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## Using Photoshop’s Blending Features
To create a blended image, you first need to make sure that the images you’re combining are the same size and are within a certain distance from each other in pixels.
Then you create a layer mask for each image and blend them by using the Blending option. This option can be found under Edit→Blend Layers, as shown in Figure 4-17.
With two or more images stacked together, Photoshop creates a mask that lets you work on only a specific portion of one image while leaving the other image in tact. The figure in Figure 4-18 shows a layer mask you can create from a group of three images. In this case, the layer mask lets you work with the top image, while keeping the second and bottom image blank.
* To create a layer mask, select the layer that you want to mask, and go to Layer→Create Layer Mask.
* To use a layer mask, select the Layer Mask option on the Layers panel (Figure 4-19), or use the normal Layers panel.
**Figure 4-17:** When you create a layer mask from two or more images, Photoshop makes sure that the top image appears where the other ends.
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Adobe Photoshop Lightroom is a digital photo management and editing application from Adobe that has replaced Adobe Photoshop CS in the Photo Management section of the Creative Cloud suite. Adobe Lightroom is not always described as a feature rich application, but it does offer a basic photo-editing application with a collection of features. You may also use it as a RAW photo editing application. Adobe Lightroom is compatible with the Adobe Creative Cloud.
Adobe Photoshop version CS5 and earlier. Photoshop version CS5 and earlier have been discontinued as they are no longer supported. They no longer receive security updates and bug fixes. Use an older version to maintain compatibility with older programs and document formats.
Adobe Photoshop has been introduced in the Fall 2002, so it is a new interface. It can handle different file types and edit images. It was released as version 12.
Adobe Photoshop CS4 was released in April 2008. It is the latest version of the Photoshop family and was the last version based on a different GUI. It was the fourth revision and has a new feature.
Adobe Photoshop CS6 was introduced in the November 2008. It has a few new features and provides the content-aware fill tool. The interface is based on the Creative Suite 6 (CS6) interface and has many improvements.
Adobe Photoshop CS5 has been released in the May 2004. It has a completely new interface and a different set of features.
Adobe Photoshop CS4 is the latest version of the software. It has several new features, but it is still based on the new graphical interface that makes Photoshop able to support many new technologies. In particular, it contains many new features to edit video.
Adobe Photoshop CS3 was released in the December 2003. It has a new interface. The colour replacement tool improves, and offers the ability to retouch old photos that have lost their colour because of aging.
Adobe Photoshop works on Windows XP, Windows Vista, and Windows 7. In Windows XP, it has been redesigned to use the Aero interface.
Adobe Photoshop works with a minimum of 512 MB RAM, 1 GB RAM recommended.
The Photoshop family requires 2.2 GB of available disk space.
Adobe Photoshop CS5 require a 64-bit operating system, such as Windows 7.
Adobe Photoshop CS6 requires a 64-bit operating system, such as Windows 7.
The table of software used to preview files
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Maintain a function’s context while running it from a custom script
I’m trying to create a custom image compressor/restorer script which can re-encode a bunch of images. I’m using Python to run the script, and for my method of running it (as a function, by putting it in a file called, say, compressor.py), I’m using the subprocess module.
Here is the body of my compressor.py:
#some code which creates PNGs from a sequence of JPEGs
#code to work on PNGs
#some code which does stuff to the PNGs
#code to work on JPEGs
#this isn’t actually part of the compressor.py
#I’m just writing it so I can see if I can handle what I’m trying to
outPath = ‘/tmp/outDir/out1.jpg’
subprocess.call([‘convert’, ‘/tmp/outDir/out1.jpg’, ‘-thumbnail’, ’72×72′, ‘-background’, ‘none’, ‘-quality’, ‘100’, ‘-define’, ‘JPEG_QUALITY’, ‘-define’, ‘JPEG_QUALITY_MIN’, ‘-define’, ‘JPEG_QUALITY_MAX’, ‘-define’, ‘JPEG_QUALITY_OPTIMIZED’, ‘outDir/out1.jpg’])
#more code which does stuff to the PNGs
if __name__ == ‘__main__’:
When I run this script, I get an error:
error: [Errno 2] No such file or directory
This is because, at some point in the main() function, it has altered the working directory of the script. I should add that the script works fine if I manually change the working directory. The problem is, I want to be able to run it as a cron job, and it looks like the script wouldn’t be able to handle being run as the user’s home directory at all, so I can’t do what I want to do.
I’ve been digging around for help, and I found this question on
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A wide variety of security related devices and systems have been developed. Some of these security related devices can act as sensors to determine if an object is authorized, while other security related devices can act as actuators for applying a force to an object. For example, one class of “smart door lock” can act as a “sensor” for the door, determining if an authorized person is attempting to enter the area behind the door. Once the lock determines that the person is authorized to enter, the device can actuate the door to lock, permitting authorized persons entry. As another example, some household keys have a neodymium (“Neodymium”) magnet embedded in the key that can act as a sensor to determine whether the key is present within a magnetic field. When the key is magnetically located within the magnetic field, the sensor can send out an electric current, or “fuse”, that can be detected by a processor. The processor will then use this information to activate a lock, where the key can be used to lock and unlock the door. Thus, by attaching a neodymium magnet to a key, a user can be provided with a key that can act as both a sensor and an actuator.
In the case of the “smart door lock”, the sensor can be designed to be easily removed by an unauthorized person, thus allowing an authorized person to remove the sensor from the device and use the key in the normal manner, without the need for re-keying the door. In this way, a small number of keys can be used to allow a large number of people access to a locked area. However, the magnet embedded within the key can also be used to limit the number of keys that can be used with the “smart door lock”. Specifically, it is often desirable to embed the magnet in a key that corresponds to a particular lock. For example, the first key to be used with the door can be used to unlock the door, and the second key can be used to lock the door. This pattern of keys can be used by a large number of people, each person using a different key that corresponds to a different lock, requiring a large number of keys to be used. By embedding a magnet in a key that corresponds to a particular lock, the size of the key can be reduced, and therefore a smaller number of keys can be used. This can greatly increase the number of potential users,
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The original version was a little bigger, at ~ 100,000 words. I plan on eventually releasing a book-length version of this as it’s getting a bit too large for the Internet to take in. As of today, I have completed another version that is more streamlined and revised, and I’d like to share it with you.
This book is quite accessible for beginners. Many users just want to get up