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Newtonian physics, developed by Sir Isaac newton, describes the motion of objects in the everyday world using concepts like force, mass, and acceleration. It is based on absolute space and time.

Einsteinian physics, or the theory of relativity, developed by Albert Einstein, revolutionized our understanding of space and time. It describes how gravity affects the fabric of spacetime and how objects move in relation to each other. It is based on the idea that space and time are relative and interconnected.

The key differences between the two are in their treatment of space, time, and gravity. Newtonian physics is a simpler, more intuitive description of motion, while Einsteinian physics provides a more accurate and comprehensive understanding of the universe.

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What are the key differences between Newtonian physics and relativity?

Newtonian physics and relativity differ in their treatment of motion and gravity. Newtonian physics describes motion and gravity based on absolute space and time, while relativity considers them as relative and interconnected. Additionally, relativity accounts for the effects of high speeds and strong gravitational fields, which are not addressed in Newtonian physics.


How did Albert Einstein change quantum physics?

Einstein founded "Einsteinian physics", which replaced Newtonian physics, but which has been superseded by quantum physics. Einstein's colleagues asked some of the questions which led to a more bizarre, quantum model of physics. Look up Schrodinger's cat for the most famous example. Einstein thought this was mystical weirdness.


Can be accurately determined using newtonian physics?

Yes, many physical phenomena can be accurately described and predicted using Newtonian physics, particularly for objects with speeds much slower than the speed of light and on scales larger than atoms. However, when dealing with very small scales (like quantum mechanics) or very high speeds (like near the speed of light), Newtonian physics may not provide accurate predictions.


What contribution did the printing press make to Newtonian physics?

The printing press played a crucial role in the dissemination of Isaac Newton's revolutionary work on physics. By making it easier and more efficient to produce copies of Newton's publications, the printing press helped spread his ideas across Europe and beyond, laying the foundation for the development and acceptance of Newtonian physics as a new paradigm in science.


Do the laws of physics imply free will?

The laws of physics describe how matter and energy interact, but they do not directly address the concept of free will. Free will involves the ability to make choices and decisions independently of deterministic physical processes. The relationship between free will and the laws of physics is a philosophical and metaphysical question that remains open to interpretation.

Related Questions

What are the key differences between Newtonian physics and relativity?

Newtonian physics and relativity differ in their treatment of motion and gravity. Newtonian physics describes motion and gravity based on absolute space and time, while relativity considers them as relative and interconnected. Additionally, relativity accounts for the effects of high speeds and strong gravitational fields, which are not addressed in Newtonian physics.


What are the physics in lacrosse?

Newtonian Mechanics


What are the two kinds of physics?

Newtonian and Quantum


What does sport have to do with science?

Newtonian physics....etc.


Distinguish between quantum and classical physics?

Newtonian, or classical physics applies to physical, every day things, while quantum physics is a type of theoretical physics that does not apply to any physical things.


What is the difference between Galilean relativity and Einsteinian relativity?

Galilean relativity asserts that the passage of time is the same for all observers. Einsteinian relativity does not claim universal time for all observers. Instead, it asserts that the speed of light and the fundamental laws of physics are the same for all observers.


What does mass really mean?

A: The amount of matter in an object. A: Physicists are currently trying to find out the "source" of mass, but it is highly unlikely that the answer will be very satisfying to an ordinary person. Perhaps the only way to view this is to accept that mass is that which has the properties which we recognize in Newtonian physics, such as inertia and gravitational attraction, and in Einsteinian physics such as energy equivalency and the bending of spacetime. In other words, mass just is.


2 divisions of physics?

Classical (or Newtonian) and Quantum.


What are Newton's contributions in gravitational physics?

Gravitational Physics is Newtonian Physics! Quaternion Gravity will be an advance, when Gravitational Energy is recognized to be: E = Newtonian Energy (-mu/r) and vector Energy (mcV) = -mu/r + mcV.


What do you mean by modren physics?

Typically, there are considered two forms of physics. Newtonian and modern. Newtonian relates to Newton-era mechanics and E&M. Modern physics loosely refers to post-newton physics. Modern physics primarily refers to 20th century physics as it incorporates relativity and quantum theory.


What is pre-newtonian science?

Newtonian physics, also called classical or pre-relativistic physics refer to the physics after Aristotelian physics and before the 1920s when the theory of relativity was formed. They distinctly differ from Aristotelian physics in that they cover the physics of motion, scientific method, describe contact and non-contact forces such as magnetism


When does newtonian physics fail to explain motion correctly?

Newtonian physics fails to explain motion correctly in extreme conditions such as at speeds approaching the speed of light or in the presence of very strong gravitational fields where the effects of relativity become significant. Additionally, at the quantum level, where particles behave in ways that cannot be predicted using classical physics, Newtonian physics also breaks down.