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[2x]-2[x]=lambda where [.] represents gr...

`[2x]-2[x]=lambda` where [.] represents greatest integer function and {.} represents fractional part of a real number then

A

`lambda=1 AA x in R`

B

`lambda=0 AA x in R`

C

`lambda =1 AA {x} ge (1)/(2) `

D

`lambda =0 AA {x} lt (1)/(2)`

Text Solution

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The correct Answer is:
C, D

`[2x]=[x]+[x+(1)/(2)]`
` :. [2x]-2[x]=[x+(1)/(2)]-[x]`
`=[[x]+{x}+(1)/(2)]-[x]`
` =[{x}+(1)/(2)]`
If ` {x} ge (1)/(2) implies {x} +(1)/(2)ge 1implies [{x} +(1)/(2)]=1 implieslambda =1`
If `{x} lt (1)/(2) implies {x} +(1)/(2)lt 1implies [{x} +(1)/(2)]=0 implieslambda =0`
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