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render = function render(){var _vm=this,_c=_vm._self._c;return _c('div',[_c('h3',{ref:\"ia\"},[_vm._v(\"\\n Heat & Work: Modes of Energy Transfer\\n \")]),_c('p',[_vm._v(\"\\n A thermodynamic system can exchange energy with its\\n surroundings in two ways: either through transfer of heat or by doing work on its\\n surroundings. In other words,\\n work and heat are the forms of energy that can be transferred across a system's boundary.\\n \")]),_vm._m(0),_c('br'),_c('h3',{ref:\"first\"},[_vm._v(\"\\n First Law of Thermodynamics\\n \")]),_vm._m(1),_c('h3',{ref:\"pg\"},[_vm._v(\"\\n MagicGraph: Ideal Gas in Cylinder-Piston System\\n \")]),_vm._m(2),_vm._m(3),_c('br'),_c('br'),_c('v-responsive',[_c('v-layout',{attrs:{\"justify-center\":\"\"}},[_c('div',{staticClass:\"edliy-box-about\",attrs:{\"id\":\"jxgbox1\"}})])],1)],1)\n}\nvar staticRenderFns = [function (){var _vm=this,_c=_vm._self._c;return _c('ul',{staticClass:\"a\"},[_c('li',[_c('h5',[_vm._v(\" Heat\")]),_vm._v(\"\\n Heat is defined as the form of energy that is transferred between two systems\\n due to a difference in their temperatures. \\n There cannot be any heat transfer between two systems that are at the same temperature.\\n Heat is measured in units of Joules in the SI system (or calories in the FPS system).\\n \"),_c('br'),_c('br'),_vm._v(\"\\n In thermodynamics, we use a\\n sign convention to indicate whether heat is entering the system or\\n leaving the system.\"),_c('br'),_c('ul',[_c('li',[_vm._v(\"\\n When the heat is transferred from the surroundings to the system,\\n it is considered positive. \"),_c('br')]),_c('li',[_vm._v(\"\\n When the heat is transferred\\n from the system to the surroundings, it is considered negative.\\n \")])])]),_c('li',[_c('h5',[_vm._v(\" Work\")]),_vm._v(\"\\n Work is the energy transfer that occurs through a mechanical interaction\\n between a system and its surroundings.\\n More specifically, work is the energy transfer associated with the displacement (expansion/contraction) of the system boundary under the action of a force (or equivalently, change in the system's volume under the action of pressure).\\n \"),_c('br'),_c('br'),_vm._v(\"\\n In thermodynamics, we use a\\n sign convention to indicate whether the work is done by the system or on the system. \"),_c('br'),_c('ul',[_c('li',[_vm._v(\"\\n If the system's volume expands under the action of the force,\\n then we say work is done by the system and it is considered positive.\\n \")]),_c('li',[_vm._v(\"\\n On the other hand, if the system's volume contracts due to the action of the force, then we say work is done on the system and it is considered negative.\\n \")])])])])\n},function (){var _vm=this,_c=_vm._self._c;return _c('p',[_vm._v(\"\\n When a thermodynamic system exchanges energy with its surroundings\\n either in the form of heat or by performing work on its surroundings,\\n the system's internal energy is changed.