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Number of integral values of `lambda` for which `lim_(xrarr1) sec^(-1)((lambda^(2))/(log_(e)x)-(lambda^(2))/(x-1))` does not exist is

A

1

B

2

C

3

D

4

Text Solution

Verified by Experts

The correct Answer is:
C

`L=underset(xrarr1)(lim)sec^(-1)((lambda^(2))/(log_(e)x)-(lambda^(2))/(x-1))`
let `x-1=t`
`therefore" "L=underset(trarr0)(lim)sec^(-1)((lambda^(2))/(ln(t+1))-(lambda^(2))/(t))`
`" "=underset(trarr0)(lim)sec^(-1)(lambda^(2)((t-ln(t+1))/(t ln(t+1))))`
`" "=underset(trarr0)(lim)sec^(-1)(lambda^(2)((t-(t-(t^(2))/(2)+...))/(t ln (t+1))))`
`" "=underset(trarr0)(lim)sec^(-1)(lambda^(2)((((t^(2))/(2)-(t^(3))/(3)...))/(t ln(t+1))))`
`" "=underset(trarr0)(lim)sec^(-1)(lambda^(2)((((t^(2))/(2)-(t^(3))/(3)...))/(ln(t+1))))`
`" "=underset(trarr0)(lim)sec^(-1)((lambda^(2))/(2))"exists"``rArr(lambda^(2))/(2)ge1rArr |lamda|gesqrt2`
Thus, L does not exist for `lambda=0, pm1.`
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