Earth's Gravity

Earth’s gravity is the attractive force produced by Earth’s mass, shaping the motion of objects near its surface and throughout the surrounding space. It follows Newton’s law of universal gravitation: the force between masses increases with their mass and decreases with the square of the distance between their centers, producing an average surface acceleration of about 9.8 m/s². This acceleration gives objects weight, causes unsupported objects to fall, and keeps the atmosphere, oceans, satellites, and the Moon in place. Studying Earth’s gravity supports investigations of free fall, projectile motion, orbits, tides, geophysics, and planetary structure.

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JoVE Core - Mechanical Engineering

Acceleration due to Gravity on Earth

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2023

Newton's second law is closely related to his first law of motion. It mathematically gives the cause-and-effect relationship between force and changes in motion. Newton's second law is quantitative and is used extensively to calculate what happens in situations involving a force. All external forces acting on a system add together to produce a net force Fnet. A larger net external force produces a larger acceleration. This acceleration is directly proportional to, and in the same direction as,...

Acceleration due to Gravity on Earth

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2023

According to Newton's law of gravitation, the gravitational force on a body is proportional to its mass. According to Newton's second law of motion, the acceleration produced by an external force is inversely proportional to the force. Hence, the acceleration of an object under an external force of gravitation is independent of its mass. The acceleration of an object close to the Earth, because of the Earth's gravitational pull, is called the acceleration due to gravity. It is always directed...

Variation in Acceleration due to Gravity near the Earth's Surface

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2023

An object's apparent weight is its weight measured by a spring balance at its location. It is different from its true weight, the force with which the Earth pulls it, because of the Earth's rotation. Mathematically, an object's apparent weight equals its true weight minus the centripetal force that keeps it in a circular motion along with the Earth's surface every 24 hours. The difference between the true and apparent weights is proportional to the square of the Earth's angular speed. Since the...

Responses to Gravity and Touch

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2020

Gravitropism: Plant Responses to Gravity Higher plants sense gravity using statocytes, cells found near the vascular tissue in shoots, and in the root cap columella in roots. Statocytes contain starch-filled organelles called statoliths. The statoliths settle, or sediment, at the bottom of the statocyte in the direction of gravity. Statolith sedimentation triggers a signaling cascade, resulting in the asymmetrical distribution of the plant hormone auxin across root and shoot tips. This...

Center of Gravity

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2025

The center of gravity (COG) of an object is the point where the object's total weight is considered to be concentrated. Knowing the location of the center of gravity is useful when predicting the behavior of a moving object or designing static structures. In a uniform gravitational field, the center of gravity is similar to the center of mass (COM); yet, these two points can be positioned differently. For example, the Moon's center of mass lies very close to its geometric center, but its center...

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