Posts Tagged ‘work’

Painter Uses Art Supplies to Make 3D Pictures

Artist Sarah Graham utilises art supplies to fool people into thinking that her paintings are three dimensional.

The artist said on her official website that she has developed her own photorealist style that aims to create an image which is as life-like as possible and makes the viewer think that the painting is real.

Sarah Graham said: “I have been developing a method of painting specific to creating the illusion of three-dimensionality. I am so practised now in this particular method of painting it has become the most natural way for me to approach creating an image.”

Ms Graham regularly creates paintings with art supplies that depict children’s sweets like lollipops, pick ‘n’ mix confectionary, toys and popular vehicles such as Minis and VW camper vans.

Art website The Fine Art Blog has praised Sarah Graham’s work for being so realistic that it became actually tempting.

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The Blog said: “The end product of her work is very bright and colourful, and usually looks good enough to eat!!!”

Sarah Graham’s career painting confectionary has its roots in her earlier job as an assistant on Woolworth’s pick ‘n’ mix counter which she did before graduating from De Montfort University in Leicester with a BA in Fine Art in 2000.

Following graduation Sarah Graham became more established as an artist with exhibitions in New York, Melbourne and Sydney and she was eventually signed by fine art publisher Washington Green.

Samantha Jackson, marketing director at the firm, told the Metro: “We expect Sarah’s work to connect with a whole new generation of people looking for a highly original style of art to decorate their walls.”

The Hitchin-born artist began to paint detailed portraits of university class mates from photographs after being inspired by German visual artist Gerhard Richter.

She said: “My hero and inspiration is the German painter Gerhard Richter, and he’s still prolific at 76, it’s hard to even comprehend managing that, but I intend to give it a try.”

Sarah Graham picked Richter as one of her five favourite artists in an edition of Fine Art Collector alongside American printmaker Andy Warhol, friend Charlotte Hardy, Yorkshire painter David Hockney, and contemporary artist Mitch Griffiths.

The artist is an inspiration for anyone looking to develop a creative career after buying art materials and art supplies.

Designer Helen Rochfort has previously teamed up with Sarah Graham to create a limited edition of handbags feature kitsch pictures.

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Leverage The Virtual Model To Grow Your Business

The majority of the work force will soon be working virtually. That paradigm shift is happening now. Progressively larger segments of the population, even government workers, are going virtual. This trend is accelerating due to several compelling, interconnected forces. And this trend offers great competitive advantages to entrepreneurs, start ups and small businesses. These compelling forces include: # Increasingly pervasive global Internet accessibility # Powerful and inexpensive cloud computing solutions # A population that is rapidly embracing the Internet in increasingly intimate spaces # Massive savings on overhead for employers # Extremely inexpensive or even free communication (Skype, Instant Messaging, Dimdim, GoToMeeting, WebEx, etc.) # Social networking and related tools like Facebook, LinkedIn, eMail and YouTube # Increasing costs related to energy and commuting # Continued challenges impacting travel # Time loss caused by commuter distance These factors combine to give us the fundamental reasons for this virtual paradigm shift. This shift is happening with large corporations and small companies, with distributed work forces and solo entrepreneurs, with stay at home moms (or dads) and high-powered consultants. Take a quick look around your neighborhood and you’re likely to find 25% of your neighbors already working from home. We’re not just talking about telecommuters; many of these virtual workers are entrepreneurs, small business owners, contractors, consultants, and independent professionals beginning to take advantage of a better, more profitable model and a more flexible lifestyle. The virtual model levels the playing field, offering small businesses powerful cloud computing, cost effective web site development, robust eMarketing and web seminar capabilities and a cacophony of contractor services at their fingertips. The expensive main street store has been replaced with a highly cost effective home based operation, but the home based operation can look just as professional as a billion dollar conglomerate. You may have heard the famous sales adage, “nothing happens until someone sells something”. This saying rings true for both traditional and virtual businesses. But virtual businesses offer a much better path to profitability and improve the likelihood of success – after all – 30% or more of your traditional overhead disappears resulting in a dramatic gross margin improvement over traditional brick and mortar companies. And today – you no longer have to worry about looking or sounding like a reputable business – it’s easy to do using the virtual model.

Dunamis is a guy who takes time out of his busy schedules daily to write about various ways and tips on how to make money online. You can learn more tips by visiting his blog titled how to make money online easily.


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Sheet Metal Fabrication in Manufacturing

Sheet metal is a title provided for metal which is crafted into flat pieces. Sheet metal is a vital in metal working since it’s so flexible and flexible, it could actually easily be formed and bent into various different forms, yet it’s still strong and hard. During the past, sheet metal was applied in plate armor donned by cavalry. However, these days it really is found in a lot larger product range including car bodies, airplane wings, medical tables and roofs. Without a doubt, several every day physical objects are manufactured making use of sheet metal. The density of it could actually differ rather substantially according to what it really is likely to be utilized for. For instance there are actually the really thin examples, for instance aluminum foilwhich is utilized for cooking food, however the thickest a piece of metal may be before it really is considered to be a plate as opposed to a sheet is Sixmm.
 
You can find organizations that specialize in the fabrication of sheet metal work and sheet metal products. They are able to offer a array of expert services which includes batch work, sheet metal work or thin plate fabrication, welding, tig welding and mig welding, prototype fabrication and production runs. It being industrial work, this kind of sheet metal fabrication organizations pride themselves not merely on the top quality of the work but additionally the speed of the service, because their consumers frequently have to satisfy tight deadlines too. All the Sheet metal work and precise laser cutting is usually done in house, thus promising a high level of speed and high quality control. Consumers can easilymake contact with fabrication organizations on the web.
 
Due to the fact Sheet metal is definately a broadly useful and valuable substance, sheet metal fabrication organizations work and liaise with a huge selection of companies which include food and hygiene organizations, the ministry of defence, automotive firms, lighting, furniture and others throughout the country. The sheet metal is developed making use ofCAD and CAM software and a vast range of metals which includesaluminum; brass, copper, steel, tin, nickel and titanium.

Natalie Eastaugh is the Internet Marketing Specialist for JDRWebsites.co.uk
If you wish to find out more on as well as information about Wheeler Fabrications, go to www.wheelerfabrications.com


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The Best Features Of Rapid Prototype Product Development Method

The method has a number of key distinctions: Unlike traditional, linear models of rapid prototype product development, it’s a cyclical process where one cycle inputs into the next and where a variety of solutions move repeatedly through a range of stages. It integrates rapid prototype and multidisciplinary teams to allow numerous, and nearly simultaneous, iterations.

Inspired, in part, by approaches and techniques commonly employed in food industry test kitchens, this method requires a devoted team, incorporating all appropriate disciplines and allowing a broad range of process options for comparison and contrast as to efficacy, scaling and suitability.

This method typically postpones confirmation of a concept until several iterative cycles have been conducted, to preserve flexibility and to allow incorporation of new ideas into a synthesized set of solutions. Traditional approaches frequently focus early on a preferred outcome rather than permitting the open consideration of alternatives.

In rapid prototype, numerous potential processes may be evaluated and ranked for strengths and weaknesses. Experimental work and iterative prototype testing determines the right combination of conditions for each potential stage or step in the process. By combining unit processes that are most promising, a new process train can be defined, installed and tested, incorporating the best attributes and practices of the variations considered. And, of course, as with tasting in a “test kitchen,” the product is sampled, analyzed and tested without delay.

Why outsource development?
Companies outsource work for many reasons, often expecting to reduce costs and time to completion or to resolve resource availability issues. Sometimes the reason is safety, secrecy or anticipated production problems.

Many companies presume that cost is the easiest factor to assess and, consequently, they allow the purchasing department to evaluate the decision to “make or buy” developmental services. Unfortunately, many purchasing executives lack the information for an in-depth analysis and understanding of all relevant costs and risks. For example, in comparing the “price” quoted by an independent facility to an internal “budget,” a purchasing executive may ignore critical risk factors or competition for internal resources simply because that information is not presented to him.

Some companies have saved millions of dollars by employing outsourced facilities to take the risks in scale-up, notable among them, firms in the pharmaceutical industry. There are several examples in our database where the world’s foremost experts in a particularly narrow field of chemistry learned to their horror that the impossible does occur.

In one memorable case, a client company assured us that its fluorinated product was entirely stable and couldn’t damage our all-glass, high-vacuum distillation system. The glassware was replaced. Had this work been performed in the client’s facility, the notoriety and delays in incident investigation and equipment replacement might have had disastrous consequences for other products and work scheduled in their facility.

“There are so many constraints for companies — some initially unforeseen — in new product development,” says Mike Keenan, a retired senior chemist from Exxon who has worked and consulted on a number of projects at Pressure Chemical. “Since many companies are committed to existing technologies, it’s difficult for them to have the equipment, capital and, sometimes, the mindset to develop new products and processes efficiently. And companies vary in their strengths. Some are superb at taking someone else’s process and making it more efficient and effective. Others are better at discovering a new process from scratch. In any event, outsourcing certain stages of the product development process can bolster total development efforts,” according to Keenan.

“You need to develop new products outside of the typical constraints of manufacturing, preferably where you can brainstorm for ideas with operators, chemists, mechanics, engineers and regulatory specialists,” Keenan added. “You need to be in a place where change is anticipated and facilitated, not where change requires sign-off at several levels and can take weeks or months.”

Changing equipment and process procedures are germane to the development process. “Unanticipated issues arise during scale-up; it’s common to change equipment and conditions midway through the development process, even during the course of a reaction” said Brandon Ritchie, a senior project manager at Pressure Chemical. “It’s much easier to change something in a well equipped pilot plant than in a client’s production facility. Safety, flexibility and speed are everything in process development,” he added. Pressure Chemical’s project leaders are given full authority to accept client initiated changes in equipment and operating conditions so long as the change conforms to defined safety requirements.

For example, a new client project required some dramatic modifications to the distillation of a high melting monomer. The attempted distillation resulted in a lot of freezing in the process piping. The problem was solved by injecting an appropriate solvent into the overhead to deliver the product as a solution. “We had the ability to modify the equipment quickly and to develop a new, highly successful process for the distillation,” Ritchie said, adding that this preserved the delivery schedule for the product.

Regulatory issues
Large rapid prototype Shenzhen companies are well aware of the impact of federal, state and local regulatory issues in product and process development. Smaller companies, especially ones that do not manufacture novel chemical products, may be totally unaware of the regulations affecting new chemicals. An independent pilot facility that specializes in innovative materials maintains an awareness and working knowledge of the rules, limitations and regulations impacting its customers’ development efforts. For those without the internal regulatory capability, an early consultation with an independent pilot facility should at least identify regulatory issues.

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Using 3D Laser Scanning Services For Construction Surveys

Today’s technological advancement has brought a lot of changes and improvements to people’s lifestyles. The way they live their lives as of now is totally different compared to the way they used to before. There are a lot of new inventions that have made their lives easier and more comfortable.

A lot of new things have surfaced to make life very comfortable where one person only needs to move too little just to operate machines. Everything can be operated by just a press of button and they can leave them to do their chores or work. Fully automated machines that need very little supervision and monitoring are the ones that do most of the household work as of these days.

Even with the applications of computers, they have evolved into more powerful machines. They are no longer used for simple programming or computing devices but also for movie productions and music editing. The games are now in full 3D even movies are now more realistic because of 3D effects.

3D does not only end there, they are also machines being used to simplify the work of building surveying. Constructors as of now use 3D laser scanning services to get a better and more accurate measurements of data needed in making their building designs. This process also decreases the amount spent on surveying processes that are done. This has been proven to be better than the traditional surveying methods that were used before.

Traditional surveying methods can take weeks before the surveying process to be completed. Using 3D laser scanning services to survey can provide results within just a one-time surveying session. This is really beneficial as it can take the redundant process of surveying again and again from start to finish.

3D laser scanning services is actually being used in different areas already like measured building surveys, measured industrial surveys, engineering surveys, and deformation surveys. With measure building surveys, this is where they gather exact building measurements of different types of buildings. They create 3D models of these buildings so they can see the exact floor plans, elevations and other sections of the building.

This new kind of surveying can really help make work faster for constructors and engineers so building a building is faster.

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How to use widgets to improve collaborative work with Justinmind Prototyper

Some big projects done with Justinmind Prototyper involve more than one person. Sometimes big teams work together to create something, and thus collaboration-management is a very important feature of our wireframe authoring tool.

Keeping the same design code throughout the project

Widgets and templates can be used to maintain the same styles, colours, events and structures which are repeated throughout several pages. The main designer can create the objects following the brand guidelines, and other users will simply drop them on their canvas, without any confusion of mistaken sizes, colours or deprecated styles. Also, it improves work, since things don’t need to be redrawn.

The filetypes for templates, masters and widgets are accepted in most Justinmind Prototyper versions, and are small, making them shareable by mail, network or even personal messaging systems. Also, most common media types, such as jpg and gifs, are accepted by Justinmind Prototyper.

Creating widget sets for determined projects

Let’s say you have a project with many, many screens, but just one designer. He can create the widget set that will be used, with specific properties, and several users can easily follow the guidelines.

There are widget sets for specific hardware and interfaces, such as iPhone or Android. With them, you can simulate all the UI of the phone in your computer, and specify the development of the software. You can always find more widgets at Justinmind.com.

Comments and requirements management

Not everybody’s comfortable with Justinmind Prototyper’s ease of use, but still have changes and modifications to do in the wireframe or prototype. Sometimes, the clients want to add their views and opinions, and they’re able to do that with JP Requirements Management feature. They can comment and link their comment to any specific feature. Also, they can specify features or requirements, and this can be related to any version of the software. Of course, these comments can be exported and organized in personalized .doc templates, for reports, summaries and analysis.

A team works better when it communicates better

Every manager knows the importance of being understood, and that details are organized and overseen. So, using Justinmind Prototyper to optimize teamwork is the best option to assure everything will run smoothly and within the deadline.

From wireframe to final development specifications, your team will work better with Justinmind Prototyper.

Justinmind Prototyper is an authoring tool for high fidelity wireframes and prototypes. If you’re interested, follow our blog’s feed or follow us on twitter.


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Help of 3D Illustrations for Business

3D illustration is the representation of an object in the virtual 3D world. It is very effective for displaying and communicating design ideas for various types of projects. Many times, a simple image on a paper is not a true representation of that object and many aspects may be missing. In such cases, 3D illustrations are very helpful for displaying what the object actually looks like.

3D illustration can be a very useful tool for many types of businesses. For marketing firms, 3D illustrations are essential for making logos and promotional campaigns. In today’s world the logo of a product makes a big difference in its success and a 3D logo is something that stands out and catches people’s attention.

3D illustration is also very helpful for production firms. Before a product is finalized, it has to be designed and finalized. One of the best ways to do this is through 3D modeling which can help build up a close prototype of the product. In this way, any design and functional flaws can be identified before the product is finalized.

Engineering firms can also greatly benefit from 3D illustration. They can use this technology for making engineering models which can greatly help in the development phase of any engineering project. 3D illustration will help expose any design flaws and lay down a foundation on which the actual work is to be done.

Many garment manufacturers are using 3D illustration for their customers. These illustrations can help the customers see the finished product virtually from all angles before finalizing a sale. This is helpful for the manufacturers because it helps finalize the end product.

3D illustrations are most widely used in architecture firms. Drawing manual sketches of designs and layouts are a thing of the past and nowadays everything is being done through computers. 3D illustration can help the clients get a real feel of the architectural design before it is built so that they can design and change accordingly. It is also extremely helpful for architects to understand the plans and layouts. This makes their work much easier and helps increase customer satisfaction.

 

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History of Cad

Designers have long used computers for their calculations. Initial developments were carried out

in the 1960s within the aircraft and automotive industries in the area of 3D surface construction

and NC programming, most of it independent of one another and often not publicly published until

much later. Some of the mathematical description work on curves was developed in the early 1940s

by Isaac Jacob Schoenberg, Apalatequi (Douglas Aircraft) and Roy Liming (North American

Aircraft), however probably the most important work on polynomial curves and sculptured surface

was done by Pierre Bezier (Renault), Paul de Casteljau (Citroen), Steven Anson Coons (MIT, Ford),

James Ferguson (Boeing), Carl de Boor (GM), Birkhoff (GM) and Garabedian (GM) in the 1960s and W.

