QUESTION IMAGE
Question
use lhôpitals rule to find the following limit.
lim (ln 3x - ln (x + 7))
x→∞
lim (ln 3x - ln (x + 7)) = (type an exact answer.)
x→∞
Step1: Use logarithmic property
Use $\ln a-\ln b=\ln\frac{a}{b}$. So, $\lim_{x
ightarrow\infty}(\ln3x - \ln(x + 7))=\lim_{x
ightarrow\infty}\ln\frac{3x}{x + 7}$.
Step2: Simplify the fraction inside the log
Divide numerator and denominator by $x$: $\frac{3x}{x + 7}=\frac{3}{1+\frac{7}{x}}$.
Step3: Find the limit of the fraction
As $x
ightarrow\infty$, $\lim_{x
ightarrow\infty}\frac{7}{x}=0$. Then $\lim_{x
ightarrow\infty}\frac{3}{1+\frac{7}{x}}=\frac{3}{1 + 0}=3$.
Step4: Find the limit of the log - function
Since $y = \ln u$ is continuous at $u = 3$, $\lim_{x
ightarrow\infty}\ln\frac{3x}{x + 7}=\ln(\lim_{x
ightarrow\infty}\frac{3x}{x + 7})$.
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