5.1 Writing formulas in TeX
From Förberedande kurs i matematik 1
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To indicate the '''start''' of math formatting, use the tag '''<nowiki><math></nowiki>'''. To '''end''' math formatting, use the tag '''<nowiki></math></nowiki>'''. For example, if you want the formula <math>a+b</math>, in the text box write <nowiki><math></nowiki>a+b<nowiki></math></nowiki>. | To indicate the '''start''' of math formatting, use the tag '''<nowiki><math></nowiki>'''. To '''end''' math formatting, use the tag '''<nowiki></math></nowiki>'''. For example, if you want the formula <math>a+b</math>, in the text box write <nowiki><math></nowiki>a+b<nowiki></math></nowiki>. | ||
- | Simple mathematical | + | Simple mathematical formulae are written in a straightforward way. |
<div class="exempel"> | <div class="exempel"> | ||
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<tr> | <tr> | ||
<td></td> | <td></td> | ||
- | <td align="center"><span class="math">\frac{ | + | <td align="center"><span class="math">\frac{1}{2}</span></td> |
- | <td align="center"><tt>\frac{ | + | <td align="center"><tt>\frac{1}{2}</tt></td> |
- | <td align="left"> | + | <td align="left">Small stacked fraction</td> |
</tr> | </tr> | ||
<tr style="background:#E6E6E6;"> | <tr style="background:#E6E6E6;"> | ||
+ | <td></td> | ||
+ | <td align="center"><span class="math">\dfrac{a}{b}</span></td> | ||
+ | <td align="center"><tt>\dfrac{a}{b}</tt></td> | ||
+ | <td align="left">Large stacked fraction</td> | ||
+ | </tr> | ||
+ | <tr> | ||
<td></td> | <td></td> | ||
<td align="center"><span class="math">(a)</span></td> | <td align="center"><span class="math">(a)</span></td> | ||
<td align="center"><tt>(a)</tt></td> | <td align="center"><tt>(a)</tt></td> | ||
- | <td align="left">Scalable parantheses \left(...\right)</td> | + | <td align="left">Scalable parantheses: <tt>\left(...\right)</tt></td> |
</tr> | </tr> | ||
- | <tr> | + | <tr style="background:#E6E6E6;"> |
<td align="left">Relation signs</td> | <td align="left">Relation signs</td> | ||
<td align="center"><span class="math">a=b</span></td> | <td align="center"><span class="math">a=b</span></td> | ||
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<td></td> | <td></td> | ||
</tr> | </tr> | ||
- | <tr | + | <tr> |
<td></td> | <td></td> | ||
<td align="center"><span class="math">a\ne b</span></td> | <td align="center"><span class="math">a\ne b</span></td> | ||
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<td>Alternatively: a\not= b</td> | <td>Alternatively: a\not= b</td> | ||
</tr> | </tr> | ||
- | <tr> | + | <tr style="background:#E6E6E6;"> |
<td></td> | <td></td> | ||
<td align="center"><span class="math">a< b</span></td> | <td align="center"><span class="math">a< b</span></td> | ||
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<td>NB: Space after "<" </td> | <td>NB: Space after "<" </td> | ||
</tr> | </tr> | ||
- | <tr | + | <tr> |
<td></td> | <td></td> | ||
<td align="center"><span class="math">a\le b</span></td> | <td align="center"><span class="math">a\le b</span></td> | ||
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<td></td> | <td></td> | ||
</tr> | </tr> | ||
- | <tr> | + | <tr style="background:#E6E6E6;"> |
<td></td> | <td></td> | ||
<td align="center"><span class="math">a> b</span></td> | <td align="center"><span class="math">a> b</span></td> | ||
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<td></td> | <td></td> | ||
</tr> | </tr> | ||
- | <tr | + | <tr> |
<td></td> | <td></td> | ||
<td align="center"><span class="math">a\ge b</span></td> | <td align="center"><span class="math">a\ge b</span></td> | ||
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<td></td> | <td></td> | ||
</tr> | </tr> | ||
- | <tr> | + | <tr style="background:#E6E6E6;"> |
<td>Powers and roots</td> | <td>Powers and roots</td> | ||
<td align="center"><span class="math">x^{n}</span></td> | <td align="center"><span class="math">x^{n}</span></td> | ||