Gordon (GM) and R.

It is argued that a turning point was the development of SKETCHPAD system in MIT in 1963 by Ivan

Sutherland (who later created a graphics technology

company with Dr. David Evans). The distinctive feature of SKETCHPAD was that it allowed the

designer to interact with his computer graphically: the design can be fed into the computer by

drawing on a CRT monitor with a light pen. Effectively, it was a prototype of graphical user

interface, an indispensable feature of modern CAD.

First commercial applications of CAD were in large

companies in the automotive and aerospace industries, as well as in electronics. Only large

corporations could afford the computers capable of performing the calculations. Notable company

projects were at GM (Dr. Patrick J.Hanratty) with DAC-1 (Design Augmented by Computer) 1964;

Lockhead projects; Bell GRAPHIC 1 and at Renault (Bezier) – UNISURF 1971 car body design and

tooling.

One of the most influential events in the development of CAD was the founding of MCS

(Manufacturing and Consulting Services Inc.) in 1971 by Dr. P. J. Hanratty[7], who wrote the

system ADAM (Automated Drafting And Machining) but more importantly supplied code to companies

such as McDonnell Douglas (Unigraphics), Computervision (CADDS), Calma, Gerber, Autotrol and

Control Data.

As computers became more affordable, the application areas have gradually expanded. The

development of CAD software for personal desk-top computers was the impetus for almost

universal application in all areas of construction.

Other key points in the 1960s and 1970s would be the foundation of CAD systems United Computing,

Intergraph, IBM, Intergraph IGDS in 1974 (which led to Bentley MicroStation in 1984)

CAD implementations have evolved dramatically since then. Initially, with 2D in the 1970s, it was

typically limited to producing drawings similar to hand-drafted drawings. Advances in programming

and computer hardware, notably solid modeling in the 1980s, have allowed more versatile

applications of computers in design activities.

Key products for 1981 were the solid modelling

packages -Romulus (ShapeData) and Uni-Solid (Unigraphics) based on PADL-2 and the release of the

surface modeler CATIA (Dassault Systemes). Autodesk was founded 1982 by John Walker, which led to

the 2D system AutoCAD. The next milestone was the release of Pro/ENGINEER in 1988, which

heralded greater usage of feature-based modeling methods and parametric linking of the parameters

of features. Also of importance to the development of CAD was the development of the B-rep solid

modeling kernels (engines for manipulating geometrically and topologically consistent 3D objects)

Parasolid (ShapeData) and ACIS (Spatial Technology Inc.) at the end of the 1980s and beginning of

the 1990s, both inspired by the work of Ian Braid. This led to the release of mid-range packages

such as SolidWorks in 1995, SolidEdge (Intergraph) in 1996, and IronCAD in 1998. Today CAD is one

of the main tools used in designing products.

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Observing the KPI Case Study

When it succeeds, they are doing the right thing. When it fails, their employment strategy must be changed. Once in a while, they encounter knotty problems. These may be the causes of difficulties. These eventually result to the questioning of the whole effectiveness and efficiency of the management. With the KPI case study, the areas that need work on would be closely looked into.

When it is a big company, there should be a balanced scorecard KPI. These reports can determine the areas that need improvement. With this KPI case study, management can see what they are doing wrong. At least with the balanced scorecard KPI, the factors that affect the success and the downfall of the company are easily determined. The management can also figure out which of their procedures are complacent. With that being said, then they can develop a strategy that can accurately respond to the issues that need developing. It may be disruptive but sooner or later these organizations need a well-formulated KPI case study.

Once the problem has been dissected, thanks to the business intelligence KPI, management will be more aware of good ways they can come up with to solve the problems. It applies on everything, including running a company. Whenever there are problems, it is very, very important to find the root and work on this. It is the only way for the management to come up with the solution that they should come up with.

