Real Time Solar System.

Canada · 43.65°, -79.38°

Tonight from Toronto

Dark from 20:36 to 06:03. Up and worth looking at: Saturn, Mars, Jupiter.

All times are local to Toronto (America/Toronto), for the night of . Rebuilt hourly.

Visible without a telescope

Sorted by how high each one climbs while the sky is dark. Anything below about ten degrees is being seen through too much atmosphere to be worth it, so it is left out.

PlanetRisesHighestHow highSetsBrightness
Saturn21:4403:4149°10:12mag 0.4
Mars02:0006:0341°17:24mag 1.3
Jupiter04:4806:0312°19:14mag -1.8

Up, but you will need optics

These are well placed tonight and too faint to find by eye — Uranus sits at the edge of naked-eye visibility only under genuinely dark skies, and Neptune never reaches it. Both need binoculars at minimum and a chart to tell them from field stars.

PlanetHighestHow highBrightness
Uranus06:0363°mag 5.7
Neptune03:4146°mag 7.8

Low but present, if you have a clear horizon: Venus (9°).

Sun and darkness

Sunset
20:06
Civil dusk
20:36
Fully dark
21:52
Sunrise
06:33

The Moon

Waxing gibbous, 90% lit. It rises at 18:35 and sets at 03:35. At this phase it washes out everything faint, so it is a night for planets rather than galaxies.

NaN km away. Phase calendar.

Next solar eclipse from here

Seen from Toronto, the eclipse of 26 January 2028 will be partial, covering 1% of the Sun at maximum. That happens at 09:53 local time, with the Sun 18° above the horizon.

Begins 09:23, ends 10:23. The same eclipse looks entirely different a few hundred kilometres away — this is the view from these coordinates, not a general forecast. All eclipses.

Why this page differs from the next town over

Rise and set times shift by about four minutes for every degree of longitude, so a place a hundred kilometres east sees the same sky roughly six minutes earlier. Latitude matters more: it decides how high anything climbs. From 44°N, an object on the celestial equator tops out at 46° — which is why the planets look so different from Reykjavík and Nairobi.

Computed from VSOP87 and an ELP-derived lunar theory, accurate to within one arcminute. Watch it move in the live simulation, or pick another place.