yes, if something is traveling in a straight line motion it will carry on going forever unless it comes into contact with friction, if you shoot a cannon high enough into the sky , it reaches a state of weightlessness due to air resistance (drag) and the universal acceleration of gravity, so basically it just keeps on going around the earth in its straight line as there is no friction to stop it and it is at just the right point in our atmosphere where the earths gravitational field is just strong enough to keep it where it is at its point of height, henceforth forming an orbit.
The moon does not fall to Earth because of its orbit and the force of gravity. The moon's speed and distance from Earth create a balance between the gravitational pull of the Earth and the moon's inertia, keeping it in a stable orbit.
Yes, an object in free fall still has inertia, which is its tendency to resist changes in its state of motion. In this case, the object's inertia keeps it moving at a constant velocity until acted upon by a force like gravity or air resistance.
The passengers fall forward when the driver applies brakes suddenly because of inertia. Inertia is the tendency of an object to resist changes in its state of motion. When the bus abruptly decelerates, the passengers continue moving forward due to their inertia, causing them to fall forward.
Passengers fall backward when a bus starts suddenly because of inertia. Inertia is the tendency of objects to resist changes in their state of motion. When the bus accelerates forward, the passengers' bodies want to stay at rest due to inertia, causing them to fall backward.
This is known as orbital motion, where a satellite's forward velocity allows it to maintain its orbit while being continuously pulled towards the center of the Earth by gravity. This delicate balance between inertia and gravity keeps the satellite in a stable path around the planet.
Gravity is the force that counteracts a planet's inertia and keeps it in its orbit. The gravitational force between the planet and the star it orbits causes the planet to continuously fall towards the star while simultaneously moving tangentially at a sufficient speed to remain in a stable orbit.
The moon does not fall to Earth because of its orbit and the force of gravity. The moon's speed and distance from Earth create a balance between the gravitational pull of the Earth and the moon's inertia, keeping it in a stable orbit.
Inertia of Motion
Mass and inertia.
Gravity is what keeps a planet in orbit around the sun. The gravitational pull between the planet and the sun causes the planet to continuously fall towards the sun, but its forward motion prevents it from getting any closer and keeps it in a stable orbit.
Gravity is what keeps them in attraction. The force of Gravity is determined by the mass and distance between two or more objects. The other force that keeps the moon in orbit is the moon's inertia. Without inertia the moon would simply fall into Earth; because of Gravity, the same would happen with the planets and the sun.
Inertia is the resistance of an object to change it state of rest or motion. when you are standing in a moving bus and it suddenly stops you tend to fall backward. This is due to inertia of motion. Body resists the change in motion due to which u fall backward. so inertia exactly opposes or resists your change in motion.
Yes they do.
Satellites orbit the earth for a few years then fall to earth however they are directed to fall to the sea
It is falling through space even though moving around the sun. The inertia of the "fall" and the pull of the gravity of the sun, make the earth go around the sun in an ecliptic orbit.
Yes, an object in free fall still has inertia, which is its tendency to resist changes in its state of motion. In this case, the object's inertia keeps it moving at a constant velocity until acted upon by a force like gravity or air resistance.
The moons stay in orbit around Jupiter due to the planet's strong gravitational pull. This gravitational force keeps the moons in check and prevents them from moving away into space. They orbit around Jupiter because of the balance between their inertia and the gravitational force pulling them towards the planet.