a level, frictionless track, as shown below. The mass of glider
C is less than that of glider D (i.e., mc < mp). The initial speed of glider C is greater than that
of glider D (i.e., vci > VDi). After the collision, Gliders C and D move in opposite directions
with the same final speed (i.e., vcf = UDf).
Before collision
D
After collision
Vcf
B
After collision
7Df
D
Is the magnitude of the initial momentum of glider C, PC, greater than, less than, or equal to
that of glider D, P Dil? Draw a momentum vector diagram to support your answer.
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