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<td></td> | <td></td> | ||
</tr> | </tr> | ||
- | <tr | + | <tr> |
<td></td> | <td></td> | ||
<td align="center"><span class="math">\sqrt{x}</span></td> | <td align="center"><span class="math">\sqrt{x}</span></td> | ||
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<td></td> | <td></td> | ||
</tr> | </tr> | ||
- | <tr> | + | <tr style="background:#E6E6E6;"> |
<td></td> | <td></td> | ||
<td align="center"><span class="math">\sqrt[n]{x}</span></td> | <td align="center"><span class="math">\sqrt[n]{x}</span></td> | ||
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<td>Write \sqrt[\scriptstyle n]{x} for bigger n</td> | <td>Write \sqrt[\scriptstyle n]{x} for bigger n</td> | ||
</tr> | </tr> | ||
- | <tr | + | <tr> |
<td>Index</td> | <td>Index</td> | ||
<td align="center"><span class="math">x_n</span></td> | <td align="center"><span class="math">x_n</span></td> | ||
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<td></td> | <td></td> | ||
</tr> | </tr> | ||
- | <tr> | + | <tr style="background:#E6E6E6;"> |
<td>Logarithms</td> | <td>Logarithms</td> | ||
+ | <td align="center"><span class="math">\lg x</span></td> | ||
+ | <td align="center"><tt>\lg x</tt></td> | ||
+ | <td></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td></td> | ||
<td align="center"><span class="math">\ln x</span></td> | <td align="center"><span class="math">\ln x</span></td> | ||
<td align="center"><tt>\ln x</tt></td> | <td align="center"><tt>\ln x</tt></td> | ||
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<td align="center"><span class="math">\Rightarrow</span></td> | <td align="center"><span class="math">\Rightarrow</span></td> | ||
<td align="center"><tt>\Rightarrow</tt></td> | <td align="center"><tt>\Rightarrow</tt></td> | ||
- | <td></td> | + | <td align="left">Implies</td> |
</tr> | </tr> | ||
<tr style="background:#E6E6E6;"> | <tr style="background:#E6E6E6;"> | ||
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<td align="center"><span class="math">\Leftarrow</span></td> | <td align="center"><span class="math">\Leftarrow</span></td> | ||
<td align="center"><tt>\Leftarrow</tt></td> | <td align="center"><tt>\Leftarrow</tt></td> | ||
- | <td></td> | + | <td align="left">Is implied by</td> |
</tr> | </tr> | ||
<tr> | <tr> | ||
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<td align="center"><span class="math">\Leftrightarrow</span></td> | <td align="center"><span class="math">\Leftrightarrow</span></td> | ||
<td align="center"><tt>\Leftrightarrow</tt></td> | <td align="center"><tt>\Leftrightarrow</tt></td> | ||
- | <td></td> | + | <td align="left">Is equivalent to</td> |
</tr> | </tr> | ||
<tr style="background:#E6E6E6;"> | <tr style="background:#E6E6E6;"> | ||
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<td align="center"><span class="math">\pi</span></td> | <td align="center"><span class="math">\pi</span></td> | ||
<td align="center"><tt>\pi</tt></td> | <td align="center"><tt>\pi</tt></td> | ||
+ | <td></td> | ||
+ | </tr> | ||
+ | <tr> | ||
+ | <td></td> | ||
+ | <td align="center"><span class="math">\alpha, \beta, \theta, \varphi</span></td> | ||
+ | <td colspan="2" align="left"><tt>\alpha, \beta, \theta, \varphi</tt></td> | ||
<td></td> | <td></td> | ||
</tr> | </tr> | ||
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<li><math>\tfrac{1}{2}y\ne x\le z\quad</math> is written <tt><nowiki><math></nowiki>\frac{1}{2}y\ne x\le z<nowiki></math></nowiki></tt></li> | <li><math>\tfrac{1}{2}y\ne x\le z\quad</math> is written <tt><nowiki><math></nowiki>\frac{1}{2}y\ne x\le z<nowiki></math></nowiki></tt></li> | ||
<li><math>2^{13}\sqrt{3}+\ln y\quad</math> is written <tt><nowiki><math></nowiki>2^{13}\sqrt{3}+\ln y<nowiki></math></nowiki></tt></li> | <li><math>2^{13}\sqrt{3}+\ln y\quad</math> is written <tt><nowiki><math></nowiki>2^{13}\sqrt{3}+\ln y<nowiki></math></nowiki></tt></li> | ||
