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<!-- Mirrored from www.mathsisfun.com/geometry/cone.html by HTTrack Website Copier/3.x [XR&CO'2014], Sat, 29 Oct 2022 00:44:38 GMT -->
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<meta http-equiv="content-type" content="text/html; charset=UTF-8">
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<!-- #BeginEditable "doctitle" -->
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<title>Spinning Cone</title>
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<article id="content" role="main">
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<!-- #BeginEditable "Body" -->
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<h1 class="center">Cone</h1>
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<p class="center"><i>Go to <a href="#Area">Surface Area</a> or <a href="#Volume">Volume</a>.</i></p>
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<div class="flexx">
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<div class="col def" style="text-align:left; margin:0; width:240px;">
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<h3 style="margin: 5px; padding: 5px; font-weight: bold; text-align:center; ">Cone Facts</h3>
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<p><b>Notice these interesting things:</b></p>
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<ul>
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<li>It has a circle at one end</li>
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<li>And a point at the other end</li>
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<li>And a curved side</li>
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<li>It is <b>not</b> a <a href="polyhedron.html">polyhedron</a> as it
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has a curved surface</li>
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</ul>
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<p class="center"><img src="images/cone-shiny.jpg" alt="cone shiny" height="193" width="170"></p>
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</div>
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<div class="col" style="width: 460px;">
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<div class="script" style="height: 460px;">
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images/poly-gl.js?mode=cone
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</div>
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</div>
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</div>
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<p style="float:right; margin: 0 0 5px 10px;"><img src="images/cone-apex-base.svg" alt="cone apex and base" height="196" width="210"></p>
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<p> </p>
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<ul>
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<li>The pointy end of a cone is called the <b>apex</b></li>
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<li>The flat part is the <b>base</b></li>
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</ul><div style="clear:both"></div>
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<div class="words">
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<p>An object shaped like a cone is said to be <b>conical</b></p>
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</div>
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<div style="float:left; margin: 0 10px 5px 0; width:300px;">
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<div class="script" style="height: 280px;">images/cone-sweep.js</div>
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</div>
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<h2>A Cone is a Rotated Triangle</h2>
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<p>A cone can be made by rotating a triangle!</p>
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<p>The triangle is a <a href="../right_angle_triangle.html">right-angled triangle</a>, and it gets rotated around one of its two short sides.</p>
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<p>The side it rotates around is the <b>axis</b> of the cone.</p>
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<div style="clear:both"></div>
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<h2>Right vs Oblique Cone</h2>
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<p>When the apex is aligned on the center of the base it is a Right Cone otherwise it is an Oblique Cone:</p>
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<p class="center"><img src="images/cone-oblique.svg" alt="right vs oblique cone" height="245" width="294"></p>
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<a id="Area"></a>
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<h2>Surface Area of a Cone</h2>
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<p style="float:right; margin: 0 0 5px 10px;"><img src="images/cone-dimensions.svg" alt="cone dimensions h=height, r=radius, s=side length" height="226" width="233"></p>
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<p>The Surface Area has two parts:</p>
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<ul>
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<li>The <i>Base Area</i> = <span class="times">π</span> × r<sup>2</sup></li>
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<li>The <i>Side Area</i> = <span class="times">π</span> × r × s</li>
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</ul>
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<p>Which together makes:</p>
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<p class="center large">Surface Area = <span class="times">π</span> × r × (r + s)</p>
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Note: we can calculate <b>s = √(r<sup>2</sup>+h<sup>2</sup>)</b>
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<div style="clear:both"></div>
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<div class="example">
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<h3>Example: h = 7 and r = 2</h3>
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<div class="tbl">
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<div class="row"><span class="left">Surface Area of Base</span><span class="right">= <span class="times">π</span> × r<sup>2</sup> </span></div>
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<div class="row"><span class="left"> </span><span class="right">= <span class="times">π</span> × 2<sup>2</sup> </span></div>
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<div class="row"><span class="left"> </span><span class="right">= 4<span class="times">π</span></span></div>
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<div class="row"><span class="left"> </span><span class="right">≈ <b>12.57</b></span></div>
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</div>
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<p> </p>
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<div class="tbl">
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<div class="row"><span class="left">Surface Area of Side</span><span class="right">= <span class="times">π</span> × r × √(r<sup>2</sup>+h<sup>2</sup>)</span></div>
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<div class="row"><span class="left"> </span><span class="right">= <span class="times">π</span> × 2 × √(2<sup>2</sup>+7<sup>2</sup>)</span></div>
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<div class="row"><span class="left"> </span><span class="right">= <span class="times">π</span> × 2 × √(4+49)</span></div>
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<div class="row"><span class="left"> </span><span class="right">= 2<span class="times">π</span>√(53)</span></div>
