The most responsible for keeping the moon in orbit around Earth is Earth's gravitational pull.
What is most responsible for keeping the moon in orbit around Earth?(1 point)
Responses
other planets' gravitational pull
other planets' gravitational pull
Sun's gravitational pull
Sun's gravitational pull
Earth's gravitational pull
Earth's gravitational pull
moon's gravitational pull
7 answers
A diagram shows how gravity on Earth works on an object located in different spots in a seaside community. Where is gravity between Earth and an object the strongest?(1 point)
Responses
when an object is at sea level
when an object is at sea level
when the object is on top of a telephone pole
when the object is on top of a telephone pole
when the object is on the highest branch of a pine tree
when the object is on the highest branch of a pine tree
when the object is on top of a nearby mountain
Responses
when an object is at sea level
when an object is at sea level
when the object is on top of a telephone pole
when the object is on top of a telephone pole
when the object is on the highest branch of a pine tree
when the object is on the highest branch of a pine tree
when the object is on top of a nearby mountain
Gravity between Earth and an object is the strongest when an object is at sea level. This is because gravity decreases with increasing altitude, so objects closer to the Earth's surface experience a stronger gravitational pull.
An orange falls off of a tree. Gravity is pulling the orange in which direction?(1 point)
Responses
toward the middle of the tree
toward the middle of the tree
toward the atmosphere of Earth
toward the atmosphere of Earth
toward the nearest branch
toward the nearest branch
toward the center of Earth
Responses
toward the middle of the tree
toward the middle of the tree
toward the atmosphere of Earth
toward the atmosphere of Earth
toward the nearest branch
toward the nearest branch
toward the center of Earth
Gravity is pulling the orange toward the center of Earth.
What prevents the planets in our solar system from floating away?(1 point)
Responses
moon's gravitational pull
moon's gravitational pull
planets' gravitational pull on one another
planets' gravitational pull on one another
Sun's gravitational pull
Sun's gravitational pull
Earth's gravitational pull
Responses
moon's gravitational pull
moon's gravitational pull
planets' gravitational pull on one another
planets' gravitational pull on one another
Sun's gravitational pull
Sun's gravitational pull
Earth's gravitational pull
What prevents the planets in our solar system from floating away is the Sun's gravitational pull.