Multiplicative Vector Lab These problems share the same set of vectors (and the same as the previous exercises). Remember that while there are two angles between any two vectors placed tail to tail (their sum is 360°), the smaller of the two angles is what's defined as e in the scalar formulas for the dot and cross products. These questions are designed to help you identify the useful information about the vectors before actually multiplying them. Â= 1.200 m (X) + 3.90 m (ŷ) B = 4.000 m(-x) + 5.60 m ŷ) Ĉ = 1.200 m (?) + 140.00°(ê) Questions 1-3 share the same set of answers: A) 1.200 m B) 0.919753m C) 3.90 m D) 0.771345 m E) 5.60 m F) 4.08 m G) 4.000 m H) 6.98 I01m 1) 6.8 5 186 m 1) Calculate A (the total magnitude of vector Â)? 2) Calculate B. 3) Calculate C.

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Multiplicative Vector Lab
These problems share the same set of vectors (and the same as the previous exercises). Remember
that while there are two angles between any two vectors placed tail to tail (their sum is 360°), the
smaller of the two angles is what's defined as e in the scalar formulas for the dot and cross products.
These questions are designed to help you identify the useful information about the vectors before
actually multiplying them.
A = 1.200 m (8) + 3.90 m (ŷ)
B = 4.000 m (-8) + 5.60 m (ŷ)
C= 1.200 m (f) + 140.00° (Ô)
Questions 1-3 share the same set of answers:
A) 1.200 m
B) 0.919753 m
C) 3.90 m
D) 0.771345 m
E) 5.60 m
F) 4.08 m
G) 4.000 m
H) 6.98 I01 m
I) 6.88 186 m
1) Calculate A (the total magnitude of vector Ã)?
2) Calculate B.
3) Calculate C.
Questions 4-6 share the same set of answers:
A) 140.00
B) 14.462
Transcribed Image Text:Multiplicative Vector Lab These problems share the same set of vectors (and the same as the previous exercises). Remember that while there are two angles between any two vectors placed tail to tail (their sum is 360°), the smaller of the two angles is what's defined as e in the scalar formulas for the dot and cross products. These questions are designed to help you identify the useful information about the vectors before actually multiplying them. A = 1.200 m (8) + 3.90 m (ŷ) B = 4.000 m (-8) + 5.60 m (ŷ) C= 1.200 m (f) + 140.00° (Ô) Questions 1-3 share the same set of answers: A) 1.200 m B) 0.919753 m C) 3.90 m D) 0.771345 m E) 5.60 m F) 4.08 m G) 4.000 m H) 6.98 I01 m I) 6.88 186 m 1) Calculate A (the total magnitude of vector Ã)? 2) Calculate B. 3) Calculate C. Questions 4-6 share the same set of answers: A) 140.00 B) 14.462
5) Compute the magnitude of the cross product AT|-
6) Compute the magnitude of the cross product |C-B |.
Questions 7-10 share the same set of answers:
A) +â
B) -
C) +ỹ
D) -9
E) +2
F) -2
G) the correct answer is not on this list
7) What is the vector direction appropriate to the cross product A-B?
8) What is the vector direction appropriate to the cross product À-Ĉ?
9) What is the vector direction appropriate to the cross product -B?
10) What is the vector direction appropriate to the cross product B - Ã?
Transcribed Image Text:5) Compute the magnitude of the cross product AT|- 6) Compute the magnitude of the cross product |C-B |. Questions 7-10 share the same set of answers: A) +â B) - C) +ỹ D) -9 E) +2 F) -2 G) the correct answer is not on this list 7) What is the vector direction appropriate to the cross product A-B? 8) What is the vector direction appropriate to the cross product À-Ĉ? 9) What is the vector direction appropriate to the cross product -B? 10) What is the vector direction appropriate to the cross product B - Ã?
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