The earlier scientists did not care about the gravitation. They took the phenomena happening around them as granted. They did not think logically about gravitation while newton observed it carefully and minutely
Earlier scientists could not guess about the gravitational force because they lacked the technology and tools to accurately measure and observe the effects of gravity. Additionally, the concept of gravitational force required a shift in understanding from the commonly accepted belief that the Earth was the center of the universe. It was not until Isaac Newton's work on gravity in the late 17th century that a formal explanation and understanding of gravitational force was established.
Scientists could not guess about gravity because it is a force that is not directly visible and acts over large distances. It required precise measurements, observations, and mathematical calculations to understand the concept of gravity as we know it today, which was not possible through guesswork alone.
The dimension of gravitational force is force, which is measured in units of Newtons (N) in the International System of Units (SI). It is typically represented in equations as mass times acceleration (F = ma).
The answer is gas.
You can increase the gravitational force between two objects by increasing the mass of at least one of the objects. Gravitational force is directly proportional to the mass of the objects involved, so the greater the mass, the stronger the gravitational force between them.
The earlier scientists did not care about the gravitation. They took the phenomena happening around them as granted. They did not think logically about gravitation while newton observed it carefully and minutely
Earlier scientists could not guess about the gravitational force because they lacked the technology and tools to accurately measure and observe the effects of gravity. Additionally, the concept of gravitational force required a shift in understanding from the commonly accepted belief that the Earth was the center of the universe. It was not until Isaac Newton's work on gravity in the late 17th century that a formal explanation and understanding of gravitational force was established.
Scientists could not guess about gravity because it is a force that is not directly visible and acts over large distances. It required precise measurements, observations, and mathematical calculations to understand the concept of gravity as we know it today, which was not possible through guesswork alone.
The dimension of gravitational force is force, which is measured in units of Newtons (N) in the International System of Units (SI). It is typically represented in equations as mass times acceleration (F = ma).
No. Gravitons have been hypothesized, but not directly detected.
Gravitational force is the natural phenomenon that causes objects with mass to be attracted to one another. For example, the gravitational force between the Earth and the Moon is what keeps the Moon in orbit around the Earth.
The answer is gas.
You can increase the gravitational force between two objects by increasing the mass of at least one of the objects. Gravitational force is directly proportional to the mass of the objects involved, so the greater the mass, the stronger the gravitational force between them.
No, there is no mass there to have any gravitational force.
If the gravitational force is less than the buoyant force, the drag force will act in the opposite direction of the gravitational force.
No, that could have led to know about ions formation. But breaking atom means breaking the nucleus which is not that much easier as nuclear force is enormously large. It is 1040 times larger compared to gravitational force of attraction.
how is weight affected by gravitational force?