This is a multi-part message in MIME format. ------=_NextPart_000_0037_01C959EF.E83FA230 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: 7bit apptech wrote: >>> You scanned it in, didn' you? :) > >> Huh? Without context I have no idea what you're talking about. > > But you managed a green belt Mentat achievement nonetheless! Huh? > I found the visual cues inadequate to judge with certainty, or even > probably > ~= 30% certainty. Is this about whether I used a scanner or a camera to get the picture of the HP11C? If so, I didn't catch on at first since it didn't occur to me anyone would care. Here is the description of how the picture came about in case anyone does care: The picture was taken with a Fuji FinePix F20 camera. This is a reasonably unremarkable "point and shoot" camera that I got for office use a few years ago. The salient feature was that it has unusually good macro capability compared to other cameras in its price and capability range. I wanted something that could take a clear picture of individual parts on a PC board. It performs that task well enough. The camera was on a tripod and the calculator was sitting on a gray table where there are two flourescent light fixtures hanging from the rafters on either side. Unfortunately they are a little too high up for photographic purposes. It would be better if they were lower or more to each side, but short of deliberately setting up lights the is the best spot in the office to take pictures of small objects. The tripod lives there pretty much permanently because stuff like this comes up more than most would probably think, a few times per month. The original picture was 2848 x 2136 pixels in size. That is the largest the camera can do. I always use the camera setting with the largest image size and the least compression. If I want smaller, I'll do that later myself. I always color correct the raw pictures. I use my IMAGE_DISP program to look at the picture zoomed in on something I know should be white, or sometimes gray, then right-click drag a rectagle over that reference area. IMAGE_DISP writes out the size, location, and average color values over the rectangle. I feed the average color value into a script for just this purpose. I can also give it a "brighten" value. Many cameras, including this one, make moderately dark things too dark. The brighten factor leaves the ends of the range alone, but sloshes intermediate intensities towards the high end using a sortof exponential function. The script runs IMAGE_COPY passing the color range and brighten values, and creates a TIF file with a meaningful name from the raw camera numbered file. In this case I also cropped the image to just a little past the calculator. The cropped "final" official HP11C.TIF file is 2706 x 1609 pixels in size. The first image I posted of the whole calculator was this master image shrunk to not exceed 400 pixels (or whatever it was) in either dimension using IMAGE_RESIZE. The second picture was a crop of the master with just enough to show the SQRT and G keys, then resized again to something small enough to attach to a PIClist post. To show the macro capability of this camera, I attached two pictures. The first is a small version of the original, the second a small area of the original at full resolution. I took these this weekend for a talk I'm giving Thursday evening. Those chips are 10F204s. I think the camera would have let me in a little closer. I wasn't trying to demonstrate the macro feature at the time. 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