- | <li><math>\tan 30^{\circ} | + | <li><math>\tan 30^{\circ}\quad</math> is written <tt><nowiki><math></nowiki>\tan 30^{\circ}<nowiki></math></nowiki></tt></li> |
</ol> | </ol> | ||
</div> | </div> | ||
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<li><math>\sqrt{x+2}\quad</math> is written <tt><nowiki><math></nowiki>\sqrt{x+2}<nowiki></math></nowiki></tt></li> | <li><math>\sqrt{x+2}\quad</math> is written <tt><nowiki><math></nowiki>\sqrt{x+2}<nowiki></math></nowiki></tt></li> | ||
<li><math>(a^2)^3=a^6\quad</math> is written <tt><nowiki><math></nowiki>(a^2)^3=a^6<nowiki></math></nowiki></tt></li> | <li><math>(a^2)^3=a^6\quad</math> is written <tt><nowiki><math></nowiki>(a^2)^3=a^6<nowiki></math></nowiki></tt></li> | ||
- | <li><math>2^{2^2}\quad</math> is written <tt><nowiki><math></nowiki>2^{2^2}<nowiki></math></nowiki></tt></li> | + | <li><math>2^{(2^2)}\quad</math> is written <tt><nowiki><math></nowiki>2^{(2^2)}<nowiki></math></nowiki></tt></li> |
<li><math>\sin\sqrt{x}\quad</math> is written <tt><nowiki><math></nowiki>\sin\sqrt{x}<nowiki></math></nowiki></tt></li> | <li><math>\sin\sqrt{x}\quad</math> is written <tt><nowiki><math></nowiki>\sin\sqrt{x}<nowiki></math></nowiki></tt></li> | ||
</ol> | </ol> | ||
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| align="center" width="35%" |Result | | align="center" width="35%" |Result | ||
|- | |- | ||
- | ||<ol type="a" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li> | + | ||<ol type="a" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li>Don't forget backslash (\)</li></ol> |
| align="center" valign="bottom" |<tt>sin x</tt> | | align="center" valign="bottom" |<tt>sin x</tt> | ||
| align="center" valign="bottom" |<math>sin x</math> | | align="center" valign="bottom" |<math>sin x</math> | ||
|- | |- | ||
- | ||<ol style="list-style-type: none; padding-top: 10px; padding-bottom: 0px; margin-top: 0px; margin-bottom: 0px"><li> | + | ||<ol style="list-style-type: none; padding-top: 10px; padding-bottom: 0px; margin-top: 0px; margin-bottom: 0px"><li>Remember to put a space after a command</li></ol> |
| align="center" valign="bottom" |<tt>\sinx</tt> | | align="center" valign="bottom" |<tt>\sinx</tt> | ||
| align="center" valign="bottom" |<span style="color:red">Error</span> | | align="center" valign="bottom" |<span style="color:red">Error</span> | ||
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| align="center" valign="bottom" |<math>\sin x</math> | | align="center" valign="bottom" |<math>\sin x</math> | ||
|- | |- | ||
- | ||<ol type="a" start="2" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li> | + | ||<ol type="a" start="2" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li>Don't use asterisk as a multiplication sign</li></ol> |
| align="center" valign="bottom" |<tt>4*3</tt> | | align="center" valign="bottom" |<tt>4*3</tt> | ||
| align="center" valign="bottom" |<math>4*3</math> | | align="center" valign="bottom" |<math>4*3</math> | ||
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| align="center" valign="bottom" |<math>4\times 3</math> | | align="center" valign="bottom" |<math>4\times 3</math> | ||
|- | |- | ||
- | ||<ol type="a" start="3" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li> | + | ||<ol type="a" start="3" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li>The multiplication sign is usually not inserted between variables</li></ol> |
| align="center" valign="bottom" |<tt>a\times b</tt> | | align="center" valign="bottom" |<tt>a\times b</tt> | ||
| align="center" valign="bottom" |<math>a\times b</math> | | align="center" valign="bottom" |<math>a\times b</math> | ||
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</div> | </div> | ||
- | ==== | + | ====Superscripts and subscripts==== |
- | When writing exponents you use <tt>^</tt> | + | When writing superscripts, such as exponents, you use <tt>^</tt>, and to write subscripts you use <tt>_</tt>. If the super- or subscript consists of more than one symbol it must be enclosed with braces <tt>{}</tt>. |
