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Display information for equation id:math.250721.9 on revision:250721

* Page found: Wedderburn's little theorem (eq math.250721.9)

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Occurrences on the following pages:

Hash: 58b308f83237e648851c2e4affd313d0

TeX (original user input):

\Phi_n(q)

TeX (checked):

\Phi _{n}(q)

LaTeXML (experimental; uses MathML) rendering

MathML (1.475 KB / 491 B) :

Φ n ( q ) subscript Φ 𝑛 𝑞 {\displaystyle\Phi_{n}(q)}
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        <mi mathvariant="normal" id="p1.1.m1.1.1" xref="p1.1.m1.1.1.cmml">Φ</mi>
        <mi id="p1.1.m1.1.2.1" xref="p1.1.m1.1.2.1.cmml">n</mi>
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        <mo stretchy="false" id="p1.1.m1.1.3" xref="p1.1.m1.1.6.cmml">(</mo>
        <mi id="p1.1.m1.1.4" xref="p1.1.m1.1.4.cmml">q</mi>
        <mo stretchy="false" id="p1.1.m1.1.5" xref="p1.1.m1.1.6.cmml">)</mo>
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        <ci id="p1.1.m1.1.4.cmml" xref="p1.1.m1.1.4">𝑞</ci>
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    <annotation encoding="application/x-tex" id="p1.1.m1.1c">{\displaystyle\Phi_{n}(q)}</annotation>
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</math>

SVG (3.832 KB / 1.741 KB) :

normal upper Phi Subscript n Baseline times left-parenthesis q right-parenthesis

MathML with SVG or PNG fallback (recommended for modern browsers and accessibility tools) rendering

MathML (0 B / 8 B) :

SVG image empty. Force Re-Rendering

SVG (0 B / 8 B) :


PNG (0 B / 8 B) :


Translations to Computer Algebra Systems

Translation to Maple

In Maple: Phi[n]*(q)

Information about the conversion process:

\Phi: Could be the golden ratio conjugate.

But this system don't know how to translate it as a constant. It was translated as a general letter.



Translation to Mathematica

In Mathematica: Subscript[\[CapitalPhi], n]*(q)

Information about the conversion process:

\Phi: Could be the golden ratio conjugate.

But this system don't know how to translate it as a constant. It was translated as a general letter.



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