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  2. File:A hexidecimal multiplication table.svg - Wikipedia

    en.wikipedia.org/wiki/File:A_hexidecimal...

    This image is a derivative work of the following images: File:Hexidecimal_Multiplication_Table.png licensed with Cc-by-sa-3.0-migrated-with-disclaimers, GFDL-en 2007-09-29T22:22:05Z Sopoforic 561x561 (6883 Bytes) optimized with optipng; 2006-09-26T13:23:56Z Reignerok 561x561 (25903 Bytes) I fix some errors

  3. File:Hexadecimal multiplication table.svg - Wikipedia

    en.wikipedia.org/wiki/File:Hexadecimal...

    However, it consists purely or largely of information which is better suited to representation in wikitext (possibly using MediaWiki's special syntax for tables, math, or music). This will make the information easier to edit, as well as make it accessible to users of screen readers and text-based browsers.

  4. Multiplication table - Wikipedia

    en.wikipedia.org/wiki/Multiplication_table

    Multiplication table from 1 to 10 drawn to scale with the upper-right half labeled with prime factorisations In mathematics , a multiplication table (sometimes, less formally, a times table ) is a mathematical table used to define a multiplication operation for an algebraic system.

  5. File:Multiplication chart.svg - Wikipedia

    en.wikipedia.org/wiki/File:Multiplication_chart.svg

    Other resolutions: 296 × 240 pixels | 591 × 480 pixels | 946 × 768 pixels | 1,262 × 1,024 pixels | 2,523 × 2,048 pixels. Original file (SVG file, nominally 685 × 556 pixels, file size: 58 KB) This is a file from the Wikimedia Commons .

  6. Napier's bones - Wikipedia

    en.wikipedia.org/wiki/Napier's_bones

    If the tables are held on single-sided rods, 40 rods are needed in order to multiply 4-digit numbers – since numbers may have repeated digits, four copies of the multiplication table for each of the digits 0 to 9 are needed. If square rods are used, the 40 multiplication tables can be inscribed on 10 rods.

  7. Grid method multiplication - Wikipedia

    en.wikipedia.org/wiki/Grid_method_multiplication

    so 3 × 17 = 30 + 21 = 51. This is the "grid" or "boxes" structure which gives the multiplication method its name. Faced with a slightly larger multiplication, such as 34 × 13, pupils may initially be encouraged to also break this into tens. So, expanding 34 as 10 + 10 + 10 + 4 and 13 as 10 + 3, the product 34 × 13 might be represented: