You can, instead, find the log of the ratio. Thus: log(A) - log(B) = log(A/B)
the value of log (log4(log4x)))=1 then x=
log (21.4 ) = 1.4 log(2) = 1.4 (0.30103) = 0.42144 (rounded)
1.268293446
the value of log0 is -infinity which is minus of infinity
thousand
The value of log o is penis
determination of log table value
log(21.4) = 1.330413773
log(22) = 1.342422681
027 = 27 is 27, as a decimal.
log(0.99) = -0.004364805
The numeric value of log(x) is the power you have to raise 10 to in order to get 'x'.
It is .04 that is larger than .027
log AB^2 log A+log B+log2
You can, instead, find the log of the ratio. Thus: log(A) - log(B) = log(A/B)
the value of log (log4(log4x)))=1 then x=