Motivational Quotes About Aspiration and Life

Tuesday 16 December 2008

When you read a quotation from some enlightened author, you’re getting right down into their best material. There’s no need to sift through hours of pages in order to find the best ; the best is in the quote!

This is why I’ve spent years reading of quotations. Can you imagine the wisdom a person can get from that? Sure, you often have to read boring , but every little while you’ll run into a real good one! And when this happens, your mind is stretched, your eyes are opened, and it can become an amazing intellectual or spiritual experience. And then you start over, because it becomes addictive.

Here are ten motivational based on the topics of aspiration and life that I have always loved. Take the time to dig through them and glean the great lessons that they hold.

1. When a sets out to learn something of his own free will, he marks himself out as an exceptional man. And he begins to rise in the world. -Herbert N. Casson

2. Life is a petty thing unless it is moved by the indomitable urge to extend its boundaries. Only in as we are desirous of living do we really live. - Jose Ortega y Gasset

3. It is asked, how can the laboring man find time for self-culture? I answer that an earnest purpose finds time or makes it. It seizes on spare moments and turns fragments to golden . A man who follows his calling with industry and spirit, and uses his economically, will always have some portion of the day at command. And it is astonishing how fruitful of improvement a short season becomes when eagerly seized and faithfully used. It has often been observed, that those who have the most time at their disposal profit by it the least. A single hour a day, steadily given to the study of some interesting subject, brings unexpected accumulations of . -Channing

4. Restlessness is discontent and discontent is the first necessity of progress. Show me a thoroughly satisfied man and I will show you a . -Thomas Edison

5. I am suffocated and when I have not the bright feeling of progression. -Margaret Fuller

6. I know of no more encouraging fact than the ability of a man to elevate his life by conscious . It is something to paint a particular picture, or to carve a statue, and so make a few objects beautiful. It is far more glorious to carve and paint the very and medium through which we look. This morally we can do. -Thoreau

7. What would be the use of immortality to a person who cannot use well a ? -Emerson

8. Twenty years from now you will be more disappointed by the things you didn’t do than by the ones you did do. So throw off the bowlines. Sail away from the safe harbor. Catch the trade winds in your sails. Explore. Dream. . -Mark Twain

9. If one advances confidently in the direction of his , and to live the life which he imagined, he will meet with a unexpected in common hours. In as he simplifies his life, the laws of the universe will appear less complex, and solitude will not be solitude, nor poverty poverty, nor weakness weakness. -Thoreau

10. 1) quietly for a moment, and you realize how you have been foolishly about.
2) Learn to keep your mouth shut, and you realize you have been talking too much.
3) Avoid getting involved in too , and you realize that you have been in unnecessary things.
4) Close the door, and you realize that you have been mixed up with too many kinds of .
5) Have few , and you realize why you have had so many ills.
6) Be , and you realize that you have been too critical of others. -Chen Chiju (1588-1639)

If you liked these motivational quotes, make sure to sign up for the thought for the day at HappyPublishing.com. There’s a great new page there on hardship .

The Basics of Mechanics - Dynamics and Thermodynamics Explained

Sunday 7 December 2008

You who read this, may be an engineer, a , an , a student, or even someone without an engineering background. My is that the general public has little of and even engineers and other professionals often lack in basic insights, in of being advanced in their specific fields. This often leads to unfeasible projects and wrong , based on wrong assumptions, that no computer can correct.

I myself am a graduated engineer on B.Sc level in both mechanics and electrics. Nevertheless, most of what I know worth knowing as an engineer today, I learned from practical experience and backing it up with own theoretical studies afterwards. It forced me to on . When you have the right, the rest is just , where the computer can be very helpful, but don’t let it “think” for you!

If you have no engineering background, why would you need to have some basic of all this, you may ask? Well, we live in a technological society and so we are confronted with technological matters and products, that we need to understand the of to make proper . Ever bought expensive “energy-saving” lamps, while in the same time needing to heat your ? Do you think hydrogen and/or fuel cells are energy sources? Do you think energy can be produced and consumed? Would you invest in solar panels, or other technology for your ? The more these kinds of things apply on you, the more you need to read this article.

The Laws of Newton

The metric, or SI system of units is based on the laws of Newton and so is most of modern mechanics and dynamics. They are essential for basic understanding:

  • 1. A mass object persists in its momentary motion to speed and direction, unless it is forced to change it by external forces working on it.
  • 2. The acceleration of an object is proportional with the force F working on it and inverse proportional with its mass m. Hence, the acting force is given by: F = m.a
  • 3. A force acting on an object, will yield a counter force of the same strength in the opposite direction: action = reaction.

Although these laws sound simple, they are often wrongly applied, or overlooked. Especially the third law appears to be the most fundamental one, still not fully understood by Science and subject for discussions on the highest levels (how can you move a table for example, as it pushes back with the same force?).

