document.write( "Question 1141755: Ina Crespo rowed 13.5 miles down the Habashabee River in 1.5 ​hours, but the return trip took her 4.5 hours. Find the rate Ina rows in still water and the rate of the current. Let x represent the rate Ina can row in still water and let y represent the rate of the current.\r
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Algebra.Com's Answer #762378 by ikleyn(52790)\"\" \"About 
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document.write( "Let x represent the rate Ina can row in still water (in miles per hour, mph).\r\n" );
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document.write( "Let y represent the rate of the current.\r\n" );
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document.write( "The effective speed going downstream is \r\n" );
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document.write( "\"Distance%2FTime\" = \"13.5%2F1.5\" = 9 mph.\r\n" );
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document.write( "The effective speed going downstream is the SUM of the Ina' speed in still water and the rate of the current. \r\n" );
document.write( "It gives you your first equation\r\n" );
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document.write( "x + y = 9.    (1)\r\n" );
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document.write( "The effective speed going upstream is \r\n" );
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document.write( "\"Distance%2FTime\" = \"13.5%2F4.5\" = 3 mph.\r\n" );
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document.write( "The effective speed going upstream is the DIFFERENCE of the Ina' speed in still water and the rate of the current. It gives you your second equation\r\n" );
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document.write( "x - y = 3.    (2)\r\n" );
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document.write( "Thus you have this system of two equations in 2 unknowns\r\n" );
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document.write( "x + y = 9,    (1)   and\r\n" );
document.write( "x - y = 3.    (2)\r\n" );
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document.write( "Add the two equations. You will get\r\n" );
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document.write( "2x = 9 + 3 = 12  ====>  u = \"12%2F2\" = 6 mph.\r\n" );
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document.write( "So, you just found the Ina' speed in still water.  It is  6 miles per hour.\r\n" );
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document.write( "Then from the equation (1) you get  y = 9 - 6 = 3 mph is the current rate.\r\n" );
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document.write( "Answer.  The Ina' speed in still water is  6 mph.\r\n" );
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document.write( "         The current rate is 3 mph.\r\n" );
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\n" ); document.write( "\n" ); document.write( "It is a typical and standard Upstream and Downstream round trip word problem.\r
\n" ); document.write( "\n" ); document.write( "You can find many similar fully solved problems on upstream and downstream round trips with detailed solutions in lessons \r
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\n" ); document.write( "\n" ); document.write( "    - More problems on upstream and downstream round trips \r
\n" ); document.write( "\n" ); document.write( "    - Wind and Current problems solvable by quadratic equations \r
\n" ); document.write( "\n" ); document.write( "    - Unpowered raft floating downstream along a river\r
\n" ); document.write( "\n" ); document.write( "    - Selected problems from the archive on the boat floating Upstream and Downstream \r
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\n" ); document.write( "\n" ); document.write( "Read them attentively and learn how to solve this type of problems once and for all.\r
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\n" ); document.write( "\n" ); document.write( "Also,  you have this free of charge online textbook in ALGEBRA-I in this site\r
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\n" ); document.write( "\n" ); document.write( "The referred lessons are the part of this textbook under the section \"Word problems\",  the topic \"Travel and Distance problems\".\r
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\n" ); document.write( "\n" ); document.write( "Save the link to this online textbook together with its description\r
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\n" ); document.write( "\n" ); document.write( "Free of charge online textbook in ALGEBRA-I
\n" ); document.write( "https://www.algebra.com/algebra/homework/quadratic/lessons/ALGEBRA-I-YOUR-ONLINE-TEXTBOOK.lesson\r
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\n" ); document.write( "\n" ); document.write( "to your archive and use it when it is needed.\r
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