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Display information for equation id:math.265010.29 on revision:265010

* Page found: Cartesian product (eq math.265010.29)

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Occurrences on the following pages:

Hash: 417c9d911c37aaf5956257aec38df5db

TeX (original user input):

\prod_{i \in I} X_i = \prod_{i \in I} X

TeX (checked):

\prod _{i\in I}X_{i}=\prod _{i\in I}X

LaTeXML (experimental; uses MathML) rendering

MathML (3.978 KB / 786 B) :

i I X i = i I X subscript product 𝑖 𝐼 subscript 𝑋 𝑖 subscript product 𝑖 𝐼 𝑋 {\displaystyle\prod_{{i\in I}}X_{i}=\prod_{{i\in I}}X}
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SVG (5.762 KB / 2.112 KB) :

product Underscript i element-of upper I Endscripts upper X Subscript i Baseline equals product Underscript i element-of upper I Endscripts upper X

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: product(X[i], i in I)= product(X, i in I)

Information about the conversion process:

I: You use a typical letter for a constant [the imaginary unit == the principal square root of -1].

We keep it like it is! But you should know that Maple uses I for this constant.

If you want to translate it as a constant, use the corresponding DLMF macro \iunit


i: the imaginary unit == the principal square root of -1 was translated to: i


Translation to Mathematica

In Mathematica: Product[Subscript[X, i], {i, I}]= Product[X, {i, I}]

Information about the conversion process:

I: You use a typical letter for a constant [the imaginary unit == the principal square root of -1].

We keep it like it is! But you should know that Mathematica uses I for this constant.

If you want to translate it as a constant, use the corresponding DLMF macro \iunit


i: the imaginary unit == the principal square root of -1 was translated to: i


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