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  2. Tithi - Wikipedia

    en.wikipedia.org/wiki/Tithi

    The astronomical basis of the Hindu lunar day. In Vedic timekeeping, a tithi is a "duration of two faces of moon that is observed from earth", known as milа̄lyа̄ (Newar: 𑐩𑐶𑐮𑐵𑐮𑑂𑐫𑐵𑑅, मिलाल्याः) in Nepal Bhasa, [1] or the time it takes for the longitudinal angle between the Moon and the Sun to increase by 12°.

  3. Astronomical basis of the Hindu calendar - Wikipedia

    en.wikipedia.org/wiki/Astronomical_basis_of_the...

    Animation that illustrates cāndra māna tithi. A tithi (Sanskrit: तिथि) is the time taken by the Moon to advance 12° with respect to the Earth-Sun axis. [6] In other words a tithi is the time taken for the Moon's elongation (on the ecliptic plane) to increase by 12°. A tithi is one fifteenth of a pakṣa and one thirtieth of a ...

  4. Panchangam - Wikipedia

    en.wikipedia.org/wiki/Panchangam

    Tithi - Ending Moment (EM) of elongation of the Moon, the lunar day, the angular relationship between Sun and Moon ( Apparent Moon minus Apparent Sun). One Tithi equals 12 degree difference between Moon and Sun. Nakshatram - EM of asterism of the day, that is, the stellar mansion in which Moon is located for an observer at the center of the ...

  5. Hindu calendar - Wikipedia

    en.wikipedia.org/wiki/Hindu_calendar

    A karaṇa is half of a tithi. To be precise, a karaṇa is the time required for the angular distance between the Sun and the Moon to increase in steps of 6° starting from 0°. (Compare with the definition of a tithi.) Since the tithis are 30 in number, and since 1 tithi = 2 karaṇas, therefore one would logically expect there to be 60 ...

  6. Ekadashi - Wikipedia

    en.wikipedia.org/wiki/Ekadashi

    Each arc measures one lunar day, called a tithi. The time it takes the moon to traverse a particular distance is the length of that lunar day. Ekadashi refers to the 11th tithi, or lunar day. The eleventh tithi corresponds to a precise angle and phase of the waxing and waning moon. In the bright half of the lunar month, the moon will be exactly ...

  7. Rama Navami - Wikipedia

    en.wikipedia.org/wiki/Rama_Navami

    A lunar day is uniquely identified by three calendar elements: māsa (lunar month), pakṣa (lunar fortnight) and tithi (lunar day). Furthermore, when specifying the masa, one of two traditions are applicable, viz. amānta / pūrṇimānta. If a festival falls in the waning phase of the moon, these two traditions identify the same lunar day as ...

  8. Vasant Panchami - Wikipedia

    en.wikipedia.org/wiki/Vasant_Panchami

    A lunar day is uniquely identified by three calendar elements: māsa (lunar month), pakṣa (lunar fortnight) and tithi (lunar day). Furthermore, when specifying the masa, one of two traditions are applicable, viz. amānta / pūrṇimānta. If a festival falls in the waning phase of the moon, these two traditions identify the same lunar day as ...

  9. Drigganita - Wikipedia

    en.wikipedia.org/wiki/Drigganita

    Drigganita (दृग्गणित; IAST: dṛggaṇita, from dṛk-gaṇita, "sight-calculation"), also called the Drik system, [1] is a system of astronomical computations followed by several traditional astronomers, astrologers and almanac makers in India. In this system the computations are performed using certain basic constants derived ...