document.write( "Question 236054: Express as a single logarithm.
\n" );
document.write( "1) 1/2log(base m)4 + log(base m)(1/5) - 2log(base m)√6
\n" );
document.write( "2) logx + 3logy - 1/2[logz]\r
\n" );
document.write( "\n" );
document.write( "Find the exact value using properties of exponents and logarithms. No decimal answers.
\n" );
document.write( "3) log(base 2)40 - log(base 2)(15/4) + log(base 2)12 \n" );
document.write( "
Algebra.Com's Answer #173813 by nerdybill(7384)![]() ![]() You can put this solution on YOUR website! Express as a single logarithm. \n" ); document.write( "1) 1/2log(base m)4 + log(base m)(1/5) - 2log(base m)√6 \n" ); document.write( "log(base m)4^(1/2) + log(base m)(1/5) - log(base m)√6^2 \n" ); document.write( "log(base m)2 + log(base m)(1/5) - log(base m)6 \n" ); document.write( "log(base m)2(1/5) - log(base m)6 \n" ); document.write( "log(base m)(2/5) - log(base m)6 \n" ); document.write( "log(base m)(2/5)/6 \n" ); document.write( "log(base m)(2/6*5) \n" ); document.write( "log(base m)(1/3*5) \n" ); document.write( "log(base m)(1/15) \n" ); document.write( ". \n" ); document.write( "2) logx + 3logy - 1/2[logz] \n" ); document.write( "logx + logy^3 - logz^1/2 \n" ); document.write( "log (xy^3) - logz^1/2 \n" ); document.write( "log (xy^3/z^1/2) \n" ); document.write( "log (xy^3/√z) \n" ); document.write( "log (xy^3√z/z)\r \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "Find the exact value using properties of exponents and logarithms. No decimal answers. \n" ); document.write( "3) log(base 2)40 - log(base 2)(15/4) + log(base 2)12 \n" ); document.write( "log(base 2)40/(15/4) + log(base 2)12 \n" ); document.write( "log(base 2)(160/15) + log(base 2)12 \n" ); document.write( "log(base 2)(32/3) + log(base 2)12 \n" ); document.write( "log(base 2)(32/3)*12 \n" ); document.write( "log(base 2)32*4 \n" ); document.write( "log(base 2)128 \n" ); document.write( "log(base 2)2^7 \n" ); document.write( "7 \n" ); document.write( " \n" ); document.write( " |