During an eclipse of the moon, the edge of Earth's shadow is always the arc of a circle. Only spheres casts circular shadows; a flat surface would not do so.
an eclipse is a evidence of the earth being in spherical shape is that it can figure it self...
Lunar, because the Earth's shadow on the moon is always round, so the Earth must be spherical (round as seen from any angle)
The curved shadow on the moon during a lunar eclipse is evidence of Earth's round shape. The Earth's shadow that falls on the moon is always curved because of the spherical shape of the Earth, which causes the shadow to appear rounded.
The curvature of the Earth's surface observed in photographs taken from high altitudes, such as from space, airplanes, and mountains, indicates a spherical shape. Additionally, the phenomenon of ships disappearing hull-first over the horizon as they sail away provides evidence of the Earth's curvature. The way the Earth's shadow moves across the Moon during a lunar eclipse also supports the spherical shape of the Earth.
The Earth isn't actually perfectly spherical. It is slightly flattened at the poles. To find evidence of Earth's round shape, pictures taken from space are good secondary data to provide evidence.
Circle because the earth gets the light from the sun makes a shadow of the earth wich is a movig circle in the satespheresinserlysamanthacarlinHightowertrail elm fourthgrade loves the planets
The spherical horizon position of the pore is consistent with the Earth being round. As we move away from the pore, the horizon continues to drop, indicating the Earth's curvature. This observation aligns with the spherical shape of the Earth, as confirmed by centuries of scientific evidence.
I'll offer some possibilities: The uniformity of gravity wherever you are on earth's surface; the agreement of observed times of sunrise and sunset, and other astronomical observations, with those predicted by our current models. There is also the data gathered and used for the mind-bogglingly accurate performance of GPS systems. If earth were not (very close to) spherical, this data would reveal it.
Ancient Greek philosopher Pythagoras is often credited with first proposing the idea of a spherical Earth around 500 BC, based on observations of the shape of the Earth's shadow during a lunar eclipse.
The Greek philosopher Pythagoras is often credited with being one of the first to propose that the Earth is spherical around 500 BC. However, it was the later work of scientists like Aristotle and Eratosthenes that provided more concrete evidence for the Earth's spherical shape.
Shadows. All eclipses are shadows. A lunar eclipse is the shadow of the Earth on the Moon. A solar eclipse is a shadow of the Moon on the Earth.
The existence of the horizon at sea, as a circle of radius proportional to altitude of view-point. (Sorry - I don't know the formula.) Mapping. Arial evidence from aircraft and now of course, spacecraft.