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The Principle Of Retinal And Iris Scanning Technology

Fingerprint method can be misapplied. This reality is proven scientifically correct. For that reason, people then try to find the more reliable biometric systems.

The retina is part of the eyes that is responsible for the ability to see. The pattern of blood vessels that forms the retina is as unique as fingerprint. The principle of retinal scanning technology is scanning the pattern of capillary blood vessels on the retina with low-intensity light sources.

In 1987, the first retinal scanner was made by Leonard Flom and Aram Safir and has been patented. However, by the year 1994, John Daugman developed the technology of iris scanning as a competitor for retinal scanner.

Retinal scanning principle

Retinal scanning is based on the fine capillary network that meets the needs of oxygen and nutrients to the retina. These blood vessels absorb light and can easily be visualized with appropriate lighting. To that end, the close distance between the eyes and a scanner is needed. The appropriate position of eyes toward the scanner is also necessary. Also, there must be no eye movement, such as blink or glance.

Retinal scanning can not be 100 percent accurate. It is also less suitable as a security tool because even though the pattern of capillary blood vessels of human beings’ retinas cannot change generally, but diabetes, glaucoma, and cataracts can change it.

Iris scanning

In its development, retinal scanning is considered to be too disruptive in the case of security detection devices. In the use of retinal scanning, the eyes should be as close as possible with the scanner. For long-term, the light of scanner that is too close to the eye can give negative effects.

Because of the weakness, iris scanning technology emerges as strong competitor. Iris, a network that gives color to the eyes is also unique in which the chance for two identical slices is 1:1,078. Even, the left iris and right iris of someone are different.

How Do I Arrange My Science Display Board

A display board, or science board, is the required visual component of a science fair project. Every student that enters a science fair has to produce one of these boards. The purpose of these boards is to summarize the steps taken in the project and to highlight the most important points of the project. Since this is what the science fair judges are going to use as their primary source of information for the project during their evaluations, it is important for students to do their very best when constructing their science fair display boards.

Selecting the Board

Students have several options when it comes to selecting the background board for their projects display board. Most students are going to utilize either a piece of poster board or foam board. If the student is only completing a project for a class grade or for a school level science fair, then poster board will suffice. However, if the student has aspirations of participating in and winning regional or higher level science fairs, then the foam board is a better option.

Layout Step #1 Divide Your Board

The first step in laying out a display board for a science fair project is to divide the board into sections. Students can divide their board into panels or squares. The number of panels or squares that are created will reflect the number of elements that the student wants to include in their display. Keep in mind that you will need space to discuss each of the seven steps in the scientific method.

Layout Step #2 Create the Title

The title is the first thing that needs to be positioned on the display board. It will need to be centered at the top of the board. The lettering needs to be large enough to be read from a distance. It can be helpful to print out the title on paper and to then attach it to the board with an adhesive. This will give you the option of seeing how it looks in different positions on the board.

Layout Step #3 Create Your Text and Graphic Panels

Step three is to create your text and graphic panels. These are created by printing out the text panel or graphic and then matting them on construction paper or card sock. Try to make the panels look congruent and consistent.

Layout Step #4 Dry Layout Process

The next step is to lay your display board flat and to experiment with the positions of the various panels. You will want your display board to flow naturally from step one to step seven of the scientific method. You will also want your layout to look clean and orderly. You may need to switch the positions of the panels several times before you find a layout that works for your project. When you find a layout that you like then you can glue down the panels.

Bottecchia Cycle Technology A Glimpse Of The Past And Today

Being a pioneer in the bike and cycle trade industry, Bottecchia has developed ground breaking technology molded to both of its racing and transport model bikes. Bottecchia cycles are not only classy pieces of kit but also well designed with very good equipment at a very reasonable price. The technology behind every bike is taken from the concept of revolutionary practices with the rider and his/her environment in mind. Thanks to its know-how, combining tradition and advanced technology, the company’s purpose is to be also in the new millennium a point of reference for the cycling sector.

