Showing posts with label 3d scanner industrial. Show all posts
Showing posts with label 3d scanner industrial. Show all posts

Thursday, December 19, 2013

Is there any other COOL editing software like iStopmotion i can use to make awesome videos?

3d scanner industrial
 on Industrial CT Scanning
3d scanner industrial image



JustASmall


What is it called and what does it do... thanks!!


Answer
Try these. All are FREE......

Pencil : http://www.pencil-animation.org/
Pencil is an animation/drawing software for Mac OS X, Windows, and Linux. It lets you create traditional hand-drawn animation (cartoon) using both bitmap and vector graphics. Pencil is free and open source.

Synfig Animation Studio : http://synfig.org/
Synfig is a powerful, industrial-strength vector-based open-source 2D animation software package, designed from the ground-up for producing feature-film quality animation with fewer people and resources.2D Animation has traditionally been very expensive because every frame must be drawn by hand. Even with today´s digital inking and painting software, the process still relies on individuals hand-drawing each frame. This laborious task is called "tweening".Synfig eliminates the task of manual tweening, producing smooth, fluid motion without the animator having to draw out each frame individually. This allows you to produce 2D animation with fewer people while producing art of a higher quality.

Tapptoons Linetester : http://myweb.tiscali.co.uk/tapptoons/index.htm
The Tapptoons Linetester enables animators to use a scanner or video camera (with compatible capture card) to input animation images into a standard PC and edit their work, adding soundtrack and color if they wish and to output the result as a Windows AVI. Can be used for puppet animation as well as drawn animation.

eDrawings : http://www.edrawingsviewer.com/
eDrawings is a freeware utility which will give the user the power to view, create and share 3D models and 2D drawings. eDrawings offers unique capabilities like point-and-click animations that make it easy for anyone with a PC to interpret and understand 2D and 3D design data.

In what ways do robots help humans?







In what ways? do they make our jobs easier. and how do they help us


Answer
Contemporary uses
Main articles: Industrial robot and Domestic robot

Robots can be placed into roughly two classifications based on the type of job they do. The first category includes tasks which a robot can do better than a human. Here, robots can increase productivity, accuracy, and endurance. The second category consists of dirty, dangerous or dull jobs where it is desirable to replace human labor with robotics.


[edit] Increased productivity, accuracy, and endurance
A Pick and Place robot in a factory

Many factory jobs are now performed by robots. This has led to cheaper mass-produced goods, including automobiles and electronics. Stationary manipulators used in factories have become the largest market for robots. In 2006, there were an estimated 3,540,000 service robots in use, and an estimated 950,000 industrial robots. [35] A different estimate counted more than one million robots in operation worldwide in the first half of 2008, with roughly half in Asia, 32% in Europe, 16% in North America, 1% in Australasia and 1% in Africa.[36]

Some examples of factory robots:

* Car production: Over the last three decades automobile factories have become dominated by robots. A typical factory contains hundreds of industrial robots working on fully automated production lines, with one robot for every ten human workers. On an automated production line, a vehicle chassis on a conveyor is welded, glued, painted and finally assembled at a sequence of robot stations.
* Packaging: Industrial robots are also used extensively for palletizing and packaging of manufactured goods, for example for rapidly taking drink cartons from the end of a conveyor belt and placing them into boxes, or for loading and unloading machining centers.
* Electronics: Mass-produced printed circuit boards (PCBs) are almost exclusively manufactured by pick-and-place robots, typically with SCARA manipulators, which remove tiny electronic components from strips or trays, and place them on to PCBs with great accuracy.[37] Such robots can place hundreds of thousands of components per hour, far out-performing a human in speed, accuracy, and reliability.[38]

Automated guided vehicle carrying medical supplies and records

* Automated guided vehicles (AGVs): Mobile robots, following markers or wires in the floor, or using vision[39] or lasers, are used to transport goods around large facilities, such as warehouses, container ports, or hospitals.[40]

*
o Early AGV-Style Robots were limited to tasks that could be accurately defined and had to be performed the same way every time. Very little feedback or intelligence was required, and the robots needed only the most basic exteroceptors (sensors). The limitations of these AGVs are that their paths are not easily altered and they cannot alter their paths if obstacles block them. If one AGV breaks down, it may stop the entire operation.