\\n The first law of thermodynamics is the law that relates the amount of heat transferred and work done with the resultant change in internal energy. \"),_c('br'),_c('br'),_vm._v(\"\\n The first law of thermodynamics, in essence, is a statement of conservation of energy. It states that the internal energy of a system can be changed in two ways — by transferring heat to or from the system or working on the system. First law of thermodyanmics says that the change in internal energy of a system is equal to the heat transferred to system minus the work done by the system.\\n $$\\\\Delta U = \\\\Delta Q - \\\\Delta W$$\\n where \\\\(\\\\Delta Q\\\\) is the supplied heat, \\\\(\\\\Delta U\\\\) is the change in the internal energy of the system, and \\\\(\\\\Delta W\\\\) is the change in the work done by the system\\n \")])\n},function (){var _vm=this,_c=_vm._self._c;return _c('p',[_vm._v(\"\\n Here, we consider an ideal gas contained in a cylinder-piston assembly.\\n All surfaces are assumed to be completely frictionless.\\n The equation of state for the gas can be given as:\\n $$P V = n R T$$\\n where \\\\(P\\\\) is the pressure, \\\\(V\\\\) is the volume, \\\\(n\\\\) is the number of moles,\\n \\\\(R\\\\) is the universal gas constant, and \\\\(T\\\\) is the temperature. \"),_c('br'),_vm._v(\"\\n Heat can be supplied to the system by means of a heater.\\n Similarly, heat can be removed by means of a cooler.\\n Part of the supplied heat goes into changing the internal energy of the system\\n (by changing the temperature) and the remaining is spent in the form of work done by the system on its surroundings.\\n \"),_c('br'),_vm._v(\"\\n The change in internal energy is given as —\\n $$\\\\Delta U = \\\\int n C_p dT = n C_p \\\\Delta T$$\\n where \\\\(C_p\\\\) is the molar specific heat of the gas at constant pressure. It is generally given as:\\n $$C_p = (2\\\\eta+3)R/2$$\\n where \\\\(\\\\eta\\\\) is the atomicity. For monoatomic gases (\\\\(\\\\eta =1\\\\)), \\\\(C_p\\\\) is given as\\n $$C_p = \\\\frac{5}{2}R$$\\n while for diatomic gas (\\\\(\\\\eta =2\\\\)), \\\\(C_p\\\\) is given as\\n $$C_p = \\\\frac{7}{2}R$$\\n The work done by the system on its surroundings is given as —\\n $$\\\\Delta W = \\\\int P dV = n R \\\\Delta T$$\\n Substituting in the first law of thermodynamics gives\\n $$\\\\Delta Q = (n C_p + n R)\\\\Delta T$$\\n \")])\n},function (){var _vm=this,_c=_vm._self._c;return _c('ul',{staticClass:\"a\"},[_c('li',[_c('h5',[_vm._v(\"To Get Started \")]),_c('ul',{staticStyle:{\"list-style-type\":\"circle\"}},[_c('li',[_vm._v(\"Choose the type of gas that you would like to study: monoatomic (η = 1) or diatomic (η=2).\")]),_c('li',[_vm._v(\"Tap on the \"),_c('i',{staticClass:\"fa fa-plus-square\"}),_vm._v(\" button to add heat to the system. Tap on the \"),_c('i',{staticClass:\"fa fa-minus-square\"}),_vm._v(\" button to remove heat from the system.\")])])]),_c('li',[_c('h5',[_vm._v(\"To Explore \")]),_c('ul',{staticStyle:{\"list-style-type\":\"circle\"}},[_c('li',[_vm._v(\"Observe how the internal energy and the work done by the system change as you add or remove heat.