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<div class="row"><span class="left"> </span><span class="right">≈ <b>45.74</b></span></div>
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</div>
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<p>Total Surface Area ≈ 12.57 + 45.74 ≈ <b>58.31</b></p>
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</div>
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<a id="Volume"></a>
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<h2>Volume of a Cone</h2>
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<p class="center large">Volume = <span class="intbl">
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<em>1</em>
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<strong>3</strong>
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</span> <span class="times"> π</span> × r<sup>2 </sup>× h</p>
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<div class="example">
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<h3>Example: h = 7 and r = 2</h3>
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<div class="tbl">
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<div class="row"><span class="left">Volume</span><span class="right">= <span class="intbl">
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<em>1</em>
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<strong>3</strong>
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</span> <span class="times"> π</span> × r<sup>2</sup> × h</span></div>
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<div class="row"><span class="left"> </span><span class="right">= <span class="intbl">
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<em>1</em>
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<strong>3</strong>
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</span> <span class="times"> π</span> × 2<sup>2</sup> × 7</span></div>
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<div class="row"><span class="left"> </span><span class="right">= <span class="intbl">
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<em>28</em>
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<strong>3</strong>
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</span> <span class="times"> π</span></span></div>
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<div class="row"><span class="left"> </span><span class="right">≈ <b>29.32</b></span></div>
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</div>
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</div>
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<p>Play with it here. The formula also works when it "leans over" (<i>oblique</i>) but remember that the height is always at right angles to the base:</p>
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<iframe src="icone.html" scrolling="no" style="background-color:white; width:362px; height:302px; overflow:hidden; margin:auto; display:block; border: none; text-align:center;"></iframe>
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<h2>Volume of a Cone vs Cylinder</h2>
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<p style="float:left; margin: 0 10px 5px 0;"><img src="images/cone-vs-cylinder.svg" alt="cone vs cylinder" height="126" width="232"></p>
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<p>The volume formulas for cones and <a href="cylinder.html">cylinders</a> are very similar:</p>
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<div class="simple">
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<table style="border: 0; margin:auto;">
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<tbody>
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<tr valign="middle">
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<td style="text-align:right;">The volume of a cylinder is: </td>
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<td style="text-align:right;"><span class="larger"><span class="times"> π</span> × r<sup>2 </sup>× h</span></td>
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</tr>
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<tr valign="middle">
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<td style="text-align:right;">The volume of a cone is: </td>
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<td style="text-align:right;"><span class="larger"> <span class="intbl">
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<em>1</em>
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<strong>3</strong>
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</span> <span class="times"> π</span> × r<sup>2 </sup>× h</span></td>
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</tr>
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</tbody></table>
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</div>
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<p>So a cone's volume is exactly one third (
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<span class="intbl">
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<em>1</em>
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<strong>3</strong>
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</span>
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) of a cylinder's volume.</p>
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<p>You should order your ice creams in cylinders, not cones, you get 3 times as much!</p>
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<h2>Like a Pyramid</h2>
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<p>A cone is also like a pyramid with an infinite number of sides, see <a href="pyramid-vs-cone.html">Pyramid vs Cone</a>.</p>
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<h2>Different Shaped Cones</h2>
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<p class="center"><img src="images/cone-wood1.jpg" alt="wooden cone narrow" height="220" width="127"><img src="images/cone-wood3.jpg" alt="wooden cone medium" height="220" width="173"><img src="images/cone-wood4.jpg" alt="wooden cone wide" height="220" width="199"></p>
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<h2>Construction Cone</h2>
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<p style="float:left; margin: 0 10px 5px 0;"><img src="images/cone-construction.svg" alt="Construction Cone" height="168" width="129"></p>
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<p>This is <i><b>almost</b></i> a cone, but the top is chopped off (called a "truncated cone").</p>
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<p>Also it has a wider base added so it doesn't fall over!</p>
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<div style="clear:both"></div>
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<div class="questions">873,874,875,876, 1833, 1834, 3399, 3400, 3401, 3402</div>
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<div class="related">
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<a href="pyramid-vs-cone.html">Pyramid vs Cone</a>
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<a href="cylinder.html">Cylinder</a>
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<a href="sphere.html">Sphere</a>
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<a href="cone-sphere-cylinder.html">Cone vs Sphere vs Cylinder</a>
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<a href="torus.html">Torus</a>
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<a href="prisms.html">Prisms</a>
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<a href="polyhedron.html">Polyhedron</a>
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<a href="../platonic_solids.html">Platonic Solids</a>
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</div>
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<!-- #EndEditable -->
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