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History, once again, gives the answers. Go back and study the Stern-Gerlach experiment.
Regards,
Reilly Atkinson
Regards,
Reilly Atkinson
You were answering to my post?reilly said:History, once again, gives the answers. Go back and study the Stern-Gerlach experiment.
Regards,
Reilly Atkinson
reilly said:History, once again, gives the answers. Go back and study the Stern-Gerlach experiment.
Regards,
Reilly Atkinson
reilly said:History, once again, gives the answers. Go back and study the Stern-Gerlach experiment.
Regards,
Reilly Atkinson
To me, it's not so sad the fact to study QM at graduate level, it's said the fact it wasn't taught so well to make me understand what is physics and what is mathematics (maybe it just depends on the teachers I had at university).reilly said:lightarrow -- There are two main reasons why QM is difficult, odd, weird, and contrary to normal common sense.
First, QM was developed to explain phenomena that could not be explained by classical physics: atomic spectra, electron diffraction; nuclear decay, spin, ...These are brain defying phenomena if you try to understand or describe them with classical physics. Can't be done.
Second: the natural language of QM involves fairly sophisticated math, PDE, Hilbert Spaces, and so on.
Thus it is difficult to get a good understanding of QM without several years of hard study. Sad but true. You can get an "OK" understanding from the literature for layfolks, but there will be many aspects of QM beyond your reach until you get to graduate level QM.
Regards,
Reilly Atkinson
reilly said:lightarrow -- There are two main reasons why QM is difficult, odd, weird, and contrary to normal common sense.
First, QM was developed to explain phenomena that could not be explained by classical physics: atomic spectra, electron diffraction; nuclear decay, spin, ...These are brain defying phenomena if you try to understand or describe them with classical physics. Can't be done.
Second: the natural language of QM involves fairly sophisticated math, PDE, Hilbert Spaces, and so on.
Thus it is difficult to get a good understanding of QM without several years of hard study. Sad but true. You can get an "OK" understanding from the literature for layfolks, but there will be many aspects of QM beyond your reach until you get to graduate level QM.
Regards,
Reilly Atkinson
cybercrypt13 said:Reilly, I go no where near saying I understand anything at all, however, for you to claim understanding at graduate level would seem to put you light years beyond others, since I've not really seen anyone claim understanding of QM. I won't argue that its math and wave functions work to predict things, however, to say anyone understands why, would be foolish.
We could stop all the talks on all subjects except one, (two-slit experiment) and I would bet you, that you'd have an infinite number of explanations for what is going on. Most from people that had never done an experiment, but instead quote others work as fact, would be offering all types of spooky claims.
People on this forum have used the term of instant communication beyond the speed of light numerous times to explain how QM is a fact, yet none seem to care that its quite impossible for anyone to measure such a communication time. Do they use their stop watch?
The point is, there are experiments that QM's functions help to predict, yet with no explanation as to the why. For any of us to claim we understand any of it would either be foolish, or make oneself above the crowd.
At least that's my opinion...
glenn
ZapperZ said:Forget about your obsession with QM. Take ANY classical phenomenon. Can you point out to me where there is a complete WHY explanation that accompanies that phenomenon?
Zz.
cybercrypt13 said:Hmm, very good question...
If I have a box that is taped closed I can not see inside it. Why? Because its closed and I have no means of seeing what is inside.
I tear the box open and can now view its contents. Why? Because I've opened the box and its no longer closed.
I know where you are going though... I just thought I'd play along. Your point is valid. However, I'm not the one that stated that I understood anything... :-)
glenn
Whenever one has a conceptual problem with QM, it is instructive to compare it with an analogous problem in classical mechanics.ZapperZ said:Forget about your obsession with QM. Take ANY classical phenomenon. Can you point out to me where there is a complete WHY explanation that accompanies that phenomenon?
Excellent objections!lightarrow said:To me, it's not so sad the fact to study QM at graduate level, it's said the fact it wasn't taught so well to make me understand what is physics and what is mathematics (maybe it just depends on the teachers I had at university).
Judging from what some other people says, I would say I'm not the only one with this problem.
A typical example is this: a very low energy photon is emitted from a light source and hits a screen and we detect a bright pointy flash on it.
Question: how can you prove *experimentally* that the photon has traveled from the source to the screen, if you destroy it in such a measure? So, how can you prove to me that the photon *physically* and not mathematically, really exist from source to screen?
I still haven't received a satisfying answer to this question from the many physicists I have asked it. They answer that the photon exist the same; I wonder how then they worry about QM paradoxes, if they talk about "gosts" and not about physical objects.
Some says that physics is not simply what we can measure. Ok, so, what is physics exactly? What does "to exist" mean in physics?
Why they don't write this on books? How can people hope to understand completely QM if they "seem" not to understand what that exactly mean?
Demystifier said:Whenever one has a conceptual problem with QM, it is instructive to compare it with an analogous problem in classical mechanics.
For example, classical mechanics can also be formulated as a purely probabilistic theory described only by a wave function satisfying a (modified) Schrödinger equation and interpreted as if only observed phenomena was really physical:
http://arxiv.org/abs/quant-ph/0505143
ZapperZ said:Then you have just declared that all your rants about QM are moot. Until you can point out to me one single classical phenomenon that have a basic, ultimate fundamental "explanation", you cannot use such argument against QM. This is because you cannot ask for something that has never existed in the first place.