\")]),_c('li',[_vm._v(\"Calculate the ratio of the change in internal energy to the work done by the system. Note how this ratio evolves as you add or remove heat. \")]),_c('li',[_vm._v(\"Observe how this ratio changes as you change the gas from monoatomic to diatomic. \")])])])])\n}]\n\nexport { render, staticRenderFns }","// Import the edliy_utils\r\nimport {\r\n makeResponsive,\r\n placeTitle,\r\n placeImage,\r\n placeInput,\r\n placeSlider,\r\n hoverMe,\r\n placeRec,\r\n hiddenPt,\r\n fixedPt,\r\n clearInputFields,\r\n dragMe,\r\n placeArrow,\r\n placeGravity,\r\n placeText,\r\n placeLine,\r\n placePoint,\r\n placeGlider,\r\n placeRuler,\r\n placeLeftText,\r\n placeSliderSwitch\r\n} from '../../../common/edliy_utils';\r\nconst Boxes = {\r\n box1: function () {\r\n\tJXG.Options.board.minimizeReflow = 'none';\r\n\tvar board1 = JXG.JSXGraph.initBoard('jxgbox1', {boundingbox: [-7, 12, 10, -5],\r\n keepaspectratio: true, axis:false, grid:true, ticks:false, showCopyright:false,\r\n showNavigation:false, pan:{enabled:false}, zoom:{enabled:false}});\r\n//Platform\r\n\tboard1.options.layer['image'] =14;\r\n\t//board1.options.layer['segment'] =14;\r\n\tboard1.suspendUpdate();\r\n makeResponsive(board1);\r\n // Creat titleStyle\r\n placeTitle(board1, 'First Law of Thermodynamics', '(Add or Remove Heat from the System)');\r\n\r\n\tboard1.create('polygon',[[-9,-10],[20,-10],[20,-4],[-9, -4.]], {fillColor:'grey', fillOpacity:1, withLines:false, vertices:{visible:false}});\r\n\t//flask\r\n\tboard1.create('polygon',[[0,-4.],[1,-4.],[1,5],[0, 5]], {fillColor:'black', fillOpacity:1, withLines:false, vertices:{visible:false}});\r\n board1.create('polygon',[[5,-4.],[6,-4.],[6,5],[5, 5]], {fillColor:'black', fillOpacity:1, withLines:false, vertices:{visible:false}});\r\n board1.create('polygon',[[0,-4.],[6,-4.],[6,-3],[0, -3]], {fillColor:'black', fillOpacity:1, withLines:false, vertices:{visible:false}});\r\n //Interior\r\n\t//board1.create('polygon',[[1,-3.],[5,-3.],[5,5.01],[1, 5.01]], {fillColor:'oldLace', withLines:false, fillOpacity:1, vertices:{visible:false}, borders:{visible:false}});\r\n\t//line\r\n\tvar line = board1.create('line', [[3,0], [3, 10]], {visible: false, straightFirst: false, straightLast: false});\r\n\t//\r\n\t//var inp =board1.create('input', [6., 8, '1', ''],{cssStyle:'width:50px;fontFamily:Oswald;background-color:#008CBA;border: 1px solid black;border-radius: 3.5px;',fontSize:function(){return 20*board1.canvasHeight/800}, fixed:true});\r\n\t//\r\n var inp =placeSliderSwitch(board1, 6, 8, 1, 2, 1, '');\r\n inp.label.setAttribute({visible:false});\r\n board1.create('text', [7.5, 8, ()=>'η = ' + (inp.Value()).toFixed(0)],{anchorX:'left', anchorY:'middle',fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;', highlight:false, fixed:true});\r\n //var inp=1;\r\n //var diatomic = board1.create('checkbox', [6, 9, ' Diatomic'], {size:6, color:'black',fontSize:function(){return Math.round(18*board1.canvasWidth/500.)},CssStyle:'fontFamily:Oswald;fontWeight:bold'});\r\n //var monatomic = board1.create('checkbox', [6, 8, ' Monatomic'], {size:6, color:'black',fontSize:function(){return Math.round(18*board1.canvasWidth/500.)},CssStyle:'fontFamily:Oswald;fontWeight:bold'});\r\n\t//board1.create('text', [5., 8.,'η = '],{CssStyle:'fontFamily:Oswald',fontSize:function(){return Math.round(18*board1.canvasWidth/500.)