1
WB JEE 2019
MCQ (Single Correct Answer)
+2
-0.5
Change Language
A particle starts at the origin and moves 1 unit horizontally to the right and reaches P1, then it moves $${1 \over 2}$$ unit vertically up and reaches P2, then it moves $${1 \over 4}$$ unit horizontally to right and reaches P3, then it moves $${1 \over 8}$$ unit vertically down and reaches P4, then it moves $${1 \over 16}$$ unit horizontally to right and reaches P5 and so on. Let Pn = (xn, yn) and $$\mathop {\lim }\limits_{n \to \infty } {x_n} = \alpha $$ and $$\mathop {\lim }\limits_{n \to \infty } {y_n} = \beta $$. Then, ($$\alpha$$, $$\beta$$) is
A
(2, 3)
B
$$\left( {{4 \over 3},{2 \over 5}} \right)$$
C
$$\left( {{2 \over 5},1} \right)$$
D
$$\left( {{4 \over 3},3} \right)$$
2
WB JEE 2019
MCQ (Single Correct Answer)
+2
-0.5
Change Language
For any non-zero complex number z, the minimum value of | z | + | z $$-$$ 1 | is
A
1
B
$${{1 \over 2}}$$
C
0
D
$${{3 \over 2}}$$
3
WB JEE 2019
MCQ (Single Correct Answer)
+2
-0.5
Change Language
The system of equations

$$\eqalign{ & \lambda x + y + 3z = 0 \cr & 2x + \mu y - z = 0 \cr & 5x + 7y + z = 0 \cr} $$

has infinitely many solutions in R. Then,
A
$$\lambda $$ = 2, $$\mu $$ = 3
B
$$\lambda $$ = 1, $$\mu $$ = 2
C
$$\lambda $$ = 1, $$\mu $$ = 3
D
$$\lambda $$ = 3, $$\mu $$ = 1
4
WB JEE 2019
MCQ (Single Correct Answer)
+2
-0.5
Change Language
Let f : X $$ \to $$ Y and A, B are non-void subsets of Y, then (where the symbols have their usual interpretation)
A
$${f^{ - 1}}(A) - {f^{ - 1}}(B) \supset {f^{ - 1}}(A - B)$$ but the opposite does not hold.
B
$${f^{ - 1}}(A) - {f^{ - 1}}(B) \subset {f^{ - 1}}(A - B)$$ but the opposite does not hold.
C
$${f^{ - 1}}(A - B) = {f^{ - 1}}(A) - {f^{ - 1}}(B)$$
D
$${f^{ - 1}}(A - B) = {f^{ - 1}}(A) \cup {f^{ - 1}}(B)$$
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