*
o Interim AGV-Technologies developed that deploy triangulation from beacons or bar code grids for scanning on the floor or ceiling. In most factories, triangulation systems tend to require moderate to high maintenance, such as daily cleaning of all beacons or bar codes. Also, if a tall pallet or large vehicle blocks beacons or a bar code is marred, AGVs may become lost. Often such AGVs are designed to be used in human-free environments.

*
o Newer AGVs such as the Speci-Minder,[41] ADAM, [42] Tug[43] and PatrolBot Gofer[44] are designed for people-friendly workspaces. They navigate by recognizing natural features. 3D scanners or other means of sensing the environment in two or three dimensions help to eliminate cumulative errors in dead-reckoning calculations of the AGV's current position. Some AGVs can create maps of their environment using scanning lasers with simultaneous localization and mapping (SLAM) and use those maps to navigate in real time with other path planning and obstacle avoidance algorithms. They are able to operate in complex environments and perform non-repetitive and non-sequential tasks such as transporting photomasks in a semiconductor lab, specimens in hospitals and goods in warehouses. For dynamic areas, such as warehouses full of pallets, AGVs require additional strategies. Only a few vision-augmented systems currently claim to be able to navigate reliably in such environments.

[edit] Dirty, dangerous, dull or inaccessible tasks
A U.S. Marine Corps technician prepares to use a telerobot to detonate a buried improvised explosive device near Camp Fallujah, Iraq

There are many jobs which humans would rather leave to robots. The job may be boring, such as domestic cleaning, or dangerous, such as exploring inside a volcano.[45] Other jobs are physically inaccessible, such as exploring another planet,[46] cleaning the inside of a long pipe, or performing laparoscopic surgery.[47]

* Telerobots: When a

Tuesday, September 24, 2013

What is Illusion of Depth??????!!!!!!!!?

3d scanner industrial
 on Amazon.com: The Disappearance Of John Longworthy (9781173646240 ...
3d scanner industrial image



poopstains


i just need the definition!!!!!!


Answer
Stereopsis (from stereo meaning solidity, and opsis meaning vision or sight) is the process in visual perception leading to perception of stereoscopic depth. In turn, stereoscopic depth is the sensation of depth that emerges from the fusion of the two slightly different projections of the world on the two retinas. The difference between the two eyes' images, which is a result of the eyes' horizontal separation, is usually referred to as binocular disparity or retinal disparity. The fact that this binocular disparity is interpreted by the brain as depth was first discovered by Charles Wheatstone, a British scientist, and described by him in a classic paper[1] published in 1838: â⦠the mind perceives an object of three-dimensions by means of the two dissimilar pictures projected by it on the two retinæâ¦â, (Wheatstone, 1838). To prove his ideas, Wheatstone invented a simple device which he dubbed a stereoscope. Using his newly invented stereoscope Wheatstone was able to convincingly show that a vivid sense of depth emerges from two completely flat pictures depicting two different projections of the same scene.

or

Stereoscopy, stereoscopic imaging or 3-D (three-dimensional) imaging is any technique capable of recording three-dimensional visual information or creating the illusion of depth in an image. The illusion of depth in a photograph, movie, or other two-dimensional image is created by presenting a slightly different image to each eye. Many 3D displays use this method to convey images. It was first invented by Sir Charles Wheatstone in 1840.[1] Stereoscopy is used in photogrammetry and also for entertainment through the production of stereograms. Stereoscopy is useful in viewing images rendered from large multi-dimensional data sets such as are produced by experimental data. Modern industrial three dimensional photography may use 3D scanners to detect and record 3 dimensional information. The three-dimensional depth information can be reconstructed from two images using a computer by corresponding the pixels in the left and right images. Solving the Correspondence problem in the field of Computer Vision aims to create meaningful depth information from two images.