},highlight:false, fixed:true});\r\n\t//\r\n //board1.create('slider', [[0, -2],[4, -2],[5, 8, 11.5]], {baseline:{strokeWidth:7, strokeColor:'grey'},highline:{strokeWidth:7, strokeColor:'black'}, name:'Launch Speed',size:8,face:'square', fillColor:'grey',strokeColor:'black', withTicks:false, label:{fontSize:function(){return 18*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;'}});\r\n\r\n\tboard1.create('text', [7, 9., 'Monatomic Gas'],{anchorX:'middle', anchorY:'middle', display:'internal', fixed:true, highlight:false, CssStyle:'fontFamily:Oswald;fontWeight:bold',fontSize:function(){return Math.round(20*board1.canvasWidth/800.)}, visible:function(){if(inp.Value()==1){return true}else{return false}}});\r\n\tboard1.create('text', [7, 9, 'Diatomic Gas'],{anchorX:'middle', anchorY:'middle', display:'internal', fixed:true, highlight:false, CssStyle:'fontFamily:Oswald;fontWeight:bold',fontSize:function(){return Math.round(20*board1.canvasWidth/800.)}, visible:function(){if(inp.Value()==2){return true}else{return false}}});\r\n//thermometer\r\n\tvar Q=0; var m =5; var g = 9.8; var R = 8.314; var Cv = function(){return (2*inp.Value()+3)*R.valueOf()/2}; var To = 25; var P = m*9.8/1.0; var i=0;\r\n\tvar delt = function(){return Q.valueOf()/(Cv()+R);}\r\n//height\r\n\tvar delh = function(){return R*delt/P};\r\n board1.create('text', [-1, 6., function(){return 'ΔU /ΔW = η + 3/2 =' + (2*inp.Value()+3).toFixed(0) + '/2'}], {fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',highlight:false, fixed:true});\r\n\r\n//Temp_inside\r\n\tboard1.create('text', [2.0, -2., function(){return 'T_{In} =' + (To+ Q.valueOf()/(Cv()+R)).toFixed(2) + '^oC'}], {fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',highlight:false, fixed:true});\r\n//Temp_outside\r\n\tboard1.create('text', [7., 0.0, function(){return 'ΔQ = '+ (Q).toFixed(0)+' J'}],\r\n {fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',highlight:false, fixed:true});\r\n//block\r\n\tvar up =board1.create('image', ['/assets/plus.svg', [7.5-0.75, -2.25], [1.5,1.5]],{fixed:true});\r\n//\r\n hoverMe(board1, up, 'Tap to Add Heat', 0, -20);\r\n\tvar down =board1.create('image', ['/assets/minuss.svg', [7.5+0.75, -2.25], [1.5,1.5]],{fixed:true});\r\n hoverMe(board1, down, 'Tap to Remove Heat', 0, -20);\r\n var run = function(){\r\n\t\tif(Q<500){\r\n\t\t\tQ+=100;}}\r\n\tvar dec = function(){\r\n\t\tif(Q >-500){\r\n\t\tQ-=100;}}\r\n\tvar mass = board1.create('glider', [3, 3, line], {name: '', size:0, face:'square', label:{offset:[-20, 0]}});\r\n//tape\r\n inp.on('down', function(){mass.moveTo([3, 3]); Q=0;});\r\n\tup.on('down', function(){i=1; run(); mass.moveTo([3, 3.0+R*Q.valueOf()/(Cv()+R)/P],1000)});\r\n\tdown.on('down', function(){i=-1;dec();mass.moveTo([3, 3.0+R*Q.valueOf()/(Cv()+R)/P],1000)});\r\n\tboard1.create('image', ['/assets/weight.svg', [1.1, function(){return mass.Y()-1;}], [0.75, 0.75]],{highlight:false, fixed:true});\r\n\tboard1.create('image', ['/assets/weight.svg', [1.85, function(){return mass.Y()-1;}], [0.75,0.75]],{highlight:false, fixed:true});\r\n\tboard1.create('image', ['/assets/weight.svg', [2.6, function(){return mass.Y()-1;}], [0.75,0.75]],{highlight:false, fixed:true});\r\n\tboard1.create('image', ['/assets/weight.svg', [3.35, function(){return mass.Y()-1;}], [0.75,0.75]],{highlight:false, fixed:true});\r\n\tboard1.create('image', ['/assets/weight.svg', [4.1, function(){return