It all began when Ottavio Bottecchia began working with Teodoo Carnielli and starts manufacturing racing bikes, making use of his knowledge he acquired from the Tour de France in 1926. In 1930, after Bottecchia’s death, the Carnielli family takes the business forward and makes Bottecchia a well-known bike brand name in Europe, and exporting to the US with great success. On the whole, the business expanded under the Carnielli family. Throughout the years, the small Carnielli workshop gradually develops into an industry. And there are around 100 workers who build Bottecchia bikes between 1930 and 1940. At the end of the sixties, the old Teodoro passes on the baton to his sons Guido and Mario. In 1973, the worlds first folding bike was produced and it was very successful in Europe. Yet in 1997, Bottecchia was acquired by the Turato family who has had two generations of history in bike manufacture the Cicli Esperia. In 2006, the group sells over 50,000 bikes throughout Europe and looks to expand outside of Europe considering the US, Asia and the Pacific. If truth be told, there are already over 50,000 bikes that were sold in Europe at that point. It was also, in 2006 when the cycles assign exclusive distributors in Australia and New Zealand. Today, the company produces around 70 models in order to meet every kind of demand, and its earnings increases year by year.

Over the many decades, these bikes have a particular importance in the history of cycling. The experience gained through these years helped the company to develop innovative technology for cycling professionals and casual riders alike. The group’s bike technology now presents a collection of more than 40 models: racing bikes, mountain bikes, “verde natura” and “city” line, super light and junior bikes. New and upcoming models includes stunning designs perfect for racing, flat bar, city living and mountain bikes.

In conlcusion, the company’s aim is to introduce new interesting ideas in cycling, with flair, exceptional bicycle design, passion and meet every emerging demands for road and off road bike experience.

Get Innovative With Cd And Dvd Packaging Technology

Books may not be judged by its cover, but when it comes to CDs and DVDs, first impressions are almost always based on their covers and why CD and DVD packaging technology has become a critical factor in the optical media business.

Lenticular Effects from IGH Solutions
Lenticular effects are basically produced by using special lens to view a combination of at least two images and consequently create a certain animation effect. The special lens makes you see only a certain part of the image at a certain angle. Try changing direction and moving the cover and the image will change as if it has just moved.

Believe it or not but lenticular technology has been around as early as the 1600s, but the images then were hand-painted. By early 20th century, however, photographs were used and the first modern lenses for lenticular use were introduced in the 1930s.

Since then, lenticular technology has come a long way and the optical media industry was able to greatly benefit from its advances. Today, DVD covers may feature large-format photographic quality, vivid 3D effects, and even full-motion video captures.

IGH Solutions offer clients a variety of creative options for their DVD covers. Flipping refers to 2-Phase and 3-Phase animation. Its effects are simple yet spectacular and up to three images may be used for each cover.

Morphing allows for the gradual transition from one image to another and may be accompanied with an impressive twirling effect. With zoom effects, images can grow or shrink right before your very eyes.

There are a lot more in store from IGH Solutions; all you need is to explore your imagination!

Get Eco-Friendly with Covert Images and Pack Smart Inc.
The two aforementioned companies have recently joined forces to produce a unique packaging and specialty machine thats powered by solar panels.

Converted Images president Brian Weinstein says that its eco-friendly technology recycles heat rather than emitting it so that little energy is wasted in the production process.

Besides producing CD and DVD packaging, the 45-foot-long machine has also been used for affixing teabags to brochures, Braille embossing, and windowed carton attachment.

Pack Smart Inc. is renowned for producing graphic arts finishing equipment with world class designs. Converted Images is a specialty finishing firm that is best known for producing high quality packaging used for a variety of products, including but not limited to die cut tabs, pocket folders, inlay cards, and folding cartons.

Science Of Mind Jewelry

Science of mind reflects the teaching of Dr. Ernest Holmes, in the first half of the 20th Century. He was the founder of Religious Science, which has as its basis, Change your thinking; change your life. Knowing that our thoughts and attitudes create our environment, Holmes synthesized the teachings (that worked for him) of all the ancient masters, thus being an avant-guard of the well known movie, The Secret, which turns out to be that very philosophy.

The logo he created expresses Divinity projecting, or condensing, into form by passing through increasingly physical dimension, into physical form. Note that the V, representing the passage of Divinity, or Consciousness, is open at the top. Thus, all life is connected and not separate, after all.

