Find log (2/5)
-0.3979
log3 (2) = to the nearest ten-thousandth
~ 0.6309
True or False.
log (x/y3) = log x - 3 log y
True
Solve log(3x - 2) = 2
x = {34}
log6 (2c) + log6 (8) = log6 (80)
c = {5}
Find log (10)
0.2104
log7 (4) = to the nearest ten-thousandth
~ 0.7124
log (ab) = log (a + b)
False
Solve log2 (x + 4) = log2 (5x - 8)
x = {3}
log2 (x + 4) - log2 (x - 3) = 3
x = {4}
Find log (4)
0.6021
The pH of a solution is given by -log[H+] where H+ is the concentration of hydrogen ions. Find the pH if
[H+] = 3.33 x 104 to the nearest tenth.
pH = -4.5
Solve for x algebraically. log x=-3
x = {0.001}
log3 (2x + 4) = log3 (x -10)
x = No Solution
log5 (x) + log5 (3x-5) = log5 (2)
x = {2}
Find log (50)
1.6990
The pH of a solution is given by 6log[H+] where H+ is the concentration of hydrogen ions. Find the pH if
[H+] = 1.0 x 10-5 to the nearest tenth.
pH = -30
Solve for x algebraically. log2 x -7=0
x = {128}
Solve log2 (x + 6) < log2 (17)
{x| x < -6}
Solve and round to the nearest ten-thousandths.
9x-2 > 38
{x| x > 3.6555}
Find log (80)
1.9031
The yield v (in millions of cubic feet per acre) for a forest at age t years is given by v = 6.7 + log2 (t/0.25). Find amount of acreage after 8 years.
v = 13.7 millions of cubic feet per acre
Solve for x algebraically. Then, approximate your answer to three decimal places. 3log4 (5x) =10
x ~ 20.319
Solve log3 (x-3)/4 + 5 > log3 (x + 12)
{x| x < 17}
Solve and round to the nearest ten-thousandths.
2n+1 <52n-1
{x| x < 0.9117}