- | A special kind of | + | A special kind of superscript is the degree sign (°) which is written as <tt>^{\circ}</tt>. |
<div class="exempel"> | <div class="exempel"> | ||
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| align="center" width="35%" |Result | | align="center" width="35%" |Result | ||
|- | |- | ||
- | ||<ol type="a" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li> | + | ||<ol type="a" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li>Don't omit <tt>^</tt></li></ol> |
| align="center" valign="bottom" |<tt>a2</tt> | | align="center" valign="bottom" |<tt>a2</tt> | ||
| align="center" valign="bottom" |<math>a2</math> | | align="center" valign="bottom" |<math>a2</math> | ||
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| align="center" valign="bottom" |<math>a^2</math> | | align="center" valign="bottom" |<math>a^2</math> | ||
|- | |- | ||
- | ||<ol type="a" start="2" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li> | + | ||<ol type="a" start="2" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li>Don't omit <tt>_</tt></li></ol> |
| align="center" valign="bottom" |<tt>x1</tt> | | align="center" valign="bottom" |<tt>x1</tt> | ||
| align="center" valign="bottom" |<math>x1</math> | | align="center" valign="bottom" |<math>x1</math> | ||
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| align="center" valign="bottom" |<math>x_1</math> | | align="center" valign="bottom" |<math>x_1</math> | ||
|- | |- | ||
- | ||<ol type="a" start="3" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li> | + | ||<ol type="a" start="3" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li>Remember to use braces</li></ol> |
| align="center" valign="bottom" |<tt>a^22</tt> | | align="center" valign="bottom" |<tt>a^22</tt> | ||
| align="center" valign="bottom" |<math>a^22</math> | | align="center" valign="bottom" |<math>a^22</math> | ||
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| align="center" valign="bottom" |<math>a^{22}</math> | | align="center" valign="bottom" |<math>a^{22}</math> | ||
|- | |- | ||
- | ||<ol type="a" start="4" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li> | + | ||<ol type="a" start="4" style="padding-top: 5px; padding-bottom: 0px; margin-bottom: 0px"><li>Don't use "o" as the degree sign</li></ol> |
| align="center" valign="bottom" |<tt>30^{o}</tt> | | align="center" valign="bottom" |<tt>30^{o}</tt> | ||
| align="center" valign="bottom" |<math>30^{o}</math> | | align="center" valign="bottom" |<math>30^{o}</math> | ||
|- | |- | ||
- | ||<ol style="list-style-type: none; padding-top: 10px; padding-bottom: 0px; margin-top: 0px; margin-bottom: 0px"><li> | + | ||<ol style="list-style-type: none; padding-top: 10px; padding-bottom: 0px; margin-top: 0px; margin-bottom: 0px"><li>Don't use "0" as the degree sign</li></ol> |
| align="center" valign="bottom" |<tt>30^{0}</tt> | | align="center" valign="bottom" |<tt>30^{0}</tt> | ||
| align="center" valign="bottom" |<math>30^{0}</math> | | align="center" valign="bottom" |<math>30^{0}</math> | ||
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A pair of parenthesis that delimits a tall expression should be as large as the expression. You should therefore prefix the opening parenthesis with <tt>\left</tt> and the closing parenthesis with <tt>\right</tt> to get a pair of extensible parentheses that adjust its height to the expression. | A pair of parenthesis that delimits a tall expression should be as large as the expression. You should therefore prefix the opening parenthesis with <tt>\left</tt> and the closing parenthesis with <tt>\right</tt> to get a pair of extensible parentheses that adjust its height to the expression. | ||
- | Note also that braces <tt>{}</tt> and not parentheses <tt>()</tt> are used | + | Note also that braces, <tt>{}</tt>, and not parentheses, <tt>()</tt>, are used to delimit arguments (input values) of commands such as <tt>\sqrt</tt> and <tt>\frac</tt>. |
