Close approach of the Moon and Mars

Dominic Ford, Editor
From the Appulses feed

Tags: Appulse

The Moon and Mars will make a close approach, passing within 3°52' of each other. The Moon will be 26 days old.

From Cambridge , the pair will be visible in the dawn sky, rising at 04:01 (EST) – 3 hours and 11 minutes before the Sun – and reaching an altitude of 24° above the south-eastern horizon before fading from view as dawn breaks at around 06:23.

The Moon will be at mag -10.1; and Mars will be at mag 1.8. Both objects will lie in the constellation Virgo.

They will be too widely separated to fit within the field of view of a telescope, but will be visible to the naked eye or through a pair of binoculars.

At around the same time, the pair will also share the same right ascension – called a conjunction.

A graph of the angular separation between the Moon and Mars around the time of closest approach is available here.

The positions of the pair at the moment of closest approach will be as follows:

Object Right Ascension Declination Constellation Magnitude Angular Size
The Moon 11h57m20s 2°34'S Virgo -10.1 29'40"3
Mars 12h02m20s 1°05'N Virgo 1.8 4"0

The coordinates above are given in J2000.0. The pair will be at an angular separation of 37° from the Sun, which is in Virgo at this time of year.

The sky on 30 Oct 2032

The sky on 30 October 2032
Sunrise
07:12
Sunset
17:39
Twilight ends
19:14
Twilight begins
05:37


Waning Crescent

7%

26 days old

Planets
Rise Culm. Set
Mercury 09:18 13:51 18:24
Venus 10:36 15:02 19:28
Moon 03:41 09:46 15:45
Mars 04:01 10:08 16:15
Jupiter 13:13 17:52 22:30
Saturn 21:04 04:36 12:07
All times shown in EDT.

Source

The circumstances of this event were computed using the DE430 planetary ephemeris published by the Jet Propulsion Laboratory (JPL).

This event was automatically generated by searching the ephemeris for planetary alignments which are of interest to amateur astronomers, and the text above was generated based on an estimate of your location.

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Image credit

The Moon in conjunction with Venus and Jupiter, with the Very Large Telescope in the foreground. Image © Y. Beletsky, ESO, 2009.

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