A bright orange light moving across the sky at a constant speed and then disappearing could be several things, such as a meteor or a satellite. It might also be an aircraft or a drone, particularly if it had navigation lights that appeared orange. If it exhibited unusual behavior or speed, some might speculate about extraterrestrial activity, but without more evidence, it's likely to have a conventional explanation.
If the bright light is moving across the sky, it could be a satellite or the International Space Station. If it appears to be a fixed point of light, it is likely a star or a planet like Venus.
It looks like an extremely bright star, though it isn't twinkling and is moving across the sky very fast.
The International Space Station (ISS) appears as a large, bright object moving across the sky. It often looks like a fast-moving star or plane without flashing lights, and its brightness can vary depending on its position relative to the Sun.
If the sun were to suddenly disappear, the Earth would continue traveling in a straight line at a constant velocity, moving off into space. Without the sun's gravitational pull, the planets would no longer orbit it, resulting in a drastic change in temperature and the eventual freezing of our planet.
You can identify the International Space Station (ISS) from Earth with the naked eye by looking for a fast-moving bright light steadily crossing the sky. ISS appears as a very bright star moving steadily across the sky, typically taking a few minutes to pass overhead. You can use websites or apps like spotthestation.nasa.gov to find out when and where to look for the ISS from your location.
The word is "stationary" for not moving, and "constant velocity" for moving at a constant speed in the same direction.
Velocity is Speed in a given direction. Moving at constant velocity is equivalent to say moving with a constant speed in a specified direction. So, moving at constant velocity implicitly means moving with constant speed.
determine if the momentum of an object moving in a circular path at constant speed is constant.
a "body" "moving body" an "object" is moving with constant velocity. [OR] a "body" is moving with constant velocity.
determine if the momentum of an object moving in a circular path at constant speed is constant.
If the bright light is moving across the sky, it could be a satellite or the International Space Station. If it appears to be a fixed point of light, it is likely a star or a planet like Venus.
It looks like an extremely bright star, though it isn't twinkling and is moving across the sky very fast.
Only if the direction is constant and the speed is constant.
If an object is moving in a circle with a constant speed, its acceleration is directed towards the center of the circle and is constant in magnitude. This acceleration is called centripetal acceleration and is required to keep the object moving in a circular path.
When the velocity of a moving object stays the same, it has a constant speed.
If the chair is moving at a constant velocity, the force of friction is equal and opposite to the force you are exerting on the chair. This is to maintain the equilibrium of forces acting on the chair.
When all forces are balanced, the object can either be moving at a constant velocity or be at rest. But because you asked for balanced forces on a moving object, it is moving at a constant velocity.