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@@ -298,6 +298,13 b' class HTML(DisplayObject):' | |||
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298 | 298 | class Math(DisplayObject): |
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299 | 299 | |
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300 | 300 | def _repr_latex_(self): |
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301 | s = self.data.strip('$') | |
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302 | return "$$%s$$" % s | |
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303 | ||
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304 | ||
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305 | class Latex(DisplayObject): | |
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306 | ||
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307 | def _repr_latex_(self): | |
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301 | 308 | return self.data |
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302 | 309 | |
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303 | 310 |
@@ -524,7 +524,8 b' class LatexFormatter(BaseFormatter):' | |||
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524 | 524 | this. |
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525 | 525 | |
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526 | 526 | The return value of this formatter should be a valid LaTeX equation, |
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527 |
enclosed in either ```$``` |
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527 | enclosed in either ```$```, ```$$``` or another LaTeX equation | |
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528 | environment. | |
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528 | 529 | """ |
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529 | 530 | format_type = Unicode('text/latex') |
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530 | 531 |
@@ -855,7 +855,7 b'' | |||
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855 | 855 | "Note that this is *different* from the above examples. Above we were typing mathematical expressions", |
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856 | 856 | "in Markdown cells (along with normal text) and letting the browser render them; now we are displaying", |
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857 | 857 | "the output of a Python computation as a LaTeX expression wrapped by the `Math()` object so the browser", |
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858 | "renders it:" | |
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858 | "renders it. The `Math` object will add the needed LaTeX delimiters (`$$`) if they are not provided:" | |
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859 | 859 | ] |
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860 | 860 | }, |
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861 | 861 | { |
@@ -863,22 +863,59 b'' | |||
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863 | 863 | "collapsed": false, |
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864 | 864 | "input": [ |
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865 | 865 | "from IPython.core.display import Math", |
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866 |
"Math(r' |
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866 | "Math(r'F(k) = \\int_{-\\infty}^{\\infty} f(x) e^{2\\pi i k} dx')" | |
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867 | 867 | ], |
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868 | 868 | "language": "python", |
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869 | 869 | "outputs": [ |
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870 | 870 | { |
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871 | 871 | "latex": [ |
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872 | "$F(k) = \\int_{-\\infty}^{\\infty} f(x) e^{2\\pi i k} dx$" | |
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872 | "$$F(k) = \\int_{-\\infty}^{\\infty} f(x) e^{2\\pi i k} dx$$" | |
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873 | 873 | ], |
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874 | 874 | "output_type": "pyout", |
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875 |
"prompt_number": |
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875 | "prompt_number": 1, | |
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876 | 876 | "text": [ |
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877 |
" |
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877 | "<IPython.core.display.Math object at 0x10ad35e90>" | |
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878 | 878 | ] |
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879 | 879 | } |
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880 | 880 | ], |
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881 |
"prompt_number": |
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881 | "prompt_number": 1 | |
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882 | }, | |
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883 | { | |
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884 | "cell_type": "markdown", | |
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885 | "source": [ | |
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886 | "With the `Latex` class, you have to include the delimiters yourself. This allows you to use other LaTeX modes such as `eqnarray`:" | |
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887 | ] | |
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888 | }, | |
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889 | { | |
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890 | "cell_type": "code", | |
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891 | "collapsed": false, | |
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892 | "input": [ | |
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893 | "from IPython.core.display import Latex", | |
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894 | "Latex(r\"\"\"\\begin{eqnarray}", | |
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895 | "\\nabla \\times \\vec{\\mathbf{B}} -\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{E}}}{\\partial t} & = \\frac{4\\pi}{c}\\vec{\\mathbf{j}} \\\\", | |
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896 | "\\nabla \\cdot \\vec{\\mathbf{E}} & = 4 \\pi \\rho \\\\", | |
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897 | "\\nabla \\times \\vec{\\mathbf{E}}\\, +\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{B}}}{\\partial t} & = \\vec{\\mathbf{0}} \\\\", | |
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898 | "\\nabla \\cdot \\vec{\\mathbf{B}} & = 0 ", | |
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899 | "\\end{eqnarray}\"\"\")" | |
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900 | ], | |
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901 | "language": "python", | |
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902 | "outputs": [ | |
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903 | { | |
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904 | "latex": [ | |
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905 | "\\begin{eqnarray}", | |
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906 | "\\nabla \\times \\vec{\\mathbf{B}} -\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{E}}}{\\partial t} & = \\frac{4\\pi}{c}\\vec{\\mathbf{j}} \\\\ \\nabla \\cdot \\vec{\\mathbf{E}} & = 4 \\pi \\rho \\\\", | |
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907 | "\\nabla \\times \\vec{\\mathbf{E}}\\, +\\, \\frac1c\\, \\frac{\\partial\\vec{\\mathbf{B}}}{\\partial t} & = \\vec{\\mathbf{0}} \\\\", | |
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908 | "\\nabla \\cdot \\vec{\\mathbf{B}} & = 0 ", | |
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909 | "\\end{eqnarray}" | |
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910 | ], | |
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911 | "output_type": "pyout", | |
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912 | "prompt_number": 5, | |
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913 | "text": [ | |
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914 | "<IPython.core.display.Latex object at 0x109a38790>" | |
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915 | ] | |
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916 | } | |
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917 | ], | |
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918 | "prompt_number": 5 | |
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882 | 919 | }, |
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883 | 920 | { |
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884 | 921 | "cell_type": "markdown", |
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