document.write( "Question 1198146: Solve. Show your work.\r
\n" );
document.write( "\n" );
document.write( "(16) “b” varies inversely as the square root of “c”. If b = 1 when c = 16, find b when c = 6.\r
\n" );
document.write( "\n" );
document.write( " \r
\n" );
document.write( "\n" );
document.write( " \r
\n" );
document.write( "\n" );
document.write( " \r
\n" );
document.write( "\n" );
document.write( " \r
\n" );
document.write( "\n" );
document.write( "(17) n is inversely proportional to t+3. If t = 1 when n = 3, find t when n = 4.
\n" );
document.write( "Show work.\r
\n" );
document.write( "\n" );
document.write( " \r
\n" );
document.write( "\n" );
document.write( " \r
\n" );
document.write( "\n" );
document.write( " \r
\n" );
document.write( "\n" );
document.write( " \r
\n" );
document.write( "\n" );
document.write( "(18) When a seesaw is perfectly balanced, each person’s distance, “d,” from the fulcrum varies inversely as his weight, “w.” If a 120-pound person sits 5 feet from the seesaw fulcrum, where must a 150-pound person sit to balance the seesaw? Show work.\r
\n" );
document.write( "\n" );
document.write( " \n" );
document.write( "
Algebra.Com's Answer #831675 by josgarithmetic(39620)![]() ![]() ![]() You can put this solution on YOUR website! Direct variation and inverse variation descriptions are extremely formal in a very consistent way and are easy to translate into their equations.\r \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "#16: \n" ); document.write( " \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "#17: \n" ); document.write( " \n" ); document.write( " \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "#18: \n" ); document.write( " \n" ); document.write( " \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "What to do with the question on each is very simple algebra. \n" ); document.write( " |