<div class="exempel"> | <div class="exempel"> | ||
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| align="center" width="35%" |Result | | align="center" width="35%" |Result | ||
|- | |- | ||
- | ||<ol type="a" style="padding-top: 3px; padding-bottom: 3px"><li> | + | ||<ol type="a" style="padding-top: 3px; padding-bottom: 3px"><li>Use the correct number of brackets</li></ol> |
| align="center" valign="center" |<tt>(1-(1-x)</tt> | | align="center" valign="center" |<tt>(1-(1-x)</tt> | ||
| align="center" valign="center" |<math>(1-(1-x)</math> | | align="center" valign="center" |<math>(1-(1-x)</math> | ||
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| align="center" valign="center" |<math>(1-(1-x))</math> | | align="center" valign="center" |<math>(1-(1-x))</math> | ||
|- | |- | ||
- | ||<ol type="a" start="2" style="padding-top: 10px; padding-bottom: 10px"><li> | + | ||<ol type="a" start="2" style="padding-top: 10px; padding-bottom: 10px"><li>Brackets should be as large as the expression</li></ol> |
| align="center" valign="center" |<tt>(\dfrac{a}{b}+c)</tt> | | align="center" valign="center" |<tt>(\dfrac{a}{b}+c)</tt> | ||
| align="center" valign="center" |<math>(\dfrac{a}{b}+c)</math> | | align="center" valign="center" |<math>(\dfrac{a}{b}+c)</math> | ||
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| align="center" valign="center" |<math>\left(\dfrac{a}{b}+c\right)</math> | | align="center" valign="center" |<math>\left(\dfrac{a}{b}+c\right)</math> | ||
|- | |- | ||
- | ||<ol type="a" start="3" style="padding-top: 5px; padding-bottom: 5px"><li> | + | ||<ol type="a" start="3" style="padding-top: 5px; padding-bottom: 5px"><li>Don't use parentheses to delimit arguments</li></ol> |
| align="center" valign="center" |<tt>\frac(1)(2)</tt> | | align="center" valign="center" |<tt>\frac(1)(2)</tt> | ||
| align="center" valign="center" |<math>\tfrac(1)(2)</math> | | align="center" valign="center" |<math>\tfrac(1)(2)</math> | ||
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| align="center" valign="center" |<math>\tfrac{1}{2}</math> | | align="center" valign="center" |<math>\tfrac{1}{2}</math> | ||
|- | |- | ||
- | ||<ol type="a" start="4" style="padding-top: 5px; padding-bottom: 5px"><li> | + | ||<ol type="a" start="4" style="padding-top: 5px; padding-bottom: 5px"><li>Don't use parentheses to delimit arguments</li></ol> |
| align="center" valign="center" |<tt>\sqrt(a+b)</tt> | | align="center" valign="center" |<tt>\sqrt(a+b)</tt> | ||
| align="center" valign="center" |<math>\sqrt(a+b)</math> | | align="center" valign="center" |<math>\sqrt(a+b)</math> | ||
|- | |- | ||
- | ||<ol style="list-style-type: none; padding-top: 5px; padding-bottom: 5px; margin-top: 0px; margin-bottom: 0px"><li> | + | ||<ol style="list-style-type: none; padding-top: 5px; padding-bottom: 5px; margin-top: 0px; margin-bottom: 0px"><li>Avoid redundant brackets</li></ol> |
| align="center" valign="center" |<tt>\sqrt{(a+b)}</tt> | | align="center" valign="center" |<tt>\sqrt{(a+b)}</tt> | ||
| align="center" valign="center" |<math>\sqrt{(a+b)}</math> | | align="center" valign="center" |<math>\sqrt{(a+b)}</math> | ||
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| align="center" width="35%" |Result | | align="center" width="35%" |Result | ||
|- | |- | ||
- | ||<ol type="a" style="padding-top: 5px; padding-bottom: 5px><li> | + | ||<ol type="a" style="padding-top: 5px; padding-bottom: 5px><li>Don't write numerical fractions large</li></ol> |
| align="center" valign="center" |<tt>\dfrac{1}{2}</tt> | | align="center" valign="center" |<tt>\dfrac{1}{2}</tt> | ||
| align="center" valign="center" |<math>\dfrac{1}{2}</math> | | align="center" valign="center" |<math>\dfrac{1}{2}</math> | ||
