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Water’s natural beauty preptuated through