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Byju's Answer
Standard XII
Physics
Vectors and Its Types
Vectors A⃗,...
Question
Vectors
→
A
,
→
B
and
→
C
are such that
→
A
⋅
→
B
=
0
. Then the vector parallel to
→
A
is
A
→
B
a
n
d
→
C
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B
→
A
×
→
B
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C
→
B
+
→
C
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D
→
B
×
→
C
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Solution
The correct option is
D
→
B
×
→
C
Since the dot product
→
A
.
→
B
=
0
therefore
→
A
and
→
B
which be perpendicular to each other.
And also the vector given by
→
B
×
→
C
will be perpendicular to the
→
B
, so it will be parallel to
→
A
Suggest Corrections
2
Similar questions
Q.
If
→
A
,
→
B
and
→
C
are vectors such that
|
→
B
|
=
|
→
C
|
, prove that
[
(
→
A
+
→
B
)
×
(
→
A
+
→
C
)
]
×
(
→
B
×
→
C
)
.
(
→
B
+
→
C
)
=
0
.
Q.
If
→
a
and
→
b
are perpendicular unit vectors and vector
→
c
is such that
→
c
=
→
a
+
→
b
, then
(
→
a
×
→
b
)
.
(
→
b
×
→
c
)
+
(
→
b
×
→
c
)
.
(
→
c
×
→
a
)
+
(
→
c
×
→
a
)
.
(
→
a
×
→
b
)
is
Q.
Vectors
→
a
,
→
b
and
→
c
are such that
→
a
+
→
b
+
→
c
=
→
0
and
|
→
a
|
=
3
,
|
→
b
=
5
and
|
→
c
|
=
7
. Find the angle between
→
a
and
→
b
.
Q.
Let
→
a
,
→
b
,
→
c
be three vectors such that
→
a
≠
0
and
→
a
×
→
b
=
2
→
a
×
→
c
,
|
→
a
|
=
|
→
c
|
=
1
,
|
→
b
|
=
4
and
|
→
b
×
→
c
|
=
√
15
. If
→
b
−
2
→
c
=
λ
→
a
, then
λ
is equal to
Q.
If
→
a
,
→
b
,
and
→
c
are unit vectors such that
→
a
+
2
→
b
+
2
→
c
=
→
0
,
then
|
→
a
×
→
c
|
is equal to :
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