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  2. Continued fraction - Wikipedia

    en.wikipedia.org/wiki/Continued_fraction

    The continued fraction representation for a real number is finite if and only if it is a rational number. In contrast, the decimal representation of a rational number may be finite, for example ⁠ 137 / 1600 ⁠ = 0.085625, or infinite with a repeating cycle, for example ⁠ 4 / 27 ⁠ = 0.148148148148...

  3. Decimal - Wikipedia

    en.wikipedia.org/wiki/Decimal

    The decimal numeral system (also called the base-ten positional numeral system and denary / ˈdiːnəri / [1] or decanary) is the standard system for denoting integer and non-integer numbers. It is the extension to non-integer numbers (decimal fractions) of the Hindu–Arabic numeral system. The way of denoting numbers in the decimal system is ...

  4. One half - Wikipedia

    en.wikipedia.org/wiki/One_half

    One half is a rational number that lies midway between nil and unity (which are the elementary additive and multiplicative identities) as the quotient of the first two non-zero integers, . It has two different decimal representations in base ten, the familiar and the recurring , with a similar pair of expansions in any even base; while in odd ...

  5. Duodecimal - Wikipedia

    en.wikipedia.org/wiki/Duodecimal

    Numeral systems. The duodecimal system, also known as base twelve or dozenal, is a positional numeral system using twelve as its base. In duodecimal, the number twelve is denoted "10", meaning 1 twelve and 0 units; in the decimal system, this number is instead written as "12" meaning 1 ten and 2 units, and the string "10" means ten.

  6. Balanced ternary - Wikipedia

    en.wikipedia.org/wiki/Balanced_ternary

    Some balanced ternary fractions have multiple representations too. For example, ⁠ 1 / 6 ⁠ = 0.1 𝖳 bal3 = 0.0 1 bal3. Certainly, in the decimal and binary, we may omit the rightmost trailing infinite 0s after the radix point and gain a representations of integer or terminating fraction.

  7. Golden ratio base - Wikipedia

    en.wikipedia.org/wiki/Golden_ratio_base

    For recurring decimals, the recurring part has been overlined: ⁠ 1 / 2 ⁠ ≈ 0. 010 φ ⁠ 1 / 3 ⁠ ≈ 0. 00101000 φ; √ 5 = 10.1 φ; 2 + ⁠ √ 5 / 13 ⁠ ≈ 10.01 0100010001010100010001000000 φ; The justification that a rational gives a recurring expansion is analogous to the equivalent proof for a base-n numeration system (n = 2,3 ...

  8. Significant figures - Wikipedia

    en.wikipedia.org/wiki/Significant_figures

    Zeros to the right of the last non-zero digit (trailing zeros) in a number with the decimal point are significant if they are within the measurement or reporting resolution. 1.200 has four significant figures (1, 2, 0, and 0) if they are allowed by the measurement resolution.

  9. Rounding - Wikipedia

    en.wikipedia.org/wiki/Rounding

    Approximating a fraction by a fractional decimal number: 5 / 3 1.6667: 4 decimal places: Approximating a fractional decimal number by one with fewer digits 2.1784: 2.18 2 decimal places Approximating a decimal integer by an integer with more trailing zeros 23217: 23200: 3 significant figures Approximating a large decimal integer using ...

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