Vectors A → and B → lie in an xy plane. A → has magnitude 8.00 and angle 130°; B → has components B x = −7.72 and B y = −9.20. (a) What is 5 A → · B → ? What is 4 A → × 3 B → in (b) unit-vector notation and (c) magnitude-angle notation with spherical coordinates (see Fig. 3-34)? (d) What is the angle between the directions of A → and 4 A → × 3 B → ? ( Hint: Think a bit before you resort to a calculation. ) What is A → + 3.00 k ^ in (e) unit-vector notation and (f) magnitude-angle notation with spherical coordinates? Figure 3-34 Problem 45.
Vectors A → and B → lie in an xy plane. A → has magnitude 8.00 and angle 130°; B → has components B x = −7.72 and B y = −9.20. (a) What is 5 A → · B → ? What is 4 A → × 3 B → in (b) unit-vector notation and (c) magnitude-angle notation with spherical coordinates (see Fig. 3-34)? (d) What is the angle between the directions of A → and 4 A → × 3 B → ? ( Hint: Think a bit before you resort to a calculation. ) What is A → + 3.00 k ^ in (e) unit-vector notation and (f) magnitude-angle notation with spherical coordinates? Figure 3-34 Problem 45.
Vectors
A
→
and
B
→
lie in an xy plane.
A
→
has magnitude 8.00 and angle 130°;
B
→
has components Bx = −7.72 and By = −9.20. (a) What is 5
A
→
·
B
→
? What is 4
A
→
× 3
B
→
in (b) unit-vector notation and (c) magnitude-angle notation with spherical coordinates (see Fig. 3-34)? (d) What is the angle between the directions of
A
→
and 4
A
→
× 3
B
→
? (Hint: Think a bit before you resort to a calculation. ) What is
A
→
+ 3.00
k
^
in (e) unit-vector notation and (f) magnitude-angle notation with spherical coordinates?
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Checkpoint 4
The figure shows four orientations of an electric di-
pole in an external electric field. Rank the orienta-
tions according to (a) the magnitude of the torque
on the dipole and (b) the potential energy of the di-
pole, greatest first.
(1)
(2)
E
(4)
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