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Most "clocks" use electric forces to tick tock. Therefore they will absolutely agree with the "light clock" of special relativity fame.
No I meant the rest-mass of the whole system. I'll go and remove the confusing first sentence.jbriggs444 said:You may mean "transverse relativistic mass". But since that does not match "longitudinal relativistic mass", the concept is of little use.
An object moving at a high rate of speed has the same rest mass as when it is at rest. By definition.
And relativity agrees with this (most clearly in the geometric formulation, and if you are not already familiar with these concepts to at least the level of the early chapters of Taylor and Wheeler's "Spacetime Physics" you are frankly wasting your time and time of the people engaging with you) .teacher94 said:But i just do not believe time can be affected or changed.
No matter how you look at time boils down to how many events happen in the span of another event, for example how many times the pendulum swings in the span of a free falling motion of a ball. So time is in a sense measure of how many events that we use as measuring ruler(for example the swings of a pendulum) can fit in the span of another event say the free fall of a ball.Nugatory said:And relativity agrees with this (most clearly in the geometric formulation, and if you are not already familiar with these concepts to at least the level of the early chapters of Taylor and Wheeler's "Spacetime Physics" you are frankly wasting your time and time of the people engaging with you) .
The catch is that time, that thing which cannot be "affected or changed" isn't quite what you're thinking it is. Start with a clear and experimental realizable statement of what is meant by the popular and fuzzy "time slows down for moving objects", do this twice for the the two fundamentally different situations in which this is said (time dilation when A and B are moving relative to one another, twin paradox when A and B separate and reunite), and you will develop a more clearly defined concept of what tIme is.
Which is to say that it is a comparison of clocks.teacher94 said:No matter how you look at time boils down to how many events happen in the span of another event, ...
So time does not exist as an independent concept?!! It exists only in sense of comparing how many cyles of an event fit in one cyle of another event? Therefore relative?jbriggs444 said:Which is to say that it is a comparison of clocks.
Which is to say that time is what clocks measure.
We can measure it. With clocks. Proper time exists in that empirical sense.teacher94 said:So time does not exist as an independent concept?!! It exists only in sense of comparing how many cyles of an event fit in one cyle of another event? Therefore relative?
The reason for calling time "relative" is, that the time-interval ##\Delta t## between two events depends on, which reference frame you choose. Invariant is the spacetime interval between the events. The square of it is, with (+---) convention:teacher94 said:So time does not exist as an independent concept?!! It exists only in sense of comparing how many cyles of an event fit in one cyle of another event? Therefore relative?
Yes, provided that the pendulum and the ball are for all practical purposes colocated, in which case we are measuring proper time along a timelike worldline (strictly speaking, within a sufficiently small timelike worldtube). Everyone agree that this proper time cannot be "affected or changed"; it is also, as Einstein said, what a clock measures.teacher94 said:No matter how you look at time boils down to how many events happen in the span of another event, for example how many times the pendulum swings in the span of a free falling motion of a ball.
Throughout this thread, you have been (as does everyone who hasn't learned relativity, including many people who think they have) using the word "time" to refer to two different things: proper time which is what a clock measures, and coordinate time which is the timestamps that we attach to events ("that firecracker over there exploded at 3:00 PM"). These are completely different things, and confusing them is the root of most relativity confusion. Proper time is "real" in the sense that it is a physical quantity that can be measured, and everyone will agree about the results of such measurements. It's as real and non-relative as any other physical quantity. Coordinate time is relative, in the sense that people in motion relative to one another will naturally assign different coordinate times to the same event.teacher94 said:So time does not exist as an independent concept?!! It exists only in sense of comparing how many cyles of an event fit in one cyle of another event? Therefore relative?
teacher94 said:The justification for the slow of evey process by the same factor could be justified by saying that object that move fast have large kinetic energy which in itself is mass since mass and energy are the same this will result in every particle in that object being heavier so it moves slower.
Nugatory said:It gets trickier when we work with events that are not for all practical purposes colocated, as when we conclude that a clock moving relative to us is running slow relative to our own clock. Now the measurement relies on additional assumptions (most crucially, what it means to say that two physically separated events happen "at the same time") that should be stated precisely. The "time slows down...." presentations hide these additional assumptions and obscure what is really going on.