Power and Energy.

Power and energy are very often mixed up. For example a lightning, causing a tree to split into half, is very powerful, but it has very little energy, because it lasted only a fraction of a second. Energy is the range of power and time. Power is expressed in Watt and energy in Joule - 1 Watt thus is 1 Joule per second, inversely 1 J = 1 Ws (Watt second). If you during one hour would apply a power of 1000 Watt (1 kW = 1 kJ/s), which approximately is what a flat iron takes, the energy involved is 1 kWh and this is thus equal to 3600 kJ. If you instead would develop that energy in one second, the power becomes 3600 kW, or 3.6 MW - a small power plant! If thus a lightning would have a power of say 10 GW and lasted 1 millisecond (it looks much longer, because of the glowing air around it), it contained an amount of energy of just 10 MJ = 10,000 kJ, not more than 2.8 kWh, or to power a flat iron for around three hours! If you in would read dimensions like kilowatt per hour, or horsepower per hour, you can know that the author has no idea what he/she is talking about.

Energy is also the range of force and traveled way. If you lift up a mass of 1 kg to a height of 1 meter, the force needed for that is the range of mass and gravity acceleration, as per Newton’s second law. On , gravity acceleration is 9.8 meter per second square, which we can round to 10. The lifting force then becomes 10 kilogram meter per second square, which is called the Newton (N) and the done is then 10 Nm (Newton meter), which is 10 Joule: 1 J = 1 Nm.

The same confusing exists around temperature and energy. What would you rather have in your hand, a 1 inch red glowing sewing needle, or a 4 inch red glowing bolt? Though both have the same temperature, the needle will just cause you a blister, whereas with the bolt, you won’t have a hand any more. The bolt contains much more energy (more mass) than the needle and that makes the difference, not the temperature.

If you would be interested in a solar panel to heat water in your , the temperature it can yield is therefore not that important. You pay for energy instead and that is what you want to save on. Ideally, a solar water heater should on a low temperature, so it doesn’t loose too much heat through its insulation and produce a larger water flow instead. You then save more energy = , because of the higher efficiency on which your solar panel works. To reach your desired water temperature in the kitchen and bathroom, you can heat additionally with say an electrical heater. Combination with a heat pump, also taking up heat from your warm waste water, would give the absolute best results (but high installation costs). Read more about that at the end of this article.

However, manufacturers of solar panels optimize on temperature, which is a good selling argument for the energy-unaware public. At higher temperatures, the size and thus the costs of the whole installation, including storage , become lower, which also sells better. They don’t talk very much, or at all about efficiency, being the between how much solar energy hits the solar panel and how much of that you can use in the end. They talk about capacity instead - solar energy is “free”!

Next to consider is Pressure. Usually it is that of a fluid, like a gas. It is expressed in Pascal (Pa) which is force (N) per unit of area and thus 1 Pa = 1 N/sqm (Newton per square meter). at is roughly 100 kPa, thus 100,000 N/sqm. In technical descriptions it is also often called the bar - 1 bar is thus . Pressure can also be seen as in materials, tension. In the SI system of units, pressure and tension are thus both expressed in Pascal.

Then there is -pressure. This is what makes a knife . The sharper a knife, the smaller its edge area (A) is and for a given force (F), the -pressure (F/A) becomes larger, also expressed in Pascal. With this, all units in the SI-system are given. It has only three basic units, the kg for mass, the meter for length/distance and the second for time. No are needed

Circular Motions.

From Newton’s third law follows the that on an object in mechanical rotation, two forces are working, a centripetal one, pulling the objects towards the center of rotation, and a centrifugal one, tending to push it out radially away from that center. If the mechanical with the center of rotation suddenly is broken, in that very moment no forces are working on the object any longer and thus it will move as per Newton’s first law, meaning it keeps its speed in the direction it had in the moment just before losing . That speed was directed tangentially and thus the object will “fly out” in the tangential direction, not radially. In fact, centrifugal forces do not exist, because then there would be no resulting force to keep an object in its circular path - only the centripetal force exists. This is a hot discussion point in Science - Newton’s third law.

Hence, when you are in a car that makes a sharp curve, your body does not push against the inside of the car (centrifugal), but the inside of the car pushes your body into the curve (centripetal). As per Newton’s first law, your body wants to keep its direction of motion, straight , just before entering the curve - it’s called . There is only one force, the centripetal one (free motions in gravitational fields, such as orbits of planets and satellites, are described in General Relativity, which we won’t discuss here).