Traditional stereoscopic photography consists of creating a 3-D illusion starting from a pair of 2-D images. The easiest way to create depth perception in the brain is to provide the eyes of the viewer with two different images, representing two perspectives of the same object, with a minor deviation similar to the perspectives that both eyes naturally receive in binocular vision. If eyestrain and distortion are to be avoided, each of the two 2-D images preferably should be presented to each eye of the viewer so that any object at infinite distance seen by the viewer should be perceived by that eye while it is oriented straight ahead, the viewer's eyes being neither crossed nor diverging. When the picture contains no object at infinite distance, such as a horizon or a cloud, the pictures should be spaced correspondingly closer together.

what is photoshop?




*~KoolChic


i want to know what it is and i actually wi cant to try it if i can find out how it works


Answer
here you go!!!

Adobe Photoshop, or simply Photoshop, is a graphics editor developed and published by Adobe Systems. It is the current market leader for commercial bitmap and image manipulation, and is the flagship product of Adobe Systems. It has been described as "an industry standard for graphics professionals."[1] Although originally designed to edit images for paper-based printing, Photoshop can also be used for a wide range of other professional and amateur purposes.

The current (10th) iteration of the program was released on April 16, 2007 and is marketed as "Photoshop CS3." "CS" reflects its integration with other Creative Suite products, and the number "3" represents it as the third version released since Adobe re-branded their products under the CS umbrella. Photoshop CS3 features additions such as the ability to apply non-destructive filters, and new selection tools named Quick Selection and Refine Edge that make selection more streamlined. On April 30th, Adobe released Photoshop CS3 Extended, which includes all the same features of Adobe Photoshop CS3 plus capabilities for scientific imaging, 3D, plus high end film and video users

Development

Early history
In 1987, Thomas Knoll, then a PhD student at the University of Michigan, began writing a program on his Macintosh Plus to display grayscale images on a monochrome display. This program, called Display, caught the attention of his brother John Knoll, an Industrial Light & Magic employee, who recommended Thomas turn it into a full-fledged image editing program. Thomas took a six month break from his studies in 1988 to collaborate with his brother on the program, which had been renamed ImagePro.[2] In 1988, Thomas renamed his program Photoshop and worked out a short-term deal with scanner manufacturer Barneyscan to distribute copies of the program (under the name Barneyscan XP) with their scanners.[3]

During this time, John traveled to Silicon Valley and gave a demonstration of the program to engineers at Apple Computer Inc. and Russell Brown, art director at Adobe. Both showings were successful, and Adobe decided to purchase the license to distribute in September 1988.[2] While John worked on plug-ins in California, Thomas remained in Ann Arbor writing out program code. Photoshop 1.0 was released in 1990 for Macintosh exclusively, and fit on one 1.44 MB floppy disk.[4]


Adobe releases
Further information: Adobe Photoshop release history

Photoshop CS in WindowsContinual revisions were made to the program and new versions were released in the following years. Version 2.0 became compatible with Windows in November 1992, and one year later it was ported to the SGI IRIX and Sun Solaris platforms. In September 1994, version 3.0 was released, which introduced layers and tabbed palettes. This version's logo also introduced the 'eye' motif seen until version 8.0 of the program.[5] In February 2003, the program shipped with the Camera RAW 1.x plug-in, which allowed the user to import RAW formats from different digital cameras directly into Photoshop.[6]

In October 2003, the program was renamed Adobe Photoshop CS. The name uses the abbreviation CS for products in Adobe Creative Suite. The logo focused around a feather, which was also used in 9.0.[5] The 10th version, Photoshop CS3 was released on April 16, 2007, with an icon modeled after periodic table elements, matching the new icons of other Creative Suite products.


