Difference between revisions of "What is Log"
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ex6: <math>log_4 x + log_4 (x + 4) - log_4 (x^4 + 8x^3 + 16x^2) =2 </math> find x. | ex6: <math>log_4 x + log_4 (x + 4) - log_4 (x^4 + 8x^3 + 16x^2) =2 </math> find x. | ||
<math>log_4 x + log_4 (x + 4) - log_4 (x^4 + 8x^3 + 16x^2) = 2</math> | |||
<math>log_4 x + log_4 (x + 4) | <math>log_4 x + log_4 (x + 4) = 2 + log_4 (x^4 + 8x^3 + 16x^2)</math> | ||
# | #Second law <math>log_n A + log_n B = log_(AB)</math> | ||
<math> log_4 | <math> log_4 x + log_4 (x + 4) = log_4 (x^2 + 4x)</math> | ||
<math> log_4 (x^2 + 4x) - log_4 (x^4 + 8x^3 + 16x^2) = 2 </math> | |||
#Thirde law <math>log_A - log_B = log_({A \over B})</math> | |||
x= 2 | <math> log_4 (x^2 + 4x) - log_4 (x^4 + 8x^3 + 16x^2) = log_4 ({ x^2 + 4x \over x^4 + 8x^3 + 16x^2}) = 2</math> | ||
</noinclude> | </noinclude> |
Revision as of 13:18, 3 October 2021
- First law If than
- Second law
- Thirde law
- law If "" than ""
- law if
- law "" than "x = a"
examples
example 1
ex1: find n.
n=1
example 2
ex2: find x.
x = 16
example 3
ex3: find a.
a = 5
example 4
ex4: find a.
a = 5
example 5
ex5: find x.
- Second law .
x= 2 and -4
example 6
ex6: find x.
- Second law
- Thirde law