From this follows the of “inertial” systems, which are frames of reference in which Newton’s laws are valid. An accelerated system is thus not an inertial system, because motions described in it, would not follow Newtonian laws. This causes a severe point of , as follows:

If you are an of “fantastic” mechanical machines, your really should understand the implements of . (p) is the amount of motion, being the range of speed (v) and mass (m), which is equal to the range of working force (F) and the (t): F.t = m.v = p. An has a direction, which (kinetic) energy has not and therefore impulses can have a positive or a negative sign between opposite directions of motion. Because is a function of force (the time-derivative of it), Newton’s third law requires that the sum of all impulses of components within a system (machine) must be zero. However, many inventors, not being aware of this, “create” a resulting , that accelerates the system.

What they do is mixing up reference systems and with energy. If you consider a mechanical system (machine), that has a certain total mass, but also internally parts, the resulting of those parts, the sum of all impulses, will be zero relative the system’s center of gravity, but not necessarily relative a resting frame of reference (an observer) in which the whole system (machine) may be (at constant speed). The sum of kinetic energy of all the internally parts, is of course a positive value (negative energy is less than nothing). This value is the system’s internal (kinetic) energy. Since this internal energy is needed to keep the internal parts , there cannot be any energy left to accelerate the system (machine) as a whole. On the , energy must be applied all the time to overcome the that the internally parts are subjected to, otherwise they would come to a halt. This applied energy converts to heat.

Sadly, there are several patents on according designs, claiming to be “inertial drives” for space-ships or whatever. Their inventors, some of which may have ruined their private economies on this, were not confident with the of dynamics, as outlined above. See some of those unfortunate examples here: http://jnaudin.free.fr/html/IPEmain.htm

Mechanical Engineering Concepts

Now, imagine you had a ball that is perfectly spherical and a table that is perfectly smooth, so when the ball is placed on the table, the area becomes a dimensionless point - zero whatever. Then the -pressure F/0 becomes infinite, regardless how light the ball is - something must break. No material could withstand an infinite -pressure and from this follows that not even with the most fantastic materials, yet to be developed, a frictionless machine could ever be built (that would require ideal point and line contacts).

Some inventors have a problem with that, like a patent I once saw, where a 15 cm (6 inch) diameter cylinder was rotating at 1500 rpm in a somewhat larger cylinder, supported by a number of smaller rollers in the size of just a few millimeters - it looked like a ball- in cross section. These rollers would rotate at roughly 50,000 rpm. You look in any table what the admissible speeds are and you would see that this design exceeds the limits by far; self-destruct through !

Another problem that many inventors have is judging leakage potential. Leakage is a function of pressure ratio, not of pressure difference and it varies to the third power with the clearance between the boundaries. It means that the same sealing device, that would leak in an however deep submerged submarine, would leak more in a space craft, because there the pressure ratio to vacuum is infinite - many don’t seem to know that. In addition, even less known, is that the best sealing is obtained with a single, unbroken sealing line, ideally a circle.

Therefore, the reciprocating circular piston machine will always prevail over any rotational displacement concept, that contains several broken (discontinuous) sealing lines. These rotational concepts can be used and are used in low-duty applications, where they have their advantages, such as in air-driven hand tools, industrial compressors, etc, but not in heavy-duty combustion engines. This is why the Wankel never became , except a few years in from German NSU, that went bankrupt on it in the 1970-ies.

One can see the most ‘horrible’ designs in various patents, the worst I saw being an engine, consisting of a torus shaped tube, with a slot over its inner length to let through a piston rod, attached to a circular piston in that torus, while flat plates were sliding radially in and out the torus to form alternate compression and expansion chambers - at best a good cream-wiper (but it got a medal in an inventors contest - its glorious funeral)!

Many inventors have tried to find a linear transmission, that can replace the pendulous crankshaft. It has various disadvantages, such as causing vibrations of higher order, but most of all causing side-forces on the pistons, resulting in excessive wear and leakage there. I once read a statement from a development manager at Volkswagen in Germany, that the crank mechanism alone stands for 20% of the fuel consumption. All alternative designs I have seen, indeed convert the linear piston motion into a rotating one on the shaft and without causing side forces on the piston, but instead they generate the same or higher side forces on sliding parts elsewhere in the design, causing excessive and wear there - definitely no fuel savings. I have found a design that does not contain any sliding parts, but consists of rotating components only (I got the idea, when I was with my kids in a merry-go-round). Had I only come up with this a good 100 years ago, I could have made it, but now the pendulous crankshaft is so well established in automated production lines, that it can’t be changed any more. I almost hade it made with Compair-Reavel in the UK, around 20 years ago, but also they found it in the end too costly too change their production line - my bad luck!

Thermodynamics

Another basic thing, often misunderstood, is that energy can’t be “used up”. Surely, the you put in your car is used up, but the energy it developed is still there, to stay around for all eternity. All the chemical energy that was stored in the original fuel, is converted to heat. at high temperatures in the car’s engine, but then decaying to heat at ambient temperature. The rest is also converted to heat by , the on the road, the transmission, air , etc. All energy that we “use” with our technology, finally decays to heat at ambient temperature, even the light from your lamps at does that.

