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  2. Scientific notation - Wikipedia

    en.wikipedia.org/wiki/Scientific_notation

    Converting a number from scientific notation to decimal notation, first remove the × 10 n on the end, then shift the decimal separator n digits to the right (positive n) or left (negative n). The number 1.2304 × 10 6 would have its decimal separator shifted 6 digits to the right and become 1,230,400 , while −4.0321 × 10 −3 would have its ...

  3. Template:Convert - Wikipedia

    en.wikipedia.org/wiki/Template:Convert

    With {{convert}}, the input can be in e-notation such as 12.3e4. This value is displayed as a power of ten, and the output is displayed in scientific notation, except that an output value satisfying 0.01 <= v < 1000 is shown as a normal number. In addition, if the output value is 1000 and sigfig=4 is used, the value is displayed as a normal number.

  4. Template:Scinote - Wikipedia

    en.wikipedia.org/wiki/Template:Scinote

    This template converts a decimal expression into scientific notation. e.g. {{scinote|12345}} produces: 1.2345 × 10 ^ 4. To round to a given number of significant figures, specify this number as the second unnamed parameter: e.g. {{scinote|12345|3}} produces: 1.23 × 10 ^ 4. For engineering notation, set |fn=eng:

  5. Wikipedia:Manual of Style/Dates and numbers - Wikipedia

    en.wikipedia.org/wiki/Wikipedia:Manual_of_Style/...

    Scientific notation always has a single nonzero digit to the left of the point: not 60.22 × 10 22, but 6.022 × 10 23. Engineering notation is similar, but with the exponent adjusted to a multiple of three: 602.2 × 10 21. Avoid mixing scientific and engineering notations: A 2.23 × 10 2 m 2 region covered by 234.0 × 10 6 grains of sand.

  6. IEEE 754 - Wikipedia

    en.wikipedia.org/wiki/IEEE_754

    Its integer part is the largest exponent shown on the output of a value in scientific notation with one leading digit in the significand before the decimal point (e.g. 1.698·10 38 is near the largest value in binary32, 9.999999·10 96 is the largest value in decimal32).

  7. cis (mathematics) - Wikipedia

    en.wikipedia.org/wiki/Cis_(mathematics)

    The cis notation is convenient for math students whose knowledge of trigonometry and complex numbers permit this notation, but whose conceptual understanding does not yet permit the notation e ix. The usual proof that cis x = e ix requires calculus, which the student may not have studied before encountering the expression cos x + i sin x.

  8. Engineering notation - Wikipedia

    en.wikipedia.org/wiki/Engineering_notation

    Engineering notation or engineering form (also technical notation) is a version of scientific notation in which the exponent of ten is always selected to be divisible by three to match the common metric prefixes, i.e. scientific notation that aligns with powers of a thousand, for example, 531×10 3 instead of 5.31×10 5 (but on calculator displays written without the ×10 to save space).

  9. List of duplicating processes - Wikipedia

    en.wikipedia.org/wiki/List_of_duplicating_processes

    Manifold stylographic writer, using early "carbonic paper" Letter copying book process; Mechanical processes Tracing to make accurate hand-drawn copies; Pantograph, manual device for making drawn copies without tracing, can also enlarge or reduce; Printmaking, which includes engraving and etching. Relief printing including woodcut