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looking for a PDF software to protect partially my paper until readers pay me a small amount of money.
googled around and did not find much.
any recommendations?
diligent hands rule....
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Myself I have no idea how you could even do that 'partially' in terms of implementation. I doubt it is possible unless PDF already supports that.
I suspect you need two papers. The first is an abstract with a reference to the second. Which is basically what any normal paywall already does.
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this is the way in my mind right now...
diligent hands rule....
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Have you looked at Adobe?
Don't know what they are charging for the PDF document editing tools.
https://www.adobe.com/acrobat/hub/how-to-black-out-text-in-a-pdf-file.html
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It's an illusion: the partially protected is actually a partial (sample) document used as promotional material. Once they pay, you send them a full copy ... with their name watermarked on it.
"Before entering on an understanding, I have meditated for a long time, and have foreseen what might happen. It is not genius which reveals to me suddenly, secretly, what I have to say or to do in a circumstance unexpected by other people; it is reflection, it is meditation." - Napoleon I
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I find an answer for this question here...
diligent hands rule....
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it must be quite a paper if it is worth cash . may i inquire please the subject . thank you kindly .
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stock trading strategies and methods...
diligent hands rule....
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very impressive . may i inquire the obvious question id est have you yourself found the strategies and methods useful .
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Cannot prevent them from taking a screenshot (or photograph) of the protected part, and openly publishing it, isn't it?
Even if such an infringement is detected, getting a favourable legal solution is most likely a long winded process, except for large companies.
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for PDF file, these actions can be prevented...
diligent hands rule....
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Maybe PDF Unshare suits your needs.
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0x01AA wrote: entropy
An Entro to Py
As the aircraft designer said, "Simplicate and add lightness".
PartsBin an Electronics Part Organizer - Release Version 1.3.0 JaxCoder.com
Latest Article: SimpleWizardUpdate
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Thanks for this. My usual problem is they state 'the probability is this and that' but no explanation why it is
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In the case of the video, the probabilities were made up to create two different machines. They then went on to illustrate how you could calculate the information entropy for each machine to compare them. The machine with the lower calculated entropy was more predictable Or better organized. The higher the calculated entropy the more disorganized a system is, so it is harder to predict what the output of the next cycle will be.
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Mmmm cyclomatic complexity... keep going, we can cut my heating costs.
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You make an excellent observation. Like measurements of Entropy, Lower Cyclomatic complexity programs are more stable (better organization), their behavior is more predictable and you have a higher confidence in predicting their processing results.
In both cases lower is better.
Thanks, did not see the connection.
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I uhhh... have to go overboard with how not serious I take myself sometimes.
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Reading what you wrote, I was picturing software emulated hardware because I do not 'really' know hardware.
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Thank you for this. I read a lot, but I'm stumbling again and again.
E.g: from here https://www.physik.uni-wuerzburg.de/fileadmin/11030300/_imported/fileadmin/tp3/ThermoEDynamik/Entropie.pdf[^]
Quote: Da man mit n Bits bekanntlich 2^n verschiedene Bitmuster bilden kann, ist sofort klar, dass ein System mit 2^n Zuständen mit einer n-Bit-Datei vollständig beschrieben werden kann, so dass in diesem Fall H=n is
For me nothing is clear... Especally that one can describe e.g. the 2^8 conditions in an 8 bit file. But most probably this is a lack of my understanding
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I'm sure you understand it (but you do not know that)!
Wortbreite
8 Bit
Bereiche mit Vorzeichen
-128 ~ 127
Bereich ohne Vorzeichen
0 ~ 255
2^8 = 256
and 1 to 256 you can define with 8 bit as shown above with 0 to 255.
Now you should know that you already knew that
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I think , I'm very save with binary numbers. But again translated by google, I don't get the point on that:
Quote: Since it is well known that 2^n different bit patterns can be formed with n bits, it is immediately clear that a system with 2^n states can be completely described with an n-bit file, so that in this case H=n
How one can desribe 256 condistions in a file with one byte?
I'm pretty sure I have a problem understanding the article, but I'm also very happy if somebody can explain what I'm missinterpreting
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