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Let `a >1` be a real number. Then the number of roots equation `a^(2(log)_2x)=15+4x^((log)_2a)` is 2 (b) infinite (c) 0 (d) 1

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`a^(2log_2^x)=15+4x^(log_2^a)`
`a>1`
`(a^(log_2^x))^2=15+4x^(log_2^a)`
`(x^(log_2^a))^2=15+4x^(log_2^a)`
`x>0`
Let `x^(log_2^a)=t`
`log_2^a` is positive
`t^2=15+4t`
...
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