A frame of reference is your position relative to the action you are observing.
Lets say two people are playing ping-pong on a bus. One frame of reference would be another person on the bus, another would be a person on the sidewalk. Although they are observing the same thing, they would see different things.
A true inertial frame of reference in physics is a still non-moving point of observation. A frame of reference is either a true inertial frame of reference, or a relative inertial frame of reference, relative in some form of measurement to the true inertial frame of reference.
However this indicates a beginning still point in time to measure both time and motion from. After Einstein showed that E=mc2 and that time is relative to space the search for a true inertial frame of reference was abolished and Einstein spent the rest of his life trying to resolve the problems eliminating constant time created and stated that "God does not play dice with the Universe". Most physicists disagree and are quite happy with a game of dice, but Einstein knew he was right and the answer would
be found in unifying EM and gravity. He was right. U(1) contains gravity (and Mass) but finds itself outside the weak force. EM=electric force + gravity. See Unified Field Theory
The mistake Einstein made was he considered a true observer which means Life, as a non-element. Something that could be eliminated and leave the Universe intact. Real Relativity reverses the symmetry in time and states: "Time is not relative to multiple observers at the same time. Time is relative to a single observer in multiple places in time." This restores constant time motion is relative to and establishes a true or "initial" inertial frame of reference.
A joke in real relativity regarding the inertial frame of reference states:
"Since it is not moving one can not ask where it came from and since it has no inertia an observer is required to explain the contradiction and have a point of view."
"Relative to an initial inertial frame of reference there is only one observer." is the first law in Real Relativity.
In Real Relativity I=E/R is converted to S=Wp/T Space, Time, Weak pressure: weight of the Observer's Mass: gravity contained within the weak force.
Real Relativity has been accepted by the top leading sound technicians and musicians that learn of it and resulted in correcting the old Circle of Fifths creating the " New Circle of Fifths" where tonal space is relative to real time to start a list of new features. The NC5 is gravity based and turned to show the minor keys. Numbers don't tell lies...never have and never will. Same goes for gravity. Time is relative to the observer and gravity is a product of time...LIGO is pointing in the wrong direction.
The most common frame of reference in physics is the inertial frame of reference, where an object is considered to be at rest or moving with constant velocity. Observers in different inertial frames will agree on the laws of physics governing the motion of objects.
In physics, a point of view with regard to motion is called a reference frame. It is used to describe the motion of an object relative to a chosen point or object, providing a frame of reference for measuring distances and velocities. Different reference frames may result in different observations of the same motion.
Special relativity is Albert Einstein's theory that there is no preferred frame of reference for physics, and all measurements depend upon the frame of reference from which they are made.
In physics, an accelerated frame of reference affects the measurement of motion by introducing non-inertial forces that can make it more complex to accurately measure and describe the motion of objects. This can lead to discrepancies in measurements and calculations compared to measurements taken in an inertial frame of reference.
to generate the fictitious force that would transform one reference frame into the other in a single timestep.
In physics, a frame of reference is a set of criteria or stated values in relation to which measurements or judgments can be made. Here is an example sentence: When describing the motion of an object, it is important to specify the frame of reference being used, such as the stationary ground or a moving car.
The two frames of reference commonly used on Earth are the inertial frame of reference, which is a non-accelerating frame, and the rotating frame of reference, which takes into account the Earth's rotation. Both frames are important in physics for describing motion and dynamics accurately.
A frame of reference in physics, may refer to a coordinate system or set of axes within which to measure the position, orientation, and other properties of objects in it, or it may refer to an observational reference frame tied to the state of motion of an observer. It may also refer to both an observational reference frame and an attached coordinate system as a unit.
Acceleration is not typically used as a frame of reference in physics. It is a physical quantity that describes how an object's velocity changes over time. In contrast, frames of reference are used to define the position and motion of objects relative to a chosen point or system.
In physics, the Coriolis effect is a deflection of moving objects when they are viewed in a rotating reference frame.
Yes, motion is described with respect to a frame of reference to determine an object's position, velocity, and acceleration relative to a fixed point or another object. Frames of reference are essential in comparing and analyzing the motion of objects in physics.
A frame of reference refers to a set of coordinates that determine the position and orientation of an object in space. It is used to describe the motion of an object relative to a fixed point or observer. In physics, different frames of reference can lead to different observations of the same event.