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Jerry M. Chow
The best answers are voted up and rise to the top. Home Questions Tags Users Unanswered. Ask Question. Asked 8 years, 6 months ago. Active 7 years, 4 months ago. Viewed 3k times. Does anyone have a good solution or workflow to efficiently edit a large document like a thesis or book and keep track of notes, ideas and things to do?
Jerry M. Chow - Wikipedia
MostlyHarmless MostlyHarmless 5, 10 10 gold badges 61 61 silver badges bronze badges. Lev Bishop Lev Bishop Why did you use both packages? Martin, when I started writing, both fixme and todonotes were much more limited in their features. I've forgotten now what it was that made me decide I wanted to combine them both at that time.
Currently, I would say the advantage of doing this is that todonotes gives nicer formatting of the notes, whereas fixme has more options for prioritization and is also has features to output information on the notes to the log file you can then extract this information and produce reports, etc, if you want to be fancy.
Lev: I agree with YuppieNetworking, I had a close look at your thesis and I think it is a very beautiful document. It made me think about my approach to save space and paper, as the first pages of the chapters look very good But at the moment I "unfortunately" have to concentrate on the content and can must! Lev Bishop: I tried to send you an e-mail to the yale address on your webpage, but it seems to be out of date.
How can I contact you? Emre Emre 4, 3 3 gold badges 28 28 silver badges 29 29 bronze badges. Another way to achieve this is via the fixme package, which has the feature to optionally render its notes as PDF comments.
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Lev: thanks for mentioning that. I wanted to try it with fixme but it did not work, maybe because of problems with my TeXLive installation and a wrong PATH, I should give it a second try. But I do not use Adobe Acrobat or Reader if I can avoid it , so the question is, if Skim also can deal with the pdfcomments..
Lev Bishop fixme uses pdfcomment internally. It's if you want one abstraction level above. The programming API of fixme has changed in the meantime, and the method described in 1. Lev Bishop: Yes as a user of fixme , I also was very surprised that everything I had defined was broken with the new version and I had to start again and read the fine manual RBerteig RBerteig 1 1 silver badge 11 11 bronze badges.
Sounds good, but: I already use svn to regularly save "snapshots" of the documents and show the current version with svn-multi. Chow, L. DiCarlo, J. Gambetta, F. Motzoi, L. Girvin, and R.
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Schoelkopf, "Optimized driving of superconducting artificial atoms for improved single-qubit gates", Physical Review A 82 , , doi : Gambetta, A. Nunnenkamp, Lev S. Bishop, L. Frunzio, M. Devoret , S. Schoelkopf, "Detecting highly entangled states with a joint qubit readout", Physical Review A 81 , , doi : Majer, J. Gambetta, J. Koch, B. Johnson, J. Schreier, L. Frunzio, D. Schuster, A. Houck, A. Wallraff , A. Blais, M. Schoelkopf, "Coupling superconducting qubits via a cavity bus", Nature , , doi : Gambetta, Lev S.
Bishop, B. Johnson, D. Schuster, J. Majer, A. Blais, L. Chow, A. Gambetta, C. Rigetti, B. Smolin, J. And of course, for a great many people well, me for one the second alternative of the Shor Trilemma is the most exciting and plausibly even the most likely one: quantum dynamics beyond the standard textbooks. Time will tell. Can you comment further on the part of your essay where you refer to photosynthesis being connected to quantum computing principles? I heard this claim a couple of years ago in a talk and honestly wondered how substantive the connection actually is as opposed to being a case of using buzz-words from quantum computing to make something seem sexier.
Now I wonder if I was overly grouchy in my skepticism. The debatable point is whether quantum computing and information ideas actually provide any new insight, over and above the techniques that quantum chemists already knew. The only question is, what kind of computer?
No no, you were perfectly clear in the article, I just think the other way you said it was cooler and more memorable! Thanks for your answer to my question about photosynthesis.
Of course, the results that use QC techniques to prove classical results are very valuable. Scott, unfortunately you forgot to mention an important quantum computing application: solving Sudoku puzzles. Erico LOL! Erico important question indeed For now can suggest a flow-based non-quantum solver, though:. The relation to complexity theory comes when we ask why investments are yielding smaller returns. Perhaps better than a long post arguing a specific answer, will simply a closing reminder that historically, complexity theory has always had much say about returns on investment and how to increase them.
Not to belabor the point, both articles are worth reading, and it seems to me both articles make points that are basically right. To reconcile their two points-of-view, it helps to reflect upon the evolutionary biology of photosynthetic mechanisms and upon the general theory of separative transport processes.
For me, one nice thing about the study of transport processes is the dual role of classical and quantum noise, which help us by localizing all the things we humans care about information, energy, and conserved quantities like charge and mass at the same time that they harm us by diffusing them. The net result is that we humans can evolve separative processes, design separative processes, and efficiently simulate separative processes. Indeed, the visual and cognitive processes by which Shtetl Optimized readers are seeing-and-understanding these words are concretely realized by Nature as separative transport processes on the smallest feasible spatial scales membranes in retinal cells and neurons and the fastest feasible time-scales the femtosecond scales of thermal relaxation with the greatest feasible entropic efficiency the membrane co-transport processes that largely govern cell dynamics.
Re: 38 and refs. Also, more radically, Vedral of late. What happened to temperature as the enemy of h-bar? Let me mention that it is quite possible that the universe is rather several non-interacting quantum computers.
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It is a basic teaching of QI that only few states can be realized by QC based on a single tensor product structure. The universe may well be composed of states that represent several non-interacting quantum computers based on different tensor product structures.
Moreover, we know that there are states that cannot be described via QC based on any tensor product structure and perhaps such states are also witnessed in nature. So perhaps the universe is — several non interacting quantum computers plus some extra stuff which is non interacting with any of them —. Why so complicated? Keep in mind that the computer does not really have to simulate the universe — it is sufficient to simulate your conscious experience btw.
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