The rare celestial event is expected to sweep across the southern United States, with the extreme southern tip of Texas getting front-row seats to totality, the brief period when the Moon completely blocks the Sun. There’s just one catch: the wait will be a long one.
A total solar eclipse occurs when the Moon passes directly between Earth and the Sun, fully covering the Sun’s bright face and casting a shadow onto Earth. For people inside the narrow path of totality, daylight briefly fades into twilight, and the Sun’s outer atmosphere, known as the corona, becomes visible, weather permitting. It is also the only type of eclipse during which viewers can briefly remove their eclipse glasses once the Sun is completely covered.
The last total solar eclipse visible in Texas occurred on April 8, 2024, marking the first time the path of totality crossed the state in 146 years. The previous total eclipse to cross Texas took place on July 29, 1878.
Unlike the 2024 eclipse, which carved a wide path through cities, including Dallas, Fort Worth, Austin and San Antonio, the 2078 eclipse will be limited to the Rio Grande Valley before moving over the Gulf of Mexico and into the Southeast. Cameron and Hidalgo counties are expected to see the most significant coverage, including Brownsville, McAllen, Harlingen and South Padre Island.
After leaving Texas, the Moon’s shadow will continue across the Gulf of Mexico before reaching states including Louisiana, Mississippi, Alabama and Georgia.
Texans will not have to wait until 2078 for another major eclipse event. On Aug. 13, 2045, the path of totality for another total solar eclipse will briefly clip the northeastern corner of the Texas Panhandle, though most of the state, including Houston and Dallas, will only experience a partial eclipse.
A partial solar eclipse occurs when the Sun, Moon and Earth are not perfectly aligned, causing only part of the Sun to appear covered.
Houston is also expected to see an annular solar eclipse on Nov. 15, 2077. During an annular eclipse, the Moon appears slightly smaller in the sky and does not fully cover the Sun, creating a bright “ring of fire” around the Moon’s silhouette.