Features

CS3

Smart Layers, nondestructive filter applicationCS3 is marketed with three main components of improvement over previous versions: "Work more productively, Edit with unrivaled power, and Composite with breakthrough tools."[7] New features propagating productivity include streamlined interface, improved Camera Raw, better control over print options, enhanced PDF support, and better management with Adobe Bridge. Editing tools new to CS3 are the Clone Source palette and nondestructive Smart Filters, and other features such as the Channel Mixer and Vanishing Point are enhanced. Compositing is assisted with Photoshop's new Quick Selection and Refine Edge tools, and improved Photomerge technology.[7]

CS3 Extended contains all features of CS3 plus tools for editing and importing some 3D graphics file formats, enhancing video, and comprehensive image analysis tools, utilizing MATLAB integration and DICOM file support.[8]

The logo is composed of white letters 'Ps' on a gradient blue square.


General
Photoshop has strong ties with other Adobe software for media editing, animation and authoring. Files in Photoshop's native format, .PSD, can be exported to and from Adobe ImageReady, Adobe Illustrator, Adobe Premiere Pro, After Effects and Adobe Encore DVD to make professional standard DVDs, provide non-linear editing and special effects services such as backgrounds, textures and so on for television, film and the Web. For example, Photoshop CS broadly supports making menus and buttons for DVDs. For .PSD files exported as a menu or button, it only needs to have layers, nested in layer sets with a cuing format and Adobe Encore DVD reads them as buttons or menus.

Photoshop can utilize the color models RGB, lab, CMYK, grayscale, bitmap, and duotone. Photoshop has the ability to read and write Raster and Vector image formats such as: .EPS, .PNG, .GIF, .JPEG, Fireworks, etc. It also has several native file formats:

The .PSD (Photoshop Document) format stores an image with support for most imaging options available in Photoshop. These include layers with masks, color spaces, ICC profiles, transparency, text, alpha channels & spot colors, Clipping paths, and duotone settings. This is in contrast to many other file formats (e.g. .EPS or .GIF) that restrict content to provide streamlined, predicatable functionality. Photoshop's popularity means that the .PSD format is widely used, and it is supported to some extent by most competing software.
The .PSB (Photoshop Big) format is a newer version of .PSD designed for files over 2 gigabytes.
The .PDD (PhotoDeluxe Document) format is a version of .PSD that only supports the features found in the discontinued PhotoDeluxe software.
While Photoshop is the industry standard image editing program for professional raster graphics, its relatively high suggested retail price has led to a number of competing graphics tools being made available at lower prices for the amateur market. To compete in this market, and to counter unusually high rates of piracy of their high end products, Adobe introduced Photoshop Elements, a version of Photoshop with many professional features removed. This is aimed firmly at the general consumer market as it is less desirable for prepress work.


Trademark
Adobe discourages use of their trademarks as a verb, as in "that picture was photoshopped". As with all trademarks, their product names and elements are part of licensing and graphic identity programs, and any attempt to undermine their position is expressly prohibited.[9]




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Wednesday, August 7, 2013

In what ways do robots help humans?

3d scanner industrial
 on The History Of Napoleon, Volume 1: Richard H. Horne: 9781176035560 ...
3d scanner industrial image






In what ways? do they make our jobs easier. and how do they help us


Answer
Contemporary uses
Main articles: Industrial robot and Domestic robot

Robots can be placed into roughly two classifications based on the type of job they do. The first category includes tasks which a robot can do better than a human. Here, robots can increase productivity, accuracy, and endurance. The second category consists of dirty, dangerous or dull jobs where it is desirable to replace human labor with robotics.