All agree on the spacetime-interval between two ticks of my clock.gmax137 said:Alice and Bob disagree on how slow your clock is.
teacher94 said:TL;DR Summary: Hi, i am not a physicist but i have the intuition that time dilation is just slow in the movement of particle's and causality instead of slow in time itself and that this does not affect photons. I understand that there is no way to distinguish between a slow in time and a slow in movement and causality but would the math still work the same if we assume this interpretation of time dilation? Thank you
Hi, i am not a physicist but i have the intuition that time dilation is just slow in the movement of particle's and causality instead of slow in time itself and that this does not affect photons. I understand that there is no way to distinguish between a slow in time and a slow in movement and causality but would the math still work the same if we assume this interpretation of time dilation? Thank you
You have to be careful here. The definition of (proper) time is that it is the thing that a clock measures. That is different from saying that time is a clock.teacher94 said:So time does not exist as an independent concept?!! It exists only in sense of comparing how many cyles of an event fit in one cyle of another event? Therefore relative?
It also seems to me that what dilates is the frequency of decay of all particles with mass and not time itself. That would be why people age slower traveling away from earth and coming back to earth, because every atom in them decayed slower than those at earth. Traveling clocks slowed because the caesium atoms decay slowed down taking more time to tick the number of cycles we count to say one second has passed. So it seems speed is affecting matter not time.FactChecker said:If you assume that every possible physical process is slowed, then there are a couple of questions:
1) How would you distinguish between that and time dilation?
2) How can you explain every possible physical process slowing down exactly the same amount? That is a lot to explain. On the other hand, you can just say that there is time dilation and everything else follows.
How do you explain the reciprocal nature of this? If I am moving fast with respect to you, you see my clocks slowed but I see your clocks slowed. Which of us is "affected by speed"?jkourany said:So it seems speed is affecting matter not time.
The squared spacetime-interval ##s^2 = c^2 (\Delta t)^2 - (\Delta x) ^2 - (\Delta y) ^2 - (\Delta z) ^2## between two ticks of the clock is invariant. That means, it is the same in each inertial reference frame.jkourany said:So it seems speed is affecting matter not time.
Very good point. The central fact is that a stationary person observes the clock of a moving person as it goes from one location to another. It is the difference in synchronized clocks in different locations that forces the reciprocal property. So the slowing of a moving clock is the direct, logical, result of the spacetime distortion of a moving reference frame.Ibix said:How do you explain the reciprocal nature of this? If I am moving fast with respect to you, you see my clocks slowed but I see your clocks slowed. Which of us is "affected by speed"?
There are a number of issues with that approach. @Ibix mentioned that it doesn’t explain the reciprocal nature of time dilation.jkourany said:So it seems speed is affecting matter not time.
Atomic clocks stabilized using the hyperfine transition in caesium-133 do not operate by having caesium-133 atoms decay. The operating principle is not based on counting out caesium-133 half lives.jkourany said:Traveling clocks slowed because the caesium atoms decay slowed down taking more time to tick the number of cycles we count to say one second has passed.
https://en.wikipedia.org/wiki/Caesium_standard#Technical_details said:The official definition of the second was first given by the BIPM at the 13th General Conference on Weights and Measures in 1967 as: "The second is the duration of 9192631770 periods of the radiation corresponding to the transition between the two hyperfine levels of the ground state of the caesium 133 atom." At its 1997 meeting the BIPM added to the previous definition the following specification: "This definition refers to a caesium atom at rest at a temperature of 0 K."[3]
Paraphrasing... You have this chamber with a caesium gas. It is able to absorb microwaves corresponding to the hyperfine transition. You have this quartz oscillator that can be tuned slightly. You tune the oscillator so that it produces microwaves that are optimally absorbed by the caesium gas. The quartz oscillator is then your clock.https://en.wikipedia.org/wiki/Atomic_clock#Types said:In a caesium beam frequency reference, timing signals are derived from a high stability voltage-controlled quartz crystal oscillator (VCXO) that is tunable over a narrow range. The output frequency of the VCXO (typically 5 MHz) is multiplied by a frequency synthesizer to obtain microwaves at the frequency of the caesium atomic hyperfine transition (about 9192.6317 MHz). The output of the frequency synthesizer is amplified and applied to a chamber containing caesium gas which absorbs the microwaves. The output current of the caesium chamber increases as absorption increases.
The remainder of the circuitry simply adjusts the running frequency of the VCXO to maximize the output current of the caesium chamber which keeps the oscillator tuned to the resonance frequency of the hyperfine transition.[46]
Occam's razor: When presented with competing hypotheses about the same prediction, one should prefer the one that requires the fewest assumptions.jbriggs444 said:As others have pointed out, whether it affects time itself or merely affects "all physical processes" is philosophical wool gathering, not science.
Brevity is the soul of witFactChecker said:Occam's razor: When presented with competing hypotheses about the same prediction, one should prefer the one that requires the fewest assumptions.
It's not a law of logic, mathematics, or physics; it's just a preference for simplicity and testability.