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| colspan="3"|<ol style="list-style-type: none; padding-top: 10px; padding-bottom: 0px; margin-top: 0px; margin-bottom: 0px"><li>(Exception: If the fraction is next to a large expression you should, however, write the fraction as a large fraction.)</li></ol> | | colspan="3"|<ol style="list-style-type: none; padding-top: 10px; padding-bottom: 0px; margin-top: 0px; margin-bottom: 0px"><li>(Exception: If the fraction is next to a large expression you should, however, write the fraction as a large fraction.)</li></ol> | ||
|- | |- | ||
- | ||<ol type="a" start="2" style="padding-top: 5px; padding-bottom: 5px><li> | + | ||<ol type="a" start="2" style="padding-top: 5px; padding-bottom: 5px><li>Don't write symbolic fractions small</li></ol> |
| align="center" valign="center" |<tt>\frac{a}{b}</tt> | | align="center" valign="center" |<tt>\frac{a}{b}</tt> | ||
| align="center" valign="center" |<math>\tfrac{a}{b}</math> | | align="center" valign="center" |<math>\tfrac{a}{b}</math> | ||
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| align="center" valign="center" |<math>\dfrac{a}{b}</math> | | align="center" valign="center" |<math>\dfrac{a}{b}</math> | ||
|- | |- | ||
- | ||<ol type="a" start="3" style="padding-top: 5px; padding-bottom: 5px><li> | + | ||<ol type="a" start="3" style="padding-top: 5px; padding-bottom: 5px><li>Don't write complicated fractions small</li></ol> |
| align="center" valign="center" |<tt>\frac{\sqrt{3}}{2}</tt> | | align="center" valign="center" |<tt>\frac{\sqrt{3}}{2}</tt> | ||
| align="center" valign="center" |<math>\tfrac{\sqrt{3}}{2}</math> | | align="center" valign="center" |<math>\tfrac{\sqrt{3}}{2}</math> | ||
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| align="center" valign="center" |<math>\dfrac{\sqrt{3}}{2}</math> | | align="center" valign="center" |<math>\dfrac{\sqrt{3}}{2}</math> | ||
|- | |- | ||
- | ||<ol type="a" start="4" style="padding-top: 5px; padding-bottom: 5px"><li> | + | ||<ol type="a" start="4" style="padding-top: 5px; padding-bottom: 5px"><li>No stacked fractions in exponents</li></ol> |
| align="center" valign="center" |<tt>a^{\frac{1}{2}}</tt> | | align="center" valign="center" |<tt>a^{\frac{1}{2}}</tt> | ||
| align="center" valign="center" |<math>a^{\frac{1}{2}}</math> | | align="center" valign="center" |<math>a^{\frac{1}{2}}</math> | ||
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'''Useful web sites''' | '''Useful web sites''' | ||
- | *A more thorough list of LaTeX maths commands can be found on | + | *A more thorough list of LaTeX maths commands can be found on Wikipedia's [http://en.wikipedia.org/wiki/Help:Displaying_a_formula help page] |
- | *Two more thorough texts | + | *Two more thorough texts on LaTeX maths can be found in [http://www.cism.it/cism/volconts/ch8.pdf a chapter] of the book ''The LaTeX Companion'' and a [http://www.tex.ac.uk/tex-archive/info/math/voss/mathmode/Mathmode.pdf text] by Herbert Voss. |
*If you want to know more about LaTeX you can visit these sites: [http://en.wikipedia.org/wiki/LaTeX Wikipedia], [http://www.ctan.org/tex-archive/info/lshort/english/lshort.pdf The not so Short Introduction to LaTeX] and [http://en.wikibooks.org/wiki/LaTeX LaTeX Wikibook]. | *If you want to know more about LaTeX you can visit these sites: [http://en.wikipedia.org/wiki/LaTeX Wikipedia], [http://www.ctan.org/tex-archive/info/lshort/english/lshort.pdf The not so Short Introduction to LaTeX] and [http://en.wikibooks.org/wiki/LaTeX LaTeX Wikibook]. |
Current revision
Theory | Exercises |
Contents:
- LaTeX maths
Learning outcomes:
After this section you will have learned how to:
- Write simple maths formulas in LaTeX.
- Avoid common mistakes when coding maths in LaTeX.
To write mathematics efficiently on a computer in your individual assignment and the group task you will need to write the maths in a coded form called LaTeX syntax. In this section you will learn the fundamentals of constructing LaTeX code that yields simple maths formulas.
