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A note on Dhuhr

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Revision as of 07:35, 3 March 2009

The time for Zuhr has been defined in several ways in the literature:

  1. When the Sun begins to decline (Zawaal) after reaching its highest point in the sky.
  2. When the shadow of an indicator (a vertical stick) reaches its minimum length and starts to increase.
  3. When sun's disk comes out of the zenith line, which is a line between the observer and the center of the Sun when it is at the highest point.

The first and the second definitions are equivalent, as the shadow length has a direct correlation to the Sun's elevation in the sky via the following formula:

Shadow Length = Object Height × cot(Sun Angle).

The Sun's angle is a continuous function over time and has only one peak point (the point at which the tangent is zero) which is realized exactly at noon (mid-day). Therefore, according to the first two definitions, Zuhr time is immediately after the mid-day.

The third definition is slightly different from the previous two definitions. By this definition, Zuhr time begins after the Sun passes its zenith. To calculate how much it takes for the Sun to pass its zenith line, we need the following information:

  • Sun-Earth distance (d)
    • Minimum: 147,098,074 km
    • Maximum: 152,097,701 km
  • Sun radius (r):
    • Average: 695,500 km

Using the above data, the time t for passing the Sun's disc from its zenith can be computed by the following formula:

t = arctan(r/d) / 2π × 24 × 60 × 60.

The maximum time obtained by the above formula (which corresponds to the minimum Sun-Earth distance) is 65.0 seconds. Therefore, it takes approximately 1 minutes until Sun's disk comes out of its zenith that should be considered into consideration for calculating Zuhr, if ones used the third definition.

Conclusion

There are three definitions for the Zuhr time as mentioned above. According to the first two definitions, Zuhr = midday, and according to the third definition, Zuhr = midday + 1.1 minute.

References

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