Global markets for Machine Vision (MV) technologies to grow to $23.5 billion in 2019

Machine Vision (MV) technology integrates imaging components and electronics into computerized analysis and control systems to identify, measure, sort and inspect components as they proceed through an automated process.

The advances in MV technology including smart cameras and vision-guided robotics have increased the scope of the MV market through wider applications in manufacturing and nonmanufacturing sectors. MV is now used to ensure the quality of products from tiny computer chips to massive space vehicles as well as in major security applications and traffic and crowd-control applications. Today, MV has become a vital and effective automation tool that enables computers to replace human vision in many high-speed and high-precision manufacturing and nonmanufacturing applications.

The MV industry is peculiar in nature as many of the components are manufactured in one location, assembled at another which may be in a different country, and finally assembled at another location in yet another country. For example, most of the cameras and optics needed for the MV industry are manufactured in Germany and Japan but are then exported to North America for conversion into an MV system. Finally, they may be sent to China or India for ultimate production.

According to BCC’s published report, Global Markets for Machine Vision Technologies, the global market for machine vision (MV) system components was nearly $13.5 billion in 2012, and is expected to grow to $15.2 billion in 2014. The market is expected to further increase at a compound annual growth rate (CAGR) of 9% the following five years starting from 2014 reaching nearly $23.5 billion in 2019.

This report looks at the application market for MV systems and the competition involved in this ever-expanding field. The report also studies the global market for the various components and different systems that constitute an MV system. The market for these components and systems has become very competitive, and this report will look into the nature of the competition and the regional breakdown of these markets.This study provides important information on the current size and anticipated growth of the overall market and its market segments, characteristics of the market, leading suppliers, trends in customer preference, and geographic market opportunities.

This report will be useful for manufacturers of MV systems and components, systems integrators, design and application engineers, various industries and agencies needing MV systems, traffic and transport planners and security system planners.

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How To Build A Greenhouse Grade 7 Science Fair Projects

A greenhouse is basically a structure that has been designed to capture and retain the heat from the sun. It is used to grow plants when the climate does not want to cooperate. Greenhouses can be used in a number of science fair projects and can be used to test concepts from a variety of fields of sciences including engineering, physics, botany and biology.

Project #1 Capturing Heat Energy

In this project the students will be designing a greenhouse that captures heat energy from multiple sources. They will be capturing heat energy from the sun and geothermal heat energy from the ground. This project will require the student to learn about heat extraction techniques related to solar energy and geothermal energy.

Sample hypotheses that can be tested with this project include:
(1) The thickness of the plastic used for enclosing the greenhouse impacts the amount of heat conservation in the greenhouse;
(2) The opaqueness of the material used for enclosing the greenhouse impacts the amount of heat conservation in the greenhouse;
(3) The depth of the insulation on the floor of the greenhouse impacts the amount of geothermal heat conservation in the greenhouse.

Project #2 Growing Radishes

In this project the student will build a greenhouse so that they can grow radishes and conduct experiments on the radish plants during times of the year that are not normally conducive to gardening. Radish projects can look at a number of things. For example, students can try to cross pollinate radishes with another root vegetable like carrots, they can attempt to grow radishes in sand or they can try to manipulate the size of the radish by exposing the plant to 20 hours of light per day.

Project #3 Engineering Greenhouses

For students that are interested in engineering, greenhouse science fair projects can be developed with an engineering focus. For example, students can try to develop a greenhouse using nothing but materials that are normally thrown out or recycled, such as cans, bottles and plastic containers. Students will not only need to design and build their greenhouse, but they will also need to test the effectiveness their greenhouse has in regards to collecting and conserving heat energy.

Project #4 Studying Solar Energy Applications

The final project option will be an application project. Students will be learning about solar energy and how to use this knowledge to harness the suns energy to heat a greenhouse. For this project students will design and build a greenhouse that maximizes the energy delivered by the sun. A good approach for this project is to see if their design can magnify solar energy within the greenhouse to make it effective in cold weather.

Can You Use First Person In An Abstract For Science Fair Projects

One of the requirements of entering a science fair is to complete a science fair project report. To be graded or scored well, the student needs to use the correct format, voice, tone and style, and they will need to include the right elements. Fortunately, all of these things are easy to accomplish once you know what is expected of you.

