document.write( "Question 1207000: Use the ideal gas law to find T when P = 6 atm, V = 3 L, n = 5 mol, and R = 0.0821. Round answer to 1 d.p. \n" ); document.write( "
| Algebra.Com's Answer #844789 by math_tutor2020(3817)      You can put this solution on YOUR website! \n" ); document.write( "Ideal Gas Law formula \n" ); document.write( "PV = nRT\r \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "the variables are \n" ); document.write( "P = pressure \n" ); document.write( "V = volume \n" ); document.write( "n = number of moles \n" ); document.write( "R = ideal gas constant \n" ); document.write( "T = absolute temperature in Kelvin\r \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "In this case \n" ); document.write( "P = 6 atmospheres \n" ); document.write( "V = 3 liters \n" ); document.write( "n = 5 moles \n" ); document.write( "R = 0.0821 (L*atm)/(K*mol) \n" ); document.write( "T = unknown Kelvin temperature\r \n" ); document.write( " \n" ); document.write( "\n" ); document.write( "Let's solve for T. \n" ); document.write( "PV = nRT \n" ); document.write( "6*3 = 5*0.0821*T \n" ); document.write( "T = (6*3)/(5*0.0821) \n" ); document.write( "T = 43.848965 \n" ); document.write( "T = 43.8 Kelvin is the approximate temperature. \n" ); document.write( " \n" ); document.write( " |