mass.Y()-1;}], [0.75,0.75]],{highlight:false, fixed:true});\r\n//\r\n\tboard1.create('tapemeasure', [[-3, -4], [-3, function(){return mass.Y()-1.4}]], {name:'h2 (m)', withLabel: true, label:{highlight:false, anchorX:'middle', anchorY:'top', display:'internal' , rotate:90, fontSize:16,cssStyle:'fontFamily:Oswald;'}, fixed:true, point1:{fixed:true, size:4,face:'square', highlight:false}, point2:{highlight:false, fixed:true, size:4,face:'square'}});\r\n\tboard1.create('tapemeasure', [[-1., -4], [-1., 3.0+R*Q/(Cv()+R)/P-1.4]], {name:'h1 (m)', withLabel: true, ticks:false,label:{highlight:false, anchorX:'middle', anchorY:'top', display:'internal' , rotate:90, fontSize:16,cssStyle:'fontFamily:Oswald;'}, fixed:true, point1:{size:4,face:'square', fixed:true, highlight:false}, point2:{highlight:false, size:4,face:'square', fixed:true}});\r\n\tboard1.create('segment', [[-1, 3.0+R*Q/(Cv()+R)/P-1.4],[5., 3.0+R*Q/(Cv()+R)/P-1.4]],{fixed:true, highlight:false, dash:1, strokeWidth:1, strokeColor:'black'});\r\n//Piston\r\n\tboard1.create('polygon',[[1, function(){return mass.Y()-1.4;}],[5,function(){return mass.Y()-1.4;}],[5,function(){return mass.Y()-0.95;}],[1, function(){return mass.Y()-0.95;}]], {fillColor:'black', withLines:false, fillOpacity:1, vertices:{visible:false}});\r\n//gas\r\n board1.create('segment', [[-3, function(){return mass.Y()-1.4;}],[5., function(){return mass.Y()-1.4;}]],{highlight:false, dash:1, strokeWidth:1, strokeColor:'black'});\r\n\r\n\tboard1.create('polygon',[[1,-3.],[5,-3.],[5,function(){return mass.Y()-1.4;}],[1, function(){return mass.Y()-1.4;}]], {fillColor:'blue', withLines:false, fillOpacity:0.2, vertices:{visible:false}});\r\n board1.create('text', [7, 7,'R= 8.314 J/mol/K'], {display:'internal', anchorX:'middle', anchorY:'middle', highlight:false, fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',fixed:true});\r\n\r\n board1.create('text', [7, 6, function(){return 'C_p = '+ (3+2*inp.Value())+'R/2'}], {anchorY:'middle', anchorX:'middle',highlight:false, fixed:true, fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',fixed:true});\r\n//\r\n\tboard1.create('text', [-6.0, 9.0, 'Total Heat to System'], {highlight:false, fixed:true, fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',fixed:true});\r\n//\r\n board1.create('text', [-1.0, 9.0, function(){return 'ΔQ = '+ (Q).toFixed(2) + ' J'}], {anchorX:'left', highlight:false, fixed:true, highlight:false, fixed:true, fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',fixed:true});\r\n//\r\n\tboard1.create('text', [-6.0, 8.0, 'Work Done by the System'], {highlight:false, fixed:true, fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',fixed:true});\r\n//\r\n board1.create('text', [-1.0, 8.0, function(){return 'ΔW = mgΔh = '+ (m*g*R*Q.valueOf()/(Cv()+R)/P).toFixed(2) + ' J'}], {anchorX:'left', highlight:false, fixed:true, fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;',fixed:true});\r\n\r\n\tboard1.create('text', [-6.0, 7.0, 'Change in Internal Energy'], {highlight:false, fixed:true, fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;', fixed:true});\r\n//\r\nboard1.create('text', [-1.0, 7.0, function(){return 'ΔU = C_pΔT = '+ (Cv()*Q.valueOf()/(Cv()+R)).toFixed(2) + ' J'}], {anchorX:'left', highlight:false, fixed:true, fontSize:function(){return 