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  2. Consecutive fifths - Wikipedia

    en.wikipedia.org/wiki/Consecutive_fifths

    The second hidden fifth of the pair is obtained by making the upward maneuver a mirror image of the downward maneuver. These direct fifths are preferable to other less acceptable voice-leading alternatives including doubling the third scale degree at the octave, and limiting the low instrument to the use of only the first and fifth scale degrees.

  3. Fourth, fifth, and sixth derivatives of position - Wikipedia

    en.wikipedia.org/wiki/Fourth,_fifth,_and_sixth...

    Snap, [6] or jounce, [2] is the fourth derivative of the position vector with respect to time, or the rate of change of the jerk with respect to time. [4] Equivalently, it is the second derivative of acceleration or the third derivative of velocity, and is defined by any of the following equivalent expressions: = ȷ = = =.

  4. Heart sounds - Wikipedia

    en.wikipedia.org/wiki/Heart_sounds

    These are the first heart sound (S 1) and second heart sound (S 2), produced by the closing of the atrioventricular valves and semilunar valves, respectively. In addition to these normal sounds, a variety of other sounds may be present including heart murmurs , adventitious sounds , and gallop rhythms S 3 and S 4 .

  5. Overtone - Wikipedia

    en.wikipedia.org/wiki/Overtone

    F is the fundamental frequency; the third overtone is the third harmonic, 3F, and the fifth overtone is the fifth harmonic, 5F for such a pipe, which is a good model for a pan flute. An overtone is a partial (a "partial wave" or "constituent frequency") that can be either a harmonic partial (a harmonic ) other than the fundamental, or an ...

  6. Runge–Kutta–Fehlberg method - Wikipedia

    en.wikipedia.org/wiki/Runge–Kutta–Fehlberg...

    The first row of coefficients at the bottom of the table gives the fifth-order accurate method, and the second row gives the fourth-order accurate method. This shows the computational time in real time used during a 3-body simulation evolved with the Runge-Kutta-Fehlberg method.

  7. Interval (music) - Wikipedia

    en.wikipedia.org/wiki/Interval_(music)

    The size of an interval between two notes may be measured by the ratio of their frequencies.When a musical instrument is tuned using a just intonation tuning system, the size of the main intervals can be expressed by small-integer ratios, such as 1:1 (), 2:1 (), 5:3 (major sixth), 3:2 (perfect fifth), 4:3 (perfect fourth), 5:4 (major third), 6:5 (minor third).

  8. Circle of fifths - Wikipedia

    en.wikipedia.org/wiki/Circle_of_fifths

    The semitonal generator gives rise to the chromatic circle while the perfect fourth and perfect fifth give rise to the circle of fifths. In most other tunings, such as in 31 equal temperament , many more intervals can be used as the generator, and many more circles are possible as a result.

  9. Kyōiku kanji - Wikipedia

    en.wikipedia.org/wiki/Kyōiku_kanji

    The kyōiku kanji (教育漢字, literally "education kanji") are kanji which Japanese elementary school students should learn from first through sixth grade. [1] Also known as gakushū kanji (学習漢字, literally "learning kanji"), these kanji are listed on the Gakunenbetsu kanji haitō hyō (学年別漢字配当表(), literally "table of kanji by school year"), [2].

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