$\text{Assertion (A):}$ Variance of $4x_1, 4x_2, \ldots, 4x_n$ is $16$ times the variance of $x_1, x_2, \ldots, x_n$. $\text{Reason (R):}$ If $y = ax + b$,then variance of $y$ is $a(\text{variance of } x) + b$. The correct option among the following is

  • A
    $(A)$ is true,$(R)$ is true and $(R)$ is the correct explanation for $(A)$.
  • B
    $(A)$ is true,$(R)$ is true but $(R)$ is not the correct explanation for $(A)$.
  • C
    $(A)$ is true but $(R)$ is false.
  • D
    $(A)$ is false but $(R)$ is true.

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Similar Questions

Find the variance and standard deviation for the following data:
$x_i$ $4$ $8$ $11$ $17$ $20$ $24$ $32$
$f_i$ $3$ $5$ $9$ $5$ $4$ $3$ $1$

$A$ data consists of $n$ observations $x_1, x_2, ......, x_n$. If $\sum_{i=1}^n (x_i + 1)^2 = 9n$ and $\sum_{i=1}^n (x_i - 1)^2 = 5n$,then the standard deviation of this data is

The variance of the following continuous frequency distribution is
Class Interval$0-10$$10-20$$20-30$$30-40$
Frequency$2$$3$$4$$1$

The variance of $\alpha$,$\beta$,and $\gamma$ is $9$. Then,the variance of $5\alpha$,$5\beta$,and $5\gamma$ is:

The coefficient of variation of $9, 3, 11, 5, 7$ is

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