So is there the term “waste heat”, as opposed to “useful heat”.What is useful? Take “energy-saving” lamps for example. If you live in a cold , where you have to heat your , a normal hot glowing light bulb actually delivers 100% useful energy, 5% of which is light, the rest is heat, that helps heating your , but this is not what you are told. Only the 5% light is brought forward as “useful” and you are told that you are “wasting” 95% with a normal glow bulb. Only in warm climates, especially third-world countries with very expensive electricity, or in cooled rooms, the use of energy-saving lamps makes sense!

The misconception by the public is that useful energy is “consumed” and waste energy is not. The real situation is that the useful energy is just used, but not “consumed” and is wasted after usage just the same. That’s why your energy bill comes back every month - nothing of what you used, is left. Therefore you read everywhere about “energy production” and “energy consumption”, not in the least used by decision makers in energy politics! It indicates that there is no basic understanding in public society, what energy is about and so unfeasible projects are initiated, wasting time and (your ) .

The First Law of Thermodynamics says that energy cannot be created (produced), nor destroyed (consumed). We can only convert energy from one form to an other and the Second Law of Thermodynamics says that it all finally must decay to heat at ambient temperature and so it does. Even though many know this, that is end of story for them, as far as the First Law is concerned. However, the scientific definition of the First Law says that if you add energy to a system to bring it in an other condition, you must remove the same amount of energy to bring it back in the original condition. Naturally, because if we could remove more, energy would be created from nothing and if less, energy would disappear into nothing. This formulation has great consequences, as follows:

Let’s consider an ideal hydrogen (water) engine, by which we pour water in it on one side and the same water AND useful mechanical energy comes out on the other side. Because the engine returns the same water as was applied ( as , but than condensing to water at ambient temperature), there cannot be a net output from the engine - it would have been created from nothing. If there is an output anyway, this means that the according energy had to be applied as well, not only the water. Indeed, we must apply energy to split the water in hydrogen and oxygen. If that could be done at an efficiency of 100% (electrolysis has only 60%), then that energy could appear as mechanical on the shaft. This then means that the hydrogen only was an energy converter, definitely not an energy source!

Hydrogen does not occur in free form on , like fossil fuels do and therefore hydrogen can never be an energy source. Give me a for every article that says different and I will be well off!If there would be a method to obtain free hydrogen at considerably less energy input than what combustion with oxygen gives in output, yes, then it would become an energy source, but such a method has not yet been found.

Instead of splitting water, hydrogen can be obtained from natural gases, such as methane. It shows however that the overall efficiency of such a hydrogen loop in a combustion engine would have a somewhat lower overall efficiency than using the natural gas (or bio-gas) directly in a combustion engine. Moreover, hydrogen is a very tricky gas to store and to handle. Not only is it very explosive, but it tends to exude through most metals as well. It is very voluminous, around ten times more than air and thus needs to be brought on high pressures to keep the volume down and that takes a of compression energy. Liquefying it would even take more energy, plus a temperature problem for storage as well. There are materials that can absorb hydrogen gas at a lower temperature and give it off again at a higher temperature, surely the better way, but also not very and practical in a distribution system. All together, there is no in hydrogen engines, but it may have an environmental - the only viable argument for using it, provided the consumer wants to pay the higher costs, do you?

The same can be said from fuel cells, working on hydrogen - they produce water () and need a steady supply offresh hydrogen and oxygen to continuously- whereto get how? Yes, the energy that fuel cells are supposed to “produce”, originally came from fossil fuels to manufacture the input hydrogen. Can we call that “non-pollutant” energy? A fuel cell is NOT an energy source, just an energy converter.

The importance of using spontaneity in physical processes is largely unknown, because it has to do with entropy, something not explained very well in schools. So I had to learn in practice, by , that if you want to separate fluids from each other, you must try to find a design by which this happens as spontaneously as possible, for example with “smart” piping, rather than using filters. The more you try to force it about with various design details, the more you will lose in efficiency - you “produce” entropy as it wrongly is called. The more you force about a process (introduce “irreversibilities”, as it is called correctly), the greater the change of entropy is, the lower the efficiency becomes. Entropy is an essential part of the Second Law of Thermodynamics, not to say the whole of it, but yet there is no general agreement among , what entropy actually is - very confusing.

The Second Law is actually not a “real” law, because it is based on observations only, not on any physical . This means that if the observations would change, the Second Law would have to change too, but this hasn’t happened yet, which makes it a law. In we experience that most things don’t happen spontaneously, only accidents, or coincidences in general, do (”Murphy’s Law”). If we want things to happen, we usually have to do for it. Hence we could formulate the Second Law as: “for free only the goes up”. On the internet, this formulation of the Second Law is widely violated by millions of web sites, trying to let you believe that for a small , you can become rich very soon. But that is not engineering (rather “”), so I leave you with that.