Ron Houpt is currently one of very few jewelers on the planet with the license to create gold and silver jewelry with this design. He probably has the largest selection available today. spiritual students following this path are proud to wear the symbol of Life in unique expression, yet connected to the All.

Ron has been making both the official Science of Mind jewelry and similar symbols of New Thought for 11 years. A member of the Mile High Religious Science church (near Denver), he often brings his brilliant jewelry to New Thought Conferences, where the attendees appreciate his fine work.

Popular are both the mens and womens rings in either sterling silver or 14k gold. Two styles are available: the Science of Mind logo in a solid disc or the open style. The stud earrings are also with a choice of solid or open style.

In addition to using the official logo on pendants, earrings, pins, tie tacks, rings, and bracelets in sterling silver or 14k gold, he has created heart-shaped jewelry around the logo in many fine jewelry forms.

In addition, there is a line of pendants, earrings and pins in a 3-metal design, using copper, bronze, and silver. These Body Mind Soul jewelry pieces are a favorite among those partial to the blend of 3 metals. This style features a round disc with the Science of Mind logo in the three colors.

The New Thought Ancient Wisdom teachings began at the end of the 19th Century, with Phineas Parkhurst Quimby, a New England clockmaker. They called him Dr. because of the amazing healings he performed. He discovered if a person could just let go of a strong opinion he or she held, their illness would vanish.

What a wonderful emblem to wear on your finger, lapel, wrist, around your neck or on your ears!

Science Activities Should Be Carefully Planned

Learning science will never be complete without the presence of the right and life-related science activities and take note, the real essence of science concepts cant be grasped thoroughly only with the use of facts or opinions, proving is necessary and on it lays the satisfaction of most of the learners. If you are a science teacher for the grade school and you are looking for ways in which you can easily relay to your pupils the main concepts, it would be best if you can carefully plan for series of science activities they can do.

What are the factors you need to consider in planning for the activities? Will you still need planning materials at the same time opinion of your pupils or will you just base everything on your own? Will you need to verify your planned activities after? There are lots of considerations you should put into mind if you are looking after the learning of everyone and since you are the prime mover in the classroom, you must know how to start with your plan.

When you want to perfectly plan for the science activities, take note that you are considering the availability and suitability of the learners. Will the materials be easily obtained or at your reach? Will the materials suit the level of learner as well to the nature of the subject you are teaching? You must be really keen and these questions can guide you all through out.

Learning should not be as strict and complicated, if you are aiming for a conducive environment for learning to occur, proper planning of the science activities can be great and planning can surely help the teacher accomplish what he has set for the day and that would also save him time and effort to think whats next.

How Do I Write A Hypothesis For A Science Fair Project

One of the most important components of a science fair project is the hypothesis. The hypothesis is the foundation of the experiment and the reason for completing the project. If this is your first year working on a science fair project then these steps will help you to turn your project idea into a hypothesis.

Step #1 Come Up With a Topic or Project Idea

Before you can create a hypothesis you need to select a topic for your project. The topic will be a general subject area that you are interested in. For example, you can select computers, robotics, electricity, physics or other broad topics.

Step #2 Conduct Research and Narrow Your Topic

You cannot build a project if all you have is a broad topic. You need to narrow down the topic to a very specific concept, issue or problem. The best way to do this is to conduct background research on your broad topic. This research will help you to find interesting subtopics that are related to your broad topic.

Step #3 Ask a Question About Your Subtopic

The next step is to ask questions about your subtopic that you would like to answer. The questions can relate to anything from how a reaction occurs, what influences the results or how something can be improved. Write down your questions in a list and select the one question that you are most interested in.

Step #4 Make a Prediction

Step four is to make a prediction about the answer to your question. For example, if your question is how can solar energy be produced to meet the power needs of my community? then your prediction may be that the different circuit designs produce different outputs of power from the same inputs of solar energy.

Step #5 Make Sure Your Hypothesis Is Testable

The final step is to make sure your hypothesis is testable, otherwise it is not going to do you much good. To be testable, at least by you, it will need to have an independent variable that can be manipulated and a dependent variable that can be measured.

For example, in the above hypothesis the independent variable is the type of circuit design used and the dependent variable is the output of power. The circuit design can be manipulated by changing its set-up from a parallel circuit to a serial circuit. The power output can then be measured in Watts.