Zz.
cybercrypt13 said:As an example: I can explain to you that if I throw a baseball or shoot a rocket, or send a spaceship to mars, we can know a great deal about where, how, and when and what will happen. However, you'll just start bringing up the fact that we don't now what space is and so forth so how do we really know. Its sort of like the kid game where they ask you a question, you answer and then they keep asking why. You can never finish the conversation because you can always say why.
Are you familiar with the Bohmian interpretation of QM?cybercrypt13 said:Is this a fair response? The reason I didn't offer anything is that since QM has surfaced we seem incapable of making claims or explanations of anything at all. We've entered a realm of "We can't know so don't ask", that seems to make asking questions about anything a little risky.
As an example: I can explain to you that if I throw a baseball or shoot a rocket, or send a spaceship to mars, we can know a great deal about where, how, and when and what will happen. However, you'll just start bringing up the fact that we don't now what space is and so forth so how do we really know. Its sort of like the kid game where they ask you a question, you answer and then they keep asking why. You can never finish the conversation because you can always say why.
A spaceship is launched and we know where its going and how its going to get there. The claim is made that its going to the moon. It goes to the moon. These are facts and we knew them ahead of time.
QM makes a claim that nothing exists unless we observe it. This is a philosophical debate. We can't prove this, its just something derived from QM and those that built it. Its like we've taken a wave function that correctly predicts the location of an electron, acknowledged the fact that it has no logical reason why it will be there, and then built on top of that a lot of philosophical opinions about the subject.
In the end, it becomes very confusing to all of us. Its sort of like the IRS taxcode. Its there, but no one understands it... :-) that was a joke, albeit true.
Anyway, I understand where you are coming from, but to me its not a fair analysis. We can always ask another why question, but to say that in the classical universe we understand nothing would seem unfair.
ZapperZ said:No, actually "... we can know a great deal about where, how, and when and what will happen.." are NOT "explanations", but rather descriptions! You seem to think that those are "explanations". They are descriptions of the dynamics of the system. It explains nothing!
QM does the same. It will tell you the time evolution of all the observables of the system. There's no difference. If you measure it at such-and-such time, you will get such-and-such outcomes. In fact, if you do this many, many times, it can give you the outcome with uncanny precision!
This is why I asked you why are you picking on QM when ALL of physics have the same property. THIS is what is "unfair".
Zz.
Demystifier said:Are you familiar with the Bohmian interpretation of QM?
If not, I believe you might like it.
For a somewhat wider context see also
http://arxiv.org/abs/quant-ph/0609163
Demystifier said:Are you familiar with the Bohmian interpretation of QM?
If not, I believe you might like it.
For a somewhat wider context see also
http://arxiv.org/abs/quant-ph/0609163
cybercrypt13 said:Ok, I see your point. And just for the record, its not that I'm picking on QM. Its more that when trying to ask what I would think are simple questions I get 20 different answers, and most sound more like double talk than an actual answer. I actually like learning QM's, I just get frustrated sometimes with the lack of understandings and yet the non-ending flow of philosophical ideas...
ZapperZ said:If you want to understand physics, then learn physics like the rest of us. There's no shortcut. But don't fool yourself into thinking you are learning physics when you are actually learning ABOUT physics.
Zz.
Zz.
But if you learn something ABOUT physics, as a byproduct you may also learn a part of physics itself, perhaps even a pat that otherwise you would never learn by directly learning only physics itself. In fact, the creators of science called physics probably started with thinking ABOUT physics.ZapperZ said:The problem here is that you are trying to learn about physics, not physics itself.
cybercrypt13 said:Boy, I thought I was learning... lol. I guess asking questions or not completely understanding a subject at its start was by passed in your study. I wish I could be so lucky but it takes time for me. I have to read, ask questions, get answers and repeat. Sometimes when answers don't make sense I have to ask them again. I just hope you're not a teacher... :-)
I will say, I've asked a couple different questions on this board and you seem to be the only one that hunts me down and gets right to the "You don't know anything" remarks. I guess we can't all be a smart as you, but its obvious your intelligence doesn't help any in communication skills.
As I've repeated to you multiple times, I'm not attacking QM's. I'm just trying to figure out things such as spin, entanglement and so forth. When the answers don't make sense I have to ask again. This thread itself is a perfect example of the different types of answers you get to a simple question by the OP.
Please stop attacking and just answer questions. If I'm off base its ok to explain to me why, you don't have to get personal and start telling me to go to school. I'm in school, I'm just not finished yet and didn't realize I needed to wait until that day before I could ask questions or share my opinion... right or wrong.
glenn
Demystifier said:But if you learn something ABOUT physics, as a byproduct you may also learn a part of physics itself, perhaps even a pat that otherwise you would never learn by directly learning only physics itself. In fact, the creators of science called physics probably started with thinking ABOUT physics.
dextercioby said:Mind you that spin comes into play in QM not necessarily in connection with the Dirac equation.
First, most of us have had lousy teachers -- so, you have to study harder and read everything about the subject.Demystifier said:Excellent objections!![]()
I believe that physicists avoid talking about these things for two reasons:
1. They do not know the answers.
2. If they dare to talk about it, they will be accused for being too philosophical rather than scientific.