Writing Style

The first question that many students have that relate to writing a science fair project report is if it is okay to write in the first person. Students cannot write in the first person when writing a science fair project report. The entire report needs to be written in third person. This can be tricky as students are discussing what they did and what they discovered.

In addition to writing the report in third person, students will also want to avoid creative tones in their writing. While students are encouraged to use similes, metaphors and other creative expressions in English class, these are generally not appropriate in science writing. Students want to keep things as simple and straight forward as possible. The key is to explain the situation with as few words as possible.

Clarity

Clarity is one of the characteristics that judges will be looking for when scoring your science fair project. They are going to evaluate how easy your report was to understand, how logical it progressed from data to conclusions and how organized the overall report was. The design of your display board and you presentation will also be judged for clarity.

Formatting Your Report

Formatting is very important when you start science writing. To start with you will want to select a 12 point font that is easy to read, like Times New Roman or Courier. Next you will want to double space your report and create a one inch all around margin. Finally, you will want to add a header that includes your project title and a page number.

The format of your science fair project report will also need to follow a common layout. Most reports will have the following sections in this order: (1) title page, (2) abstract, (3) introduction, (4) background research, (5) methodology (experiment), (6) data and data analysis, (7) discussion and conclusions and (8) bibliography. Each of these sections will be broken down into sub-sections. For example, the methodology section will include subheadings of supplies and experiment design while the introduction will contain information about the hypothesis, the reason for selecting the topic that was selected and definitions of terms used in the report.

Why Are Teens So Stressed Science Fair Projects

The topic of your science fair project is critical to its success. If you select a topic that you are not interested in you will find the process of completing a science fair project boring and tedious. However, you can overcome this problem by focusing on something that either interests you or that impacts your life directly. Here is a topic for this year’s science fair project “why are teens so stressed?”

Background Research

“Why are teens so stress?” This is the topic for your science fair project this year. So now that you have a topic your next step is to conduct research on this subject. This research will need to begin with a general search of teen stress. The results from this search will provide you with leads on what is stressing out teens and what research has already been done.

Develop a Hypothesis

Now that you know a little bit about your topic your next step is to develop a hypothesis. Your hypothesis will predict what is stressing out teens. For example, your hypothesis may be that teen stress rates are impacted directly by the stricter entrance requirements for college.

Develop an Experiment

After you have a hypothesis you will need to find a way to test that hypothesis. If your hypothesis is that teens are stressed by the increase in acceptance standards of colleges then you will need to design an experiment that tests how these higher standards are impacting student stress levels. You can do this by collecting data on college entrance requirements from the 70s and comparing them to those of today, and you can also conduct interviews with teens to figure out how stricter college entrance requirements are impacting their stress levels.

Collect Data

Data collection for this type of science fair project will involve collecting data and information from government and nonprofit sources, as well as collecting data directly from your own test subjects. When you are collecting data from your test subjects make sure your test conditions remain constant for each experiment. This will help to ensure your data is reliable and valid.

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The Creation Science Curriculum Evolution or Intelligent Design

The Creation Science Curriculum: Evolution or Intelligent Design?

In 1859, Charles Darwin published his revolutionary work, On the Origin of the Species. In it he proposed that life as we know it evolved over a great length of time by a haphazard, fully natural process called natural selection. Now, over 150 years later, Darwins legacy dominates biology; yet his ideas are not unopposed, and the opposition has never been stronger. Since the beginning, religious people have rejected evolution in favor of creationism: the idea that God created life. And now, in the last 20 years, the Intelligent Design movement has created a powerful non-religious case for opposing evolution. Are the critics of evolution just religious zealots, incapable of being rational or scientific? Or was Darwin right?

Its more than just an intellectual debate. Whether or not life was a mere accident has a huge impact on law, culture, ethics, and every imaginable aspect of life. The question is whether human beings are image-bearers of God that deserve respect, or just glorified monkeys that are only valuable to the extent that they contribute to society;and the answer could not be more important for the future of the human race. But is there even a question about which side is right when all respectable scientists seem to accept evolution? Actually, the tide is turning. More and more scientists are realizing that evolution does not offer all the answers. But in schools and the media, no critics of evolution are allowed any hearing. Are the nations young people condemned evolutionary indoctrination?

