as an asteroid approaches earth it is slug around the planet off into a new path through solar system what might happen to the asteroid pick three

1. It spirals towards the sun
2. It keeps going past Pluto and out into space
3. It slows down significantly as it passes earth
4. It enters a highly elliptical orbit around earth
5.it enters an elliptical orbit around the sun
6. It enters an oddly shaped orbit about the sun

From the given options, the three possible outcomes for the asteroid as it is slung around the planet off into a new path through the solar system are:

1. It keeps going past Pluto and out into space.
2. It enters an elliptical orbit around the sun.
3. It enters an oddly shaped orbit about the sun.

Based on the given options, here are three possible outcomes for the asteroid as it approaches Earth:

1. It keeps going past Pluto and out into space: The gravitational pull of Earth might not be strong enough to keep the asteroid in orbit, causing it to slingshot past Pluto and continue its journey into space.
2. It enters an elliptical orbit around the sun: Depending on the trajectory and speed, the asteroid may enter an elliptical orbit around the sun, revolving between the orbits of different planets.
3. It enters an oddly shaped orbit about the sun: If the asteroid encounters gravitational disturbances from other celestial bodies during its flyby of Earth, its new path through the solar system could result in an irregular or "oddly shaped" orbit around the sun.

To determine what might happen to an asteroid as it approaches Earth and gets slung around the planet, we can consider the laws of physics and the dynamics of the solar system. Here are three possible outcomes:

1. It keeps going past Pluto and out into space: When the asteroid gets slung around Earth, it might gain enough energy and velocity to escape the gravitational pull of the Sun. In this scenario, the asteroid would continue its journey through the solar system, possibly going past Pluto and further into space.

2. It enters an elliptical orbit around the Sun: Depending on the initial speed and angle of approach, the asteroid could end up in a new elliptical orbit around the Sun. This means that instead of the asteroid following a circular path, it would be on an elongated, oval-shaped orbit around the Sun.

3. It slows down significantly as it passes Earth: As the asteroid approaches Earth, it experiences the gravitational pull from our planet. Depending on its trajectory and proximity, this gravitational interaction could cause the asteroid to decelerate significantly. However, it may not be enough to capture the asteroid into a stable orbit, and it could continue its journey through the solar system after the interaction with Earth.

Remember that these are just three possible outcomes, and the actual behavior of the asteroid would depend on numerous factors such as its size, composition, speed, angle of approach, and the exact details of the encounter with Earth.