20*board1.canvasHeight/800}, cssStyle:'fontFamily:Oswald;', fixed:true});\r\n\r\n\tboard1.create('image', ['/assets/ac.svg', [1, -5.], [1,1]],\r\n {highlight:false, fixed:true,\r\n visible:function(){if(mass.Y()>3.0+R*Q.valueOf()/(Cv()+R)/P){return true} else{return false}}});\r\n\tboard1.create('image', ['/assets/ac.svg', [2.5, -5.], [1,1]], {highlight:false, fixed:true, visible:function(){if(mass.Y()>3.0+R*Q.valueOf()/(Cv()+R)/P){return true} else{return false}}});\r\n\tboard1.create('image', ['/assets/ac.svg', [4., -5.], [1,1]], {highlight:false, fixed:true, visible:function(){if(mass.Y()>3.0+R*Q.valueOf()/(Cv()+R)/P){return true} else{return false}}});\r\n\tboard1.create('image', ['/assets/flame.svg', [1., -5], [1,1]], {highlight:false, fixed:true, visible:function(){if(mass.Y()<3.0+R*Q.valueOf()/(Cv()+R)/P){return true} else{return false}}});\r\n\tboard1.create('image', ['/assets/flame.svg', [2.5, -5], [1,1]], {highlight:false, fixed:true, visible:function(){if(mass.Y()<3.0+R*Q.valueOf()/(Cv()+R)/P){return true} else{return false}}});\r\n\tboard1.create('image', ['/assets/flame.svg', [4., -5], [1,1]], {highlight:false, fixed:true, visible:function(){if(mass.Y()<3.0+R*Q.valueOf()/(Cv()+R)/P){return true} else{return false}}});\r\n\tboard1.unsuspendUpdate();\r\n\t}\r\n}\r\nexport default Boxes;\r\n","\r\n\r\n\r\n","import mod from \"-!../../../../node_modules/cache-loader/dist/cjs.js??ref--12-0!../../../../node_modules/thread-loader/dist/cjs.js!../../../../node_modules/babel-loader/lib/index.js!../../../../node_modules/cache-loader/dist/cjs.js??ref--0-0!../../../../node_modules/vue-loader/lib/index.js??vue-loader-options!./Lesson.vue?vue&type=script&lang=js&\"; export default mod; export * from \"-!../../../../node_modules/cache-loader/dist/cjs.js??ref--12-0!../../../../node_modules/thread-loader/dist/cjs.js!../../../../node_modules/babel-loader/lib/index.js!../../../../node_modules/cache-loader/dist/cjs.js??ref--0-0!../../../../node_modules/vue-loader/lib/index.js??vue-loader-options!./Lesson.vue?vue&type=script&lang=js&\"","import { render, staticRenderFns } from \"./Lesson.vue?vue&type=template&id=5e1603d0&\"\nimport script from \"./Lesson.vue?vue&type=script&lang=js&\"\nexport * from \"./Lesson.vue?vue&type=script&lang=js&\"\nimport style0 from \"./Lesson.vue?vue&type=style&index=0&id=5e1603d0&prod&lang=scss&\"\n\n\n/* normalize component */\nimport normalizer from \"!../../../../node_modules/vue-loader/lib/runtime/componentNormalizer.js\"\nvar component = normalizer(\n script,\n render,\n staticRenderFns,\n false,\n null,\n null,\n null\n \n)\n\nexport default component.exports","export * from \"-!../../../../node_modules/mini-css-extract-plugin/dist/loader.js??ref--8-oneOf-1-0!../../../../node_modules/css-loader/index.js??ref--8-oneOf-1-1!../../../../node_modules/vue-loader/lib/loaders/stylePostLoader.js!../../../../node_modules/postcss-loader/src/index.js??ref--8-oneOf-1-2!../../../../node_modules/sass-loader/dist/cjs.js??ref--8-oneOf-1-3!../../../../node_modules/cache-loader/dist/cjs.js??ref--0-0!../../../../node_modules/vue-loader/lib/index.js??vue-loader-options!./Lesson.vue?vue&type=style&index=0&id=5e1603d0&prod&lang=scss&\""],"sourceRoot":""}