Power Series for sine and cosine: Difference between revisions
From JSXGraph Wiki
A WASSERMANN (talk | contribs) No edit summary |
A WASSERMANN (talk | contribs) No edit summary |
||
Line 1: | Line 1: | ||
== Power Series for Sine == | == Power Series for Sine == | ||
:<math>\sum_{k=0}^n (-1)^k\frac{1}{(2k+1)!}x^{2k+1}</math> | |||
</ | |||
<html> | <html> | ||
Line 48: | Line 27: | ||
</script> | </script> | ||
</html> | </html> | ||
<source lang="html4strict"> | |||
<link rel="stylesheet" type="text/css" href="http://jsxgraph.uni-bayreuth.de/distrib/jsxgraph.css" /> | |||
<script type="text/javascript" src="http://jsxgraph.uni-bayreuth.de/distrib/prototype.js"></script> | |||
<script type="text/javascript" src="http://jsxgraph.uni-bayreuth.de/distrib/jsxgraphcore.js"></script> | |||
<div id="jxgbox1" class="jxgbox" style="width:700px; height:600px;"></div> | |||
</source> | |||
<source lang="javascript"> | <source lang="javascript"> | ||
board1 = JXG.JSXGraph.initBoard('jxgbox1', {axis:true, originX: 300, originY: 150, unitX: 50, unitY: 50}); | |||
board1.suspendUpdate(); | |||
board1.createElement('functiongraph', [function(t){ return Math.sin(t); },-10, 10],{strokeColor: "#cccccc"}); | |||
var | var s = board1.createElement('slider', [[0.75,-1.5],[5.75,-1.5],[0,0,10]], {name:'S',snapWidth:1}); | ||
board1.createElement('functiongraph', [ | |||
function(t) { | function(t) { | ||
var val = 0; | var val = 0; | ||
for(var i = 0; i < | for(var i = 0; i < s.Value()+1; i++) { | ||
val = val + Math.pow(-1, i) * Math.pow(t, 2 * i) / | val = val + Math.pow(-1, i) * Math.pow(t, 2 * i + 1) / board1.factorial(2*i+1); | ||
} | } | ||
return val; | return val; | ||
}, -10, 10],{strokeColor: "# | }, -10, 10], {strokeColor: "#bb0000"}); | ||
board1.unsuspendUpdate(); | |||
</source> | </source> | ||
== Power Series for Cosine == | |||
<html> | <html> | ||
<div id="jxgbox2" class="jxgbox" style="width:700px; height:300px;"></div> | <div id="jxgbox2" class="jxgbox" style="width:700px; height:300px;"></div> | ||
Line 85: | Line 72: | ||
</script> | </script> | ||
</html> | </html> | ||
<source lang="javascript"> | |||
board2 = JXG.JSXGraph.initBoard('jxgbox2', {axis:true, originX: 300, originY: 150, unitX: 50, unitY: 50}); | |||
board2.suspendUpdate(); | |||
board2.createElement('functiongraph', [function(t){ return Math.cos(t); }, -10, 10],{strokeColor: "#cccccc"}); | |||
var s2 = board2.createElement('slider', [[0.75,-1.5],[5.75,-1.5],[0,0,10]], {name:'T',snapWidth:1}); | |||
board2.createElement('functiongraph', [ | |||
function(t) { | |||
var val = 0; | |||
for(var i = 0; i < Math.floor(s2.Value()) + 1; i++) { | |||
val = val + Math.pow(-1, i) * Math.pow(t, 2 * i) / board2.factorial(2*i); | |||
} | |||
return val; | |||
}, -10, 10],{strokeColor: "#009900"}); | |||
board2.unsuspendUpdate(); | |||
</source> | |||
=== References === | === References === |
Revision as of 13:45, 9 July 2009
Power Series for Sine
- [math]\displaystyle{ \sum_{k=0}^n (-1)^k\frac{1}{(2k+1)!}x^{2k+1} }[/math]
<link rel="stylesheet" type="text/css" href="http://jsxgraph.uni-bayreuth.de/distrib/jsxgraph.css" />
<script type="text/javascript" src="http://jsxgraph.uni-bayreuth.de/distrib/prototype.js"></script>
<script type="text/javascript" src="http://jsxgraph.uni-bayreuth.de/distrib/jsxgraphcore.js"></script>
<div id="jxgbox1" class="jxgbox" style="width:700px; height:600px;"></div>
board1 = JXG.JSXGraph.initBoard('jxgbox1', {axis:true, originX: 300, originY: 150, unitX: 50, unitY: 50});
board1.suspendUpdate();
board1.createElement('functiongraph', [function(t){ return Math.sin(t); },-10, 10],{strokeColor: "#cccccc"});
var s = board1.createElement('slider', [[0.75,-1.5],[5.75,-1.5],[0,0,10]], {name:'S',snapWidth:1});
board1.createElement('functiongraph', [
function(t) {
var val = 0;
for(var i = 0; i < s.Value()+1; i++) {
val = val + Math.pow(-1, i) * Math.pow(t, 2 * i + 1) / board1.factorial(2*i+1);
}
return val;
}, -10, 10], {strokeColor: "#bb0000"});
board1.unsuspendUpdate();
Power Series for Cosine
board2 = JXG.JSXGraph.initBoard('jxgbox2', {axis:true, originX: 300, originY: 150, unitX: 50, unitY: 50});
board2.suspendUpdate();
board2.createElement('functiongraph', [function(t){ return Math.cos(t); }, -10, 10],{strokeColor: "#cccccc"});
var s2 = board2.createElement('slider', [[0.75,-1.5],[5.75,-1.5],[0,0,10]], {name:'T',snapWidth:1});
board2.createElement('functiongraph', [
function(t) {
var val = 0;
for(var i = 0; i < Math.floor(s2.Value()) + 1; i++) {
val = val + Math.pow(-1, i) * Math.pow(t, 2 * i) / board2.factorial(2*i);
}
return val;
}, -10, 10],{strokeColor: "#009900"});
board2.unsuspendUpdate();