Another secret is to dissect the business intelligence KPI through the KPI case study. The whole point of the balanced scorecard KPI is to serve as guide for the management and the rest of the staff. By figuring out what needs improvement, the management can do the right approach and fix it. It is very important to monitor the system as well. The balanced scorecard KPI must accommodate all the factors that are regarded by the company as important.

Therefore whenever a KPI case study is conducted, one should be wise to pre-determine the objectives. This is the way for the study to be more successful. When one is monitored clearly, then the next move is to make the system function better than before. Set the goals for the company. The KPI case study must eventually result to the goals that the company wants to have. This only comes to show that the goals as well as the plans of every company must come in accordance with the balanced scorecard KPI. The business intelligence KPI are the factors that should determine what must work and what shouldn’t work.

Monitoring is a very important strategy that an employer must do for his company. In that way, organizations can take off the ground. When the approach is successful, the balanced scorecard KPI will show it. When it needs work, the KPI case study will also reflect it. It really depends on the factors that are held important by management. This is how you observe KPI case study and make it work to your advantage.

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Introducing Zwcad 2009

Have you ever looked for a cost-effective CAD program to help with your work? There’s good news for you: the latest version of ZWCAD 2009 was released on January 5. If you’re not familiar with ZWCAD, you can try it by going to http://www.zwcad.org/cad-software-download.html and downloading a free evaluation copy. We think your DWG designs will greatly benefit from ZWCAD 2009.

Current users already know that ZWCAD provides them with a reliable CAD platform at an affordable price. It is an effective solution that offers amazing performance, helps make them work efficiently, and is easy to use.

This newest release of ZWCAD contains powerful utilities and improvements in efficiency. For engineers, the most attractive aspect is that this rapid, powerful, and stable software program is convenient to work with. And ZWCAD 2009 is your best choice with which to work.

ZWCAD 2009 inherits all the advantages and the great compatibility of the previous version. Moreover, numerous functions underwent comprehensive improvements. Many core utilities were reconstructed, such as Regen, Trim, and Offset. These operations take much less time to complete than ever before.

ZWCAD’s stability enables you to focus your energy and time on your design work; you don’t need to worry whether problems will occur. For instance, bugs that existed in the 2008i version of the Hatch and Text commands have now been rectified.

ZWCAD 2009 is equipped with new features. Compared with ZWCAD 2008i, this new release provides you with greater convenience and improved utilities, such as these:

* Aerial View Window is an especially helpful tool for quick navigation, with which you change views easily and conveniently.
* The Plotter Wizard helps you configure plotters, and then add plotter configuration files to the software.
* The Autosave function ensures the drawings are saved even when the operating system crashes.
* eTransmit prepares your drawings for transmittal by collecting together all relevant files.

ZWCAD 2009 is an easy-to-use software program because of its command similarity with AutoCAD. If you are an AutoCAD user, you don’t need to take any additional training to work with ZWCAD.

If you are a new user, you’ll appreciate the many convenient tools ZWCAD 2009 provides for getting your work done. For instance, dynamic prompts show you tips to help you enter the correct instructions. The Tool palettes and the Design Center make you efficient at drawing and drafting with CAD. And the online Help elaborates in detail on all commands.

ZWCAD 2009 is probably the right CAD package for you; it is worth your time in evaluating it.

About ZWCAD

As the flagship product of ZWCAD Software Co., Ltd. (http://www.zwcad.org), ZWCAD is a powerful CAD solution, which is highly compatible with DWG format. ZWCAD meets the needs of broad-based target groups of 2D/3D design industry, including architecture, engineering, construction, mechanics, manufacturing and electronics. So far it has become the leading brand in China’s CAD industry and now it is competing successfully in over 75 other countries, with more than 150,000 users throughout the world.

For more information, please visit www.zwcad.org or contact ZWCAD team at sales@zwcad.com.

(C) Copyright 2009 ZWCAD Software Co., Ltd. All rights reserved.

Owen Zi is author of article written on ZWCAD. He is Director of ZWSOFT Overseas Department. For more information, please visit: www.zwcad.org .


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