Educate For Life is a non-profit organization dedicated to Christian apologetics training for high school-aged youths, so that they can be confident in the truth of their faith. One area that we specialize in is intelligent design education. Our creation science curriculum uses solid evidence to show students that life has Gods fingerprints all over it, and that no unintelligent process could possibly account for it. We are also newly offering a worldview curriculum that examines the evidence for various world religions.View our apologetics course offerings today at www.educateforlife.org, and counter indoctrination with truth.

New Pricing Technology Makes Car Insurance Cheaper

Over the years, the technology used to calculate car insurance premiums has changed dramatically. Actuaries used to figure out premium levels by hand using books of statistical data. Later, adding machines and early computers ground through the numbers. More recently, online forms were invented which allowed you to get a quote online.

After all that time grinding things out, what most insurers and consumers wanted was speed. As a result, the current model for most traditional or mainline insurance companies in Australia consists of just a few questions. With these tiny points of data, a quote is generated based on aggregated consumer averages.

The result is a fast quote, but not a very accurate one. Most people dont notice that they are being treated as averages. They simply pay the quoted amount and pay rate increases even if they are accident free. However, you dont have to settle for this outdated and inaccurate system any more.

While most insurers havent gotten there yet, there are a few car insurance companies that have been pioneering a new way of calculating premiums. This new pricing methodology is based around creating highly detailed risk profiles of potential customers. This allows a calculation of premium that can truly separate high-risk from low risk customers.

There are several winning elements to this methodology. However, for consumers like you, the main benefit is often lower prices. If you are a good driver with a limited number of claims, you can really make home some substantial savings by switching to a company using this in-depth modelling framework to calculate rates for insurance cover.

It can feel a bit strange, especially after years of living with the old speed-is-everything system. Thats not to imply that this method isnt fast, mind you. It simply asks several additional questions about parking locations, length of commute to work, and so on.

As one of the early adopters, you stand to benefit the most. While your friends potter along with outdated insurance policies with off-the-rack premiums, you can have a custom tailored premium that only charges for the real risk you face as a driver and customer. Youll be able to quit subsidizing the behaviours of others through blanket premiums, and get to enjoy the fruits of your own careful behaviour on the road.

This is especially true if you really arent an “average” driver. If you only drive a few days a week, work from home and dont use your car regularly, or are retired and dont drive long distances, you have a dramatically different risk profile than most Australians. Yet you have been paying “average” rates for years, since the old method never inquired about your true habits.

Even if youre not a fan of the new and different, this is a new technology youll want to embrace. The new technology behind this quoting system isnt all flash and sparkle. It truly represents a way to make insurance premiums cheaper for you through more accurate pricing of your insurance cover based on your real risk profile.

Android Os Advancing The Mobile Technology

New operating systems are necessary to keep up with the demands of today’s users. Mobile phones available right now work on a few such systems like Java, Symbian, Flash, an exclusive OS like the ones utilised by the iPhone and the Windows seven phone.

The most progressive pparticipant in the cell telephone OS market is the Android OS. It’s an open source operating software developed by Google along with other tech corporations. The Android operating system is superb for the tech world and here are the reasons why.

Less expensive mobile products
A chunk of the mobile telephone cost is the O. S. Unless the phone uses special devices and materials like camera lens similar to pro cameras or dear metals for the body, the hardware cost may not amount to a significant value since production costs are going down because of more recent technologies. The free Android OS allows the telephone costs to go down because a gigantic portion of the price isn’t applicable .

Improving Technology
Mobile systems have continuously become better and faster. The advent of this new OS will certainly allow the development of better service and features to the final user. Users should be excited with the chance of larger adventure – like the 90s when we initially began to enjoy SMS, MMS, etc .

Better Services
We’re all acquainted with the iPhone’s ability to allow 3rd party programmers to develop applications, the Android OS is not different as it also inspires other programmers to develop the technology. This allows the end users to enjoy more modern and better applications and will certainly increase the phone’s value. At the end, you’ll get more than you paid for.

Google Products
most of use Google services like Gmail and Google Documents, having an Android device will make this experience more pleasant and pleasurable. With the increasing renown of Google products you may be warranted you are getting onto a good team.

These top reasons make the Android phones a wanted product that will surely make a massive impact on the mobile industry. There are already several brilliantly designed Android phones available in the market, and these phones are getting better and cost less each quarter.

Technology For Women And What It Can Offer Us

The colour pink is often associated with women as more often than not, women look good in pink. Women who have great fashion senses are often eye catching and you may well have noticed that a woman’s fashion sense has begun to extend towards the gadgets that they carry. The rise of feminine technology has been growing steadily and is about to hit a crest. When you say feminine technology what is the first thing that comes to your mind? Pink gadgets!

