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Byju's Answer
Standard XII
Mathematics
Modulus of a Complex Number
If the equati...
Question
If the equation,
x
2
+
b
x
+
45
=
0
(
b
∈
R
)
has conjugate complex roots and they satisfy
|
z
+
1
|
=
2
√
10
, then:
A
b
2
+
b
=
12
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B
b
2
−
b
=
42
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C
b
2
−
b
=
30
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D
b
2
+
b
=
72
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Solution
The correct option is
C
b
2
−
b
=
30
Given
x
2
+
b
x
+
45
=
0
,
b
∈
R
Let roots of the equation be
p
±
i
q
Then, sum of roots
=
2
p
=
−
b
Product of roots
=
p
2
+
q
2
=
45
As
p
±
i
q
lie on
|
z
+
1
|
=
2
√
10
, we get
(
p
+
1
)
2
+
q
2
=
40
⇒
p
2
+
q
2
+
2
p
+
1
=
40
⇒
45
−
b
+
1
=
40
⇒
b
=
6
⇒
b
2
−
b
=
30.
Suggest Corrections
6
Similar questions
Q.
Assertion :If
a
2
+
b
2
+
c
2
<
0
, then if roots of the equation
a
x
2
+
b
x
+
c
=
0
are imaginary, then they are not complex conjugates. Reason: Equation
a
x
2
+
b
x
+
c
=
0
has complex conjugate roots when a, b, c are real.
Q.
For the equation
a
x
2
+
b
x
+
c
=
0
,
a
,
b
and
c
are real,
Statement 1: If the equation
a
x
2
+
b
x
+
c
=
0
,
0
<
a
<
b
<
c
, has non-real complex roots
z
1
and
z
2
, then
|
z
1
|
>
1
,
|
z
2
|
>
1
.
Statement 2: Complex roots always occur in conjugate pairs.
Q.
The equation
z
10
+
(
13
z
−
1
)
10
=
0
has
5
pairs of complex roots
a
1
,
b
1
,
a
2
,
b
2
,
a
3
,
b
3
,
a
4
,
b
4
,
a
5
,
b
5
. If each pair
a
i
,
b
i
are complex conjugates, then
Q.
Assertion :If the equation
x
2
+
b
x
+
c
a
=
0
and
x
2
+
c
x
+
a
b
=
0
have a common root, then their other root will satisfy the equation
x
2
+
a
x
+
b
c
=
0
Reason: If the equation
x
2
=
b
x
+
c
a
=
0
and
x
2
+
c
x
+
a
b
=
0
have a common root, then
a
+
b
+
c
=
0
Q.
If 2 is a root of the equation
x
2
+
b
x
+
12
=
0
and the equation
x
2
+
b
x
+
q
=
0
has equal roots, then q=
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