In engineering, especially when it comes to sources, the Second Law is also widely violated, or rather ignored. Oh yes, solar energy is free, but you can’t use it for free, why not? Because it is widely spread in Nature and thus the effort to collect it into one point of usage and to present it in a usable form, is very large and you have to pay for that effort. Using fossil fuels is cheaper and easier and that’s what we do instead. The same would be valid for nuclear power, but there the “” have been successful to obstruct it - with thanks from the Arab oil sheiks.

is something the Second Law is very much against, because it wants to spread it out in the environment, not to collect it for our use. Therefore these sources are high-entropy ones, meaning you must do a of to make use of them (low efficiency). There is one exception though and that is hydro-electric power. The forces of nature actually do all the for us, by collecting rain water in high situated reservoirs, ready for us to use; they are low-entropy sources. But also here the “” choose to favor the oil sheikhs instead.

Next would be heat pumps, which are inverted refrigerators. A heat pump absorbs heat from the environment, usually from the ambient air, by generating a cold surface there. This surface is small, but it actually collects heat from large, remote areas, brought by the wind. Also here, the forces of nature do the collecting for us, a second exception on the rule (compare with a storm blowing aside of your wind propeller, without affecting it, or the burning a hole in the ground next to your solar panel, also without affecting it).

The heat pump, as the name says, pumps up the ambient heat to a higher temperature that we can use, for example to heat water. Also its drive power is given off as heat at usage temperature, is thus no loss (where it is in a refrigerator) and so a heat pump can give off between 3 and 4 times more energy than what it takes to run it. If all the that to date and ongoing are wasted on wind propellers and solar collectors of various kinds, would have been used to provide all with heat pumps, many power plants could have been shut down by now and no more oil would be burned in homes for heating. This however is a with modification. A huge polluting industry, likely using fossil fuels, would be behind all those heat pumps, but that would be the same also for wind propellers, solar panels and the production of hydrogen and fuel cells, all having to be financed by the and making profit as well - the Second Law all right:”For free, only the goes up”

Rudolph N. J. Draaisma
CONSULTING ENGINEER
Online for your best solutions, against a small fee for short-term issues.
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Avoiding Commercial Mortgage Loan Mistakes

Thursday 27 November 2008

Although it will not be easy, avoiding key mistakes is likely to eliminate critical problems that often have disastrous consequences. The combined use of advanced strategies and proper precautions is likely to produce improved results.

While we will not be addressing all possible mistakes in this article, we will include several of the most severe issues to anticipate. The problem areas described below are typically more critical than expected by most .

Inexperienced Brokers and -

has recently become more popular with brokers and that previously focused on residential . More and more and brokers are looking for alternative revenue sources due to residential difficulties. Many of them are devoting increased attention to and services.

While this shift might eventually result in a positive outcome for , the immediate impact is a sudden influx of inexperienced residential brokers and attempting to provide for and . For most , the use of inexperienced advisors will be a of potentially serious proportions. As we have written about extensively, there are approximately 25 major differences between residential and , and most residential experts are simply unprepared for .

SBA Refinancing for a -

Because it is more difficult to an SBA or conventional than many realize, it is advisable to thoroughly refinancing options before completing the initial if at all possible. The biggest potential involving an effort to is likely to be an that refinancing can be easily accomplished and whenever the borrower chooses.

In reality most and refinancing situations will require less attractive than the initial . This is especially true with SBA refinancing because the acquisition contains features that will not be available when refinancing. Another potentially critical is to overlook short-term options which will eliminate refinancing problems.

A major obstacle to refinancing a , whether it involves an SBA or not, will be and other restrictions that effectively prevent refinancing for several years. Short term should be considered if a borrower expects that refinancing in the first three years of the is likely.

Specialized Property Issues -

With more specialized properties and , the potential for serious mistakes increases substantially because of the advanced . There is a more limited choice of options due to fewer providing specialized .

From a , office buildings, apartments and retail stores are less specialized. This is due to the likelihood that potential users and renters of such properties are more interchangeable than for a involving specialized uses such as a funeral , golf course and gas station.

The costs for more specialized properties are likely to be more variable and unpredictable than for office buildings, retail stores and apartments. For example, environmental and appraisal requirements for properties such as funeral homes and gas stations will be extensive and .

Solutions and Strategies for Avoiding Mistakes -

The potential mistakes described above can be overcome successfully. It is recommended that find sources offering helpful strategies and background information which will provide a comprehensive comfort level for complicated factors. should thoroughly discuss options with a before refinancing or buying a property or .