Since the colour pink has long been associated with women, it doesn’t come as a surprise to see pink mobile phones, pink digital cameras, and pink laptops, among others that can be considered as part of feminine technology. Pink is a dainty colour, eye-candy if you like. Given the choice, fashionable women tend to want to carry trendy gadgets to veer away from the more macho-looking laptops or cellular phones. Women now find it tempting to have a pink gadget, like a pink laptop, to showcase their love for beauty. Most women are aware that most men find a woman to be more feminine if they are wearing something pink, and i have to admit there is something appealing about a confident women seen doing some work on a pink feminine laptop or making a business call with a pink mobile phone.

Technology need not be boring and with the advent of feminine technology, pink and all the other girly colours have become the in thing. Pink may be a favourite, but red is also becoming popular, as well as lavender or pastel colours. You will even see laptops that have designs on it; often utilising many different shades of pink or other feminine colours.

Wouldn’t it be great to take snapshots using your pink digital camera? You will now find digital cameras, mobile phones, and laptops in various shades of pink and as well as other girly colours so finding one that suits your personality is no longer the challenge that it once was. However do not, for a second, think that gadgets with a touch of femininity are lacking in the features or power department. A lot of popular brands now carry fashionable designs but still with the exact same technology and features as more masculine looking gadgets.

This is true especially for laptops. Pink laptops may look dainty and beautiful yet you can be sure that you can still surf the net with ease and do some office or school work simultaneously without having your workflow slowed by unresponsive technology. It is just as important to take note that when you shop for a gadget that will showcase your feminine side, make sure that you check the features as well as the prices first before settling with one particular unit.

So when you talk of feminine technology, it is not only about trends and beauty, functionality is also a must have and one that manufacturers are increasingly more aware of.

Forensics vs Forensic Science

If you bring up forensics in a conversation, those involved will often start thinking of scenes from the television show CSI (Crime Scene Investigation). It’s synonymous with scouring crime scenes for minute clues to help criminal investigators create leads in various cases.

Because of the misunderstanding that’s developed about criminal investigations and forensics, many don’t realize that there is an acute difference between forensics and forensic science.

Currently, forensic science gets shortened in most discussions to “forensics.” The word “forensic” actually relates to debates, and comes from the Latin word “forensis” or “of or before the forum.” This concept became most prominent in ancient Rome where both the accused and the accuser involved in a judicial case had to advance their arguments in front of a public forum. This led to the usage of the term “forensics” for both public debate and the presentation of legal evidence.

This concept of “evidence” is what has caused it to run parallel and merge with forensic science. As the judicial system evolved, so, too, did the evidence that was required in cases. No longer was it a matter of verbal debate; instead other forms of evidence were necessary. The concept, that being “forensic” or “before the forum” still holds true. The only thing that has changed is the type of evidence that’s being presented.

While some modern dictionaries will actually merge the two and provide similar or identical definitions, they are quite separate by origin and practical application.

The term forensics refers to public debate which includes the presentation of evidence and rhetoric. Forensic Science is something different. It deals specifically with the gathering, identification, research, and scientific interpretation of evidence to determine such things as who was involved in a crime.

In addition to confusing the terms forensics and forensic science, people often mistake forensic science for criminalistics. However, it’s important to keep these terms in context too. Forensic science involves any discipline that can be applied to evidence. Criminalistics is just one of the subdivisions of forensic science.

Some of the disciplines that fall under the umbrella of “forensic science” are:

-Computer Forensics -Forensic Accounting -Forensic Audio Engineering -Forensic Linguistics -Forensic Pathology -Forensic Psychology -Forensic Engineering -Criminalistics

Criminalistics itself is the scientific discipline which brings together various natural sciences such as biology and chemistry to the examination, identification, and comparison of certain types of evidence. Criminalists deal with biological evidence including DNA and bodily fluids, trace evidence such as fibers, hair, and soil, and impression evidence such as fingerprints and tire tracks. They also are involved with ballistics, drug analysis, crime scene photography and reconstruction.

As you can see, the forensic sciences deal specifically with the research and examination of evidence so that such evidence can be admitted to and used within the legal system. Forensics on the other hand should be viewed not as the science behind the evidence, but as the presentation and use of the research once it’s completed.