How to write basic expressions
To indicate the start of math formatting, use the tag <math>. To end math formatting, use the tag </math>. For example, if you want the formula \displaystyle a+b, in the text box write <math>a+b</math>.
Simple mathematical formulae are written in a straightforward way.
Example 1
- \displaystyle 1+2-3\quad is written <math>1+2-3</math>
- \displaystyle 5/2\quad is written <math>5/2</math>
- \displaystyle 4/(2+x)\quad is written <math>4/(2+x)</math>
- \displaystyle 4 < 5\quad is written <math>4 < 5</math>
When you need to use symbols that are not available on the keyboard or construct formulas that are not simple you use special commands that start with a backslash, e.g. \le is a command that gives you \displaystyle \le.
The table below shows some of the most commonly used maths commands in LaTeX.
Example | LaTeX-code | Comment | ||
Simple operations | a+b | a+b | ||
a-b | a-b | |||
a\pm b | a\pm b | |||
a\times b | a\times b | |||
a/b | a/b | |||
\frac{1}{2} | \frac{1}{2} | Small stacked fraction | ||
\dfrac{a}{b} | \dfrac{a}{b} | Large stacked fraction | ||
(a) | (a) | Scalable parantheses: \left(...\right) | ||
Relation signs | a=b | a=b | ||
a\ne b | a\ne b | Alternatively: a\not= b | ||
a< b | a< b | NB: Space after "<" | ||
a\le b | a\le b | |||
a> b | a>b | |||
a\ge b | a\ge b | |||
Powers and roots | x^{n} | x^{n} | ||
\sqrt{x} | \sqrt{x} | |||
\sqrt[n]{x} | \sqrt[n]{x} | Write \sqrt[\scriptstyle n]{x} for bigger n | ||
Index | x_n | x_{n} | ||
Logarithms | \lg x | \lg x | ||
\ln x | \ln x | |||
\log x | \log x | |||
\log_{a} x | \log_{a} x | |||
Trigonometry | 30^{\circ} | 30^{\circ} | ||
\cos x | \cos x | |||
\sin x | \sin x | |||
\tan x | \tan x | |||
\cot x | \cot x | |||
Arrows | \Rightarrow | \Rightarrow | Implies | |
\Leftarrow | \Leftarrow | Is implied by | ||
\Leftrightarrow | \Leftrightarrow | Is equivalent to | ||
Various symbols | \pi | \pi | ||
\alpha, \beta, \theta, \varphi | \alpha, \beta, \theta, \varphi |
Example 2
- \displaystyle 1\pm3\times 5\quad is written <math>1\pm 3\times 5</math>
- \displaystyle \tfrac{1}{2}y\ne x\le z\quad is written <math>\frac{1}{2}y\ne x\le z</math>
- \displaystyle 2^{13}\sqrt{3}+\ln y\quad is written <math>2^{13}\sqrt{3}+\ln y</math>
- \displaystyle \tan 30^{\circ}\quad is written <math>\tan 30^{\circ}</math>
How to write complex expressions
By combining simple expressions, we may form more complex expressions.
Example 3
- \displaystyle \sqrt{x+2}\quad is written <math>\sqrt{x+2}</math>
- \displaystyle (a^2)^3=a^6\quad is written <math>(a^2)^3=a^6</math>
- \displaystyle 2^{(2^2)}\quad is written <math>2^{(2^2)}</math>
- \displaystyle \sin\sqrt{x}\quad is written <math>\sin\sqrt{x}</math>
Example 4
- \displaystyle \sqrt{x+\sqrt{x}}\quad is written <math>\sqrt{x+\sqrt{x}}</math>
- \displaystyle \dfrac{x-x^2}{\sqrt{3}}\quad is written <math>\dfrac{x-x^2}{\sqrt{3}}</math>
- \displaystyle \dfrac{x}{x+\dfrac{1}{x}}\quad is written <math>\dfrac{x}{x+\dfrac{1}{x}}</math>
- \displaystyle x_{1,2}=-\dfrac{p}{2}\pm\sqrt{\left(\dfrac{p}{2}\right)^2-q}\quad is written <math>x_{1,2}=-\dfrac{p}{2}\pm\sqrt{\left(\dfrac{p}{2}\right)^2-q}</math>
How to avoid common mistakes
One of the most common mistakes when editing math in the wiki is to forget the start <math> tag and the end </math> tag.
