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  2. List of intervals in 5-limit just intonation - Wikipedia

    en.wikipedia.org/wiki/List_of_intervals_in_5...

    The intervals of 5-limit just intonation (prime limit, not odd limit) are ratios involving only the powers of 2, 3, and 5. The fundamental intervals are the superparticular ratios 2/1 (the octave), 3/2 (the perfect fifth) and 5/4 (the major third). That is, the notes of the major triad are in the ratio 1:5/4:3/2 or 4:5:6.

  3. Sodium metabisulfite - Wikipedia

    en.wikipedia.org/wiki/Sodium_metabisulfite

    Sodium metabisulfite can be prepared by treating a solution of sodium hydroxide with sulfur dioxide. [3] When conducted in warm water, Na 2 SO 3 initially precipitates as a yellow solid. With more SO 2, the solid dissolves to give the disulfite, which crystallises upon cooling. [4] SO 2 + 2 NaOH → Na 2 SO 3 + H 2 O SO 2 + Na 2 SO 3 → Na 2 S ...

  4. Residual-resistance ratio - Wikipedia

    en.wikipedia.org/wiki/Residual-resistance_ratio

    Residual-resistivity ratio (also known as Residual-resistance ratio or just RRR) ... This page was last edited on 5 November 2024, at 08:39 (UTC).

  5. Interquartile range - Wikipedia

    en.wikipedia.org/wiki/Interquartile_range

    Upper 1.5*IQR whisker = Q 3 + 1.5 * IQR = 9 + 3 = 12. (If there is no data point at 12, then the highest point less than 12.) (If there is no data point at 12, then the highest point less than 12.) Pattern of latter two bullet points: If there are no data points at the true quartiles, use data points slightly "inland" (closer to the median ...

  6. Pauling's rules - Wikipedia

    en.wikipedia.org/wiki/Pauling's_rules

    An octahedron may then form with a radius ratio greater than or equal to 0.414, but as the ratio rises above 0.732, a cubic geometry becomes more stable. This explains why Na + in NaCl with a radius ratio of 0.55 has octahedral coordination, whereas Cs + in CsCl with a radius ratio of 0.93 has cubic coordination.

  7. Poisson's ratio - Wikipedia

    en.wikipedia.org/wiki/Poisson's_ratio

    The Poisson's ratio of a stable, isotropic, linear elastic material must be between −1.0 and +0.5 because of the requirement for Young's modulus, the shear modulus and bulk modulus to have positive values. [3] Most materials have Poisson's ratio values ranging between 0.0 and 0.5.