Stephen Bush is a commercial real estate investment finance expert. For and strategies about opportunity and , please visit AEX Group => http://aexcommercialfinancing.com

Determining Simple But Helpful University Research KPI

Tuesday 4 November 2008

University research or key performance indicators are a set of yardsticks that help university managers and key personnel gather data, assess, manage, analyze, and produce a comprehensive graphic report about the performance of the organization. Indicators used in university research should be complete. In order for the university manager to come up with beneficial indicators, he or she must consider the four perspectives: external stakeholders, internal stakeholders, and , and growth and .

Not all data gathered in the university’s daily activities are to become KPIs. The manager must first check if these indicators actually occurred, are recent, and are -oriented. He or she must see to it these indicators are well balanced, consisting of both lagging and leading metrics, and should be based on the rates and volume. Every possible can be classified as revenue, , or access.

The choice of KPIs usually depends on the size of the institution. The greater the size of student , the more demanding the metrics will become. In some cases, classifications of indicators can even exceed more than three. Aside from the usual access, , and revenue-based KPIs, there are also indicators, like student access, enrollment yield, student , course or program , online course , percentage of new students earning a certain number of units, basic skills, transfer , volume transfer, volume completion, revenue factors, indicators, and indicators.

Under student access indicators, managers may use these KPIs: yearly student head count, student-adult participation rating, and percentage of help receivers. In some cases, enrollment yield indicators may fall under student access. This is because the data varies depending on the season or time of the year university accepts students from feeder high schools. For example, the of new students from all feeder high school for each university department may be higher than that of the of high school graduates that enroll at the institution throughout the fall following graduation.

Under student , managers may use the following KPIs: course rates, fall rates, basic skills, transfer rates, transfer volume, and awards and achievements.

Course key performance indicators usually involve data that pertains to the percentage of students who successfully completed the whole program. This group of indicators should cover all types of programs and courses, including vocational and online courses.

Considered also as course are indicators that pertain to the number of vocational and online students who acquire the same level of and skills, as those who take conventional courses. Basic skills, on the other hand, may involve three types of inputs. It may include the percentage of students that improve their skills of at least one level. It may show the course of the students on a yearly scale. In addition, it may cover the relation of basic skills course to all courses for a certain period.

The formulation of university research may appear complex on the surface. Actually, it is a simple process. All the managers should do is to align the possible indicators to the university’s vision, mission, , and strategies.

If you are interested in university research kpi, check this web-site to learn more about university refind .

FOREX - The Foreign Exchange Market

Monday 3 November 2008

The term FOREX ( or Forex or FX) denotes Exchange . It is the world’s prime and most liquid , which involves between, , multinational , government, as well as other .

It’s a huge where are brought from various corners of the world and sold for and profit. of dollars are exchanged each day and the flow is almost incalculable.

The has some inimitable features of its own like i) High is one thing which attracts . ii) The volume of trade that takes place each day. iii) The use of . iv)The of traders who are involved in day to day .

These features are more than enough to attract the of traders to this . Here refers to of one ’s legal tender and selling of another ’s legal tender simultaneously.
The trade takes place around the starting from the and going onto south eastern continent Australia and then to New Zealand from there to Far East and back to the U.S.

Forex is a definite set of regulations designed by person or group of persons, which will inform you how to trade the forex .

These will include specifications for the relevance of management, type of paired, what hour of day to enter the trade, the mode of exit etc. The give you an edge over the other and can make you the master of trade.

is an act which requires great deal of about the and self- as well as time requirement is another major factor. A person who is able to sense the and downs of the can become the ruler of trade . The trade is highly volatile and subject to changes every second. Forex has an excellent feature of to ensure safe practices to the .

The forex system has an added that the forex signal gives the traders instant information updates about the forex . FX is a continuous that works 24 hours for 5 days in a week, therefore the forex alert play a significant role for the traders. It gives information about the GBP/USD and EUR/USD which are sent in the morning and the alerts for pairs USD/ and GBP/ which are sent at night.

is nowadays a very profitable . The can be traded based on the and . Connection2forex.com provides best information about these forex which help in protection against unexpected . These are based on thorough examination of the impact of contingent changes in level of and are indispensable for the customers.

The forex form the basis of and for this the need not install any complicated and can carry out the simply with the help of internet.

Forex is affected by large number of factors like the Gross Domestic Product, international trade, increase or decrease. These are the major factors that affect the forex as they have a directly proportionate effect on a ’s .

For more information about forex , forex, , , , forex , visit: http://www.connection2forex.com

Maco is a optimizer and PageUPmedia . Our services include forex, , forex system, forex signal, forex , , .

Tax Identification Number

Friday 31 October 2008

Taxation is a powerful instrument to determine the fiscal policy of a nation and help to build up the economic structure of a . is a compulsory payment to the government.

Taxation is in the nature of a compulsory levy and there is no quid pro quo between the amount paid and the services provided by the government.