[edit] Increased productivity, accuracy, and endurance
A Pick and Place robot in a factory

Many factory jobs are now performed by robots. This has led to cheaper mass-produced goods, including automobiles and electronics. Stationary manipulators used in factories have become the largest market for robots. In 2006, there were an estimated 3,540,000 service robots in use, and an estimated 950,000 industrial robots. [35] A different estimate counted more than one million robots in operation worldwide in the first half of 2008, with roughly half in Asia, 32% in Europe, 16% in North America, 1% in Australasia and 1% in Africa.[36]

Some examples of factory robots:

* Car production: Over the last three decades automobile factories have become dominated by robots. A typical factory contains hundreds of industrial robots working on fully automated production lines, with one robot for every ten human workers. On an automated production line, a vehicle chassis on a conveyor is welded, glued, painted and finally assembled at a sequence of robot stations.
* Packaging: Industrial robots are also used extensively for palletizing and packaging of manufactured goods, for example for rapidly taking drink cartons from the end of a conveyor belt and placing them into boxes, or for loading and unloading machining centers.
* Electronics: Mass-produced printed circuit boards (PCBs) are almost exclusively manufactured by pick-and-place robots, typically with SCARA manipulators, which remove tiny electronic components from strips or trays, and place them on to PCBs with great accuracy.[37] Such robots can place hundreds of thousands of components per hour, far out-performing a human in speed, accuracy, and reliability.[38]

Automated guided vehicle carrying medical supplies and records

* Automated guided vehicles (AGVs): Mobile robots, following markers or wires in the floor, or using vision[39] or lasers, are used to transport goods around large facilities, such as warehouses, container ports, or hospitals.[40]

*
o Early AGV-Style Robots were limited to tasks that could be accurately defined and had to be performed the same way every time. Very little feedback or intelligence was required, and the robots needed only the most basic exteroceptors (sensors). The limitations of these AGVs are that their paths are not easily altered and they cannot alter their paths if obstacles block them. If one AGV breaks down, it may stop the entire operation.

*
o Interim AGV-Technologies developed that deploy triangulation from beacons or bar code grids for scanning on the floor or ceiling. In most factories, triangulation systems tend to require moderate to high maintenance, such as daily cleaning of all beacons or bar codes. Also, if a tall pallet or large vehicle blocks beacons or a bar code is marred, AGVs may become lost. Often such AGVs are designed to be used in human-free environments.

*
o Newer AGVs such as the Speci-Minder,[41] ADAM, [42] Tug[43] and PatrolBot Gofer[44] are designed for people-friendly workspaces. They navigate by recognizing natural features. 3D scanners or other means of sensing the environment in two or three dimensions help to eliminate cumulative errors in dead-reckoning calculations of the AGV's current position. Some AGVs can create maps of their environment using scanning lasers with simultaneous localization and mapping (SLAM) and use those maps to navigate in real time with other path planning and obstacle avoidance algorithms. They are able to operate in complex environments and perform non-repetitive and non-sequential tasks such as transporting photomasks in a semiconductor lab, specimens in hospitals and goods in warehouses. For dynamic areas, such as warehouses full of pallets, AGVs require additional strategies. Only a few vision-augmented systems currently claim to be able to navigate reliably in such environments.

[edit] Dirty, dangerous, dull or inaccessible tasks
A U.S. Marine Corps technician prepares to use a telerobot to detonate a buried improvised explosive device near Camp Fallujah, Iraq

There are many jobs which humans would rather leave to robots. The job may be boring, such as domestic cleaning, or dangerous, such as exploring inside a volcano.[45] Other jobs are physically inaccessible, such as exploring another planet,[46] cleaning the inside of a long pipe, or performing laparoscopic surgery.[47]

* Telerobots: When a human cannot be present on site to perform a job because

people who study computer science in university. what kind of jobs do they get after the course?




Joe O





Answer
Computers have a lot of applications these days.

The main could be said as:
Products for Office (MS Word, Excel and the like) - people needed to plan, design, and develop these - same for all the others;
Products for entertainment (3D Game design and development, Visual effects, film),
Web based development (online payment gateways or products [PayPal], auctions [Ebay], Email clients[Yahoo!], search [Google] and a host of endless options
Other high-end software - like simulators (could be anything - from car crash simulators, weather simulators), health-care based systems (eye scanners, body scanners and other such tools),
Robotics and AI - used to develop 'home' or industrial robots,
and so on.

The pay is pretty good though it depends on the company size and geography. May start at 45K p.a or above.




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