![]() Gui, Add, Radio,, Remove a page from an unencrypted file Gui, Add, Radio,, Join all unencrypted PDF files in a folder Gui, Add, Radio,, Join 2 unencrypted PDF files ![]() Gui, Add, Radio,, Encrypt PDF file 128 bit, user needs password to open, `nallow printing, withhold other permissions Gui, Add, Radio,, Encrypt PDF file 128 bit, user needs password to open, `nwithhold all permissions Gui, Add, Radio,, Encrypt PDF file 128 bit, allow printing, `nwithhold other permissions Gui, Add, Radio,, Encrypt PDF file 128 bit, withhold all permissions Gui, Add, Radio, vOpt, Decrypt PDF file (password should be known) MsgBox, pdftk.exe not found in same directory Keep it in the same directory as pdftk.exe and run it. Here is a GUI for pdftk, made using autohotkey, covering the basic functions. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. This program is distributed in the hope that it will be useful,īut WITHOUT ANY WARRANTY without even the implied warranty of My pdftk code is free software made available under the GPL. You should get the above, usage instructions. Open a command prompt and type pdftk -help. Move the resulting pdftk.exe to a convenient location, such as C:\windows\system32. It does not require Acrobat, and it runs on Windows, Linux, Mac OS X, FreeBSD and Solaris.ĭownload and unzip the following file. Pdftk allows you to manipulate PDF easily and freely. Report on PDF Metrics such as Metadata, Bookmarks, and Page LabelsĪttach Files to PDF Pages or the PDF Document Keep one in the top drawer of your desktop and use it to:ĭecrypt Input as Necessary (Password Required)įill PDF Forms with FDF Data and/or Flatten Forms Pdftk is a simple tool for doing everyday things with PDF documents. Specifically, the temperature factor had an increasing effect on the particle area, and a decreasing effect on particle circularity.If PDF is electronic paper, then pdftk is an electronic staple-remover, hole-punch, binder, secret-decoder-ring, and X-Ray-glasses. However, the UO 2 samples had distinct morphological changes due to the experimental aging conditions. The U 3 O 8 samples showed no statistically quantifiable differences due to the aging conditions. This data was then used to create response surfaces of the quantitative morphological changes based on the developed design of experiment. Analysis of the particle attributes was completed using the Kolmogorov–Smirnov two sample test (K–S test) to determine if the particle size and shape distributions were statistically distinct. Utilizing the Morphological Analysis for Materials (MAMA) software package, particle size and shape were quantified using the acquired SEM images. Each aged sample was characterized using scanning electron microscopy (SEM) for image analysis. The design of experiment consisted of 54 samples per uranium oxide. A Box-Behnken design of experiment was developed using the independent variables: temperature from 100 to 400 ☌, aging times from 2 to 48 h, and partial pressure of $)$ between ~0.0 kPa and 21.3 kPa. ![]() This allowed the morphological changes to be used as a signature for the aging conditions for nuclear forensic analysis. In this study microstructural changes in two uranium oxides (UO 2 and U 3 O 8 ) due to changes in the aging conditions at elevated temperatures were quantified and modeled using a response surface. The morphological changes that take place during the processing and storage of uranium oxides can provide valuable information on the processing history and storage conditions of an interdicted sample.
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