The primary purpose of taxation is the of resources and canalizing the same for productive . Taxation can also be used as a measure to promote equity and reduce disparities or to encourage or discourage consumption of particular items.

structure in India

The system of taxation in India is very much primitive. For development of any nation and for , imposition of within the framework of logical structure is utmost necessary. On this basis, system of taxation is broadly classified into two categories- Direct and Indirect . In fact, direct include those which the taxpayer pays directly on his income, wealth, etc. Direct are mainly Central’s subject except professional and Agricultural Income-.

The difference between the two types of is that in the case of direct the burden or ‘incidence’ is borne by the -payers themselves whereas in the case of an indirect , the burden can be shifted to another person.

Authority to collect is conferred on the Central and State Government by the Constitution of out .

Another feature of the Indian structure is the to increase the of indirect . This had come down drastically to 16% by 1991. However, there has been some improvement in the subsequent years. For the year 1998-99 the ratio between indirect and direct was 70:30. It had improved to 62:38 in 2001-02. Even at this , the economic is that the burden will fall disproportionately on the poorer section, as indirect , especially on , affect the poorer sections more.

It must, however, be admitted that India’s effort since independence has been quite appreciable. The to ratio (centre and states together) was 6% in 1950-51. In rose to 11% by 1970-71. Compared to many developing countries, India’s record of resource through has been satisfactory.

’ refers to payment of fund to governmental authorities against which no direct may be expected by the payers. The governmental authority of any modern is found to require huge resources to discharge various functions. The functions done by modern government may be of two basic types which are- (i) compulsory functions and (ii) optional functions. Traditional compulsory functions refer to the areas of activities relating to the defence of the and maintenance of internal law and order. To discharge these compulsory functions any modern government is required to maintain security and police forces. Huge resource is essentially required to discharge such functions. Optional functions refer to various activities relating to improvement of socio- of the . In relation to such areas of activities a modern government, based on social welfare concepts is required to spend huge fund for development of economic infrastructure in the form of road and railway development, power generation, telecommunication development, educational and health care development and even implementation of various schemes for development of agricultural and industrial sectors of the .

Federal Identification Number

All the has its own image and entity and the identification number is used to identify this entity. Simply to be said that it is used to identify employer’s accounts. It is also known as (EIN) or Taxpayer Identification Number (TIN). The Federal Identification Number or Employer Identification Number or EIN is a nine digit number and it is used to fulfill most of your needs. It is to be mentioned that, Service () assigns the federal ID number to identify the .

The employer, sole proprietor, trust, non profit organization, or other entities may use this ID number. One can easily apply for a new identification number though there is already an EIN, due to the changes of ownership or some certain .

Before applying for EIN either telephone or fax, you have to complete Form SS-4. The federal identification number is applied on online also. It is open an avenue to the customer. Therefore you have to fill the form and other necessary criteria through online. You can also collect your ID Number through online. In this whole process there may not be need to registration. The application process is proceeds to fill up the form.

Last of all it is to be said that, a need a Federal Identification Number or Employer Identification Number, so that they can maintain their own image or entity in the . It is to be noted that, the ID number could not be transfer in case of the transferring of any . If the structure or ownership would be changed then a new ID number is required for the . But above all you have to collect the relevant information to get an EIN.

IVA Debt Write Offs

Saturday 25 October 2008

Stop worrying about problems now if you are finding it difficult to deal with them. There are many alternative means of dealing with problems. In extreme cases, some of the resort to to get over problems. They fail to look at the available alternatives.
There are many alternatives available which can help avoid . An IVA is one such alternative. Not any are aware of the of an IVA. You must understand what an IVA is.

Basically, an IVA, or , allows a person in difficulty to reach a new formal agreement with their . An IVA allows a debtor to make , of an affordable amount each month, to their for the term of the IVA (normally 5 years). After this period, the debtor will be considered free. According to the of an IVA, the are legally bound to write off any outstanding balance when the IVA finishes.

You must realize that from the outset that an IVA is a “Voluntary” agreement, and both parties must voluntarily agree to be bound by the IVA . IVA write offs are quite popular with . It helps them overcome problems quickly.

An Individual Voluntary Arrangements can write off a large of your debts (subject to your ). If you can keep up with monthly payments, you can look forward to reduce burden considerably.

An Individual Voluntary Arrangements can help achieve all of the following:

• Prevent any legal action

• Freeze all interest and charges

• Help you get rid of CCJ’s

• Put an end to harassing calls of the immediately.

• Give you a fresh lease of life.

• An affordable monthly payment based upon your available .

IVA and are two extreme . You must understand the thin line of difference between them. Unlike , details of an Individual Voluntary Arrangements are not openly published anywhere. It is a confidential arrangement between you and your . Not even the employers and landlords will be informed about it.

Moreover, there are very high costs involved with a . It is an expensive affair. can leave an indelible mark on your score. It can affect your chances of securing a easily. An IVA on the other hand provides with an option of overcoming problems without risking your situation.