Remember also to start commands with a backslash (\) and to add a space after the commands (unless they are followed immediately by a new command).
Another frequent mistake is to use an asterisk (*) instead of a proper multiplication sign \displaystyle \times (\times in TeX).
Example 5
LaTeX | Result | |
| sin x | \displaystyle sin x |
| \sinx | Error |
| \sin x | \displaystyle \sin x |
| 4*3 | \displaystyle 4*3 |
| 4\times 3 | \displaystyle 4\times 3 |
| a\times b | \displaystyle a\times b |
| ab | \displaystyle ab |
Superscripts and subscripts
When writing superscripts, such as exponents, you use ^, and to write subscripts you use _. If the super- or subscript consists of more than one symbol it must be enclosed with braces {}.
A special kind of superscript is the degree sign (°) which is written as ^{\circ}.
Example 6
LaTeX | Result | |
| a2 | \displaystyle a2 |
| a^2 | \displaystyle a^2 |
| x1 | \displaystyle x1 |
| x_1 | \displaystyle x_1 |
| a^22 | \displaystyle a^22 |
| a^{22} | \displaystyle a^{22} |
| 30^{o} | \displaystyle 30^{o} |
| 30^{0} | \displaystyle 30^{0} |
| 30^{\circ} | \displaystyle 30^{\circ} |
Delimiters
In more complex expressions you need to make sure to balance each opening parenthesis ( with a closing parenthesis ).
A pair of parenthesis that delimits a tall expression should be as large as the expression. You should therefore prefix the opening parenthesis with \left and the closing parenthesis with \right to get a pair of extensible parentheses that adjust its height to the expression.
Note also that braces, {}, and not parentheses, (), are used to delimit arguments (input values) of commands such as \sqrt and \frac.
Example 7
LaTeX | Result | |
| (1-(1-x) | \displaystyle (1-(1-x) |
| (1-(1-x)) | \displaystyle (1-(1-x)) |
| (\dfrac{a}{b}+c) | \displaystyle (\dfrac{a}{b}+c) |
| \left(\dfrac{a}{b}+c\right) | \displaystyle \left(\dfrac{a}{b}+c\right) |
| \frac(1)(2) | \displaystyle \tfrac(1)(2) |
| \frac{1}{2} | \displaystyle \tfrac{1}{2} |
| \sqrt(a+b) | \displaystyle \sqrt(a+b) |
| \sqrt{(a+b)} | \displaystyle \sqrt{(a+b)} |
| \sqrt{a+b} | \displaystyle \sqrt{a+b} |
Fractions
As a rule of thumb you should write fractions where the numerator and denominator consist only of a few digits as a small fraction (i.e. with \frac), while other fractions should be large (i.e. with \dfrac).
If an exponent or index contains a fraction then that fraction should be written in a slashed form (e.g. \displaystyle 5/2 instead of \displaystyle \tfrac{5}{2}) to enhance the legibility.
Example 8
LaTeX | Result | |
| \dfrac{1}{2} | \displaystyle \dfrac{1}{2} |
| \frac{1}{2} | \displaystyle \tfrac{1}{2} |
| ||
| \frac{a}{b} | \displaystyle \tfrac{a}{b} |
| \dfrac{a}{b} | \displaystyle \dfrac{a}{b} |
| \frac{\sqrt{3}}{2} | \displaystyle \tfrac{\sqrt{3}}{2} |
| \dfrac{\sqrt{3}}{2} | \displaystyle \dfrac{\sqrt{3}}{2} |
| a^{\frac{1}{2}} | \displaystyle a^{\frac{1}{2}} |
| a^{1/2} | \displaystyle a^{1/2} |
Study advice
A tip is to try out your maths formulas in the forum or in the wiki where you work on your individual assignment.
Useful web sites
- A more thorough list of LaTeX maths commands can be found on Wikipedia's help page
- Two more thorough texts on LaTeX maths can be found in a chapter of the book The LaTeX Companion and a text by Herbert Voss.
- If you want to know more about LaTeX you can visit these sites: Wikipedia, The not so Short Introduction to LaTeX and LaTeX Wikibook.
- The actual implementation of LaTeX math that is used in the wiki is jsMath.