ln (11)
2.398
log (3)
0.48
1.3863
ln (5.5)
1.705
ln (9)
2.2
log9 (4)
0.631
log5 (3)
0.683
log7 (2)
0.36
log5 (0.31)
-0.73
log3 (32.1)
3.1575
log13.5 (3)
0.42
log10 (50)
1.699
log2 (0.40)
-1.322
log1.75 (0.5)
-1.24
log100 (25.75)
0.71
log (1.75)
0.243
log7.5 (10)
1.143
log0.5 (6)
-2.585
log100 (6)
0.39
log 9.01 (4)
0.631
Write logarithmic expression as a single logarithm.
A) log4 64 - log4 16
= log4(64/16) (logbM/N = logbM – logbN Quotient Property)
= log4 4 Simplify
= 1 Simplify
Write logarithmic expression as a single logarithm.
B) 6 log5 x + log5 y
= log5 x6 + log5 y (logbMn = nlogbM Power Property)
= log5 (x6y) (logbMN = logbM + logbN Product Property)
Expand each logarithm.
A) log7 (t/u)
log7 t - log7 u
(logbM/N = logbM – logbN Quotient Property)
Expand logarithm.
B) log(4p3)
= log 4 + log p3 (logbMN = logbM + logbN Product Property)
= log 4 + 3 log p (logbMn = nlogbM Power Property)
Use the Change of Base Formula to evaluate log612.
log612=(log 12) / (log 6)
≈1.387