IVA write offs have helped many in the past.

For more information:

IVA Debt Write Offs

IVA and Bankruptcy

Hydrogen Fuel Cell - How to Save on Car Fuel Bills

Tuesday 21 October 2008

Hydrogen fuel cell used in the car can help increase your and also help the environment in the process. Thousands of have already found alternate ways to convert their .

A savvy automobile owner has come up with a very simple yet incredibly efficient way of boosting his old car’s gas by up to 100% - that means several every year.

The says that his product will change water into HHO Two hydrogens with one oxygen. Hydroxy, better known as Brown’s gas burns better than regular gas at our fuel pumps and is more energetically efficient. Hydrogen Fuel Cell conversion is what this process is generally called.

Price of gas is continuously rising and the fuel issue is beginning to get rather grim. Hybrid are more popular all over the , concepts of electric and Hydrogen fuel cell are developed in almost any and finally there is a way for you to add a little something to fuel efficient revolution.

Owners of sometimes forget (or perhaps ignore) a very real gas--saving option, which would be to change how they drive. In order to save on gas, it is not necessary to purchase a hideous and slow prototype. You can also boost the of your V8 truck! If you want to get more miles for your gas, you need only do these things.

Speed up smoothly. The gas that is used by this will be less.

Maintain an adequate distance so you don’t have to stop and accelerate repeatedly.

There are two things that can be done to enable your vehicle to get better gas , one being to drive slower and the other is to take your car to a ; a simple air filter change or spark plugs replacement could greatly increase gas . Driving at a speed greater than 120kph uses a more fuel.

Many have never driven a standard transmission car on the hills of Colorado, and do not know that you need to change gears as soon as possible when you reach the top or bottom or a hill, as the low gears use up to 30% more fuel than needed.

The motors in our have been so poorly built that 80% of the fuel is wasted as heat and unburned gas - only 20% or so actually burns as fuel. pollution. Actually if you used valued at $3 per gallon then then the vehicle you drive is really only using 60 cents. second 40 bucks were totally wasted. When you make your car able to be operated by water, you create a gas which helps burning the fuel in a better .

Instructions on how to convert car to run on water are also available for sale on the Internet. Skeptics change their mind after finding out that the instructions come with 2 month full back guarantee.

Converting your car to run on water not only saves and decreases pollution, it also increases your car’s engine longevity. The system allows you to burn gas more efficiently - which decreases the noise of the engine and the wear and tear of the motor’s parts.

The system is composed by simple parts that are basically bolted on the engine. It can be accomplished with practically no . With any person to any automobile. You cannot find the system if it is disconnected from the motor.

Picture yourself only needing to buy half the gas you are now! Wouldn’t it be great to have a couple to spend on your Christmas ? In order to get a vacation? Why not try raising for a down payment on a in a unique way, such as having a bake sale or a car wash?

It is my wish that this information has been helpful enough to convince you to change your vehicle into one that runs on water. You are on your way to being able to build hydrogen fuel cell.

how to build hydrogen fuel cell and save thousands on fuel bills.

The Honda Fit Hybrid - A Car of Mythic Proportions

Tuesday 21 October 2008

As of this writing the long rumored Honda Hybrid vehicle seems to still be a myth at best. In , there has been no official announcement from Honda. However, it does appear that Honda will be releasing a new hybrid to replace the . Will this be a hybrid? Nobody but Honda really knows for sure. Does it really matter? In my opinion, no. is that I believe that Honda will release a respectable replacement for the in the next year or two.

Whether to call it a , or something else really does not matter. This new vehicle will still serve the intended purpose of the model that it is replacing. To me, that is the only really important thing. There was a great going last year about the hybrid being introduced in 2008 or 2009, but that is all it was, . It is very likely that this new hybrid will be priced well below the Civic. This will open up great opportunities for a while new class of that would not normally look at hybrid technology.

Honda covers the hybrid very well. The and the coming replacement compete (and will continue to compete) well against the Toyota Prius. The Civic is a great looking, powerful car that is very affordable to many that cannot afford the more expensive hybrid . Last but not least is the Accord hybrid is neck and next with the Toyota Camry, two of the best selling around in their standard versions.

Two areas where Honda seems to be lacking is in the availability of a truck or SUV hybrid. I think that the fact that Honda is concentrating on the subcompacts, compacts and full size sedans is a great thing. The advances they have made in technology have been wonderful. Let Honda be the first to have a truly great hybrid lineup first, then go after the smaller other .

In closing, to those waiting for a Honda Hybrid, do not hold your breath. But all is not , there should be a comparable model available real soon now that should more than satisfy your needs.

Adam Taiz writes for http://hybridvehiclesguide.com Read more about other Honda Hybrid Cars including this great Honda Civic Hybrid Review and many more.