6. Q6a
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Similar Question 1
<p>Simplify the expression.</p><p><code class='latex inline'> \displaystyle \log(\log 10^{10 000}) </code></p>
Similar Question 2
<p> Rewrite each expression using the power law.</p><p><code class='latex inline'>\displaystyle \log_69^3 </code></p>
Similar Question 3
<p> Rewrite each expression using the power law.</p><p><code class='latex inline'>\displaystyle \log_6\sqrt{22} </code></p>
Similar Questions
Learning Path
L1 Quick Intro to Factoring Trinomial with Leading a
L2 Introduction to Factoring ax^2+bx+c
L3 Factoring ax^2+bx+c, ex1
Now You Try
<p>Express each of the following as a logarithm of a product of quotient.</p><p><code class='latex inline'> \displaystyle \log_{25}5^3 </code></p>
<p>Simplify the expression.</p><p><code class='latex inline'> \displaystyle \log \frac{1}{\sqrt{1000}} </code></p>
<p> Rewrite each expression using the power law.</p><p><code class='latex inline'>\displaystyle \frac{1}{5}\log_818 </code></p>
<p> Rewrite each expression using the power law.</p><p><code class='latex inline'>\displaystyle \log_9(\frac{1}{\sqrt{13}}) </code></p>
<p> Rewrite each expression using the power law.</p><p><code class='latex inline'>\displaystyle \log_2(7^{-5}) </code></p>
<p>Simplify the expression.</p><p><code class='latex inline'> \displaystyle \log_{4}16^{100} </code></p>
<p> Rewrite each expression using the power law.</p><p><code class='latex inline'>\displaystyle \log_69^3 </code></p>
<p>Simplify the expression.</p><p><code class='latex inline'> \displaystyle \log(\log 10^{10 000}) </code></p>
<p> Rewrite each expression using the power law.</p><p><code class='latex inline'>\displaystyle \log_6\sqrt{22} </code></p>
<p> Rewrite each expression using the power law.</p><p><code class='latex inline'>\displaystyle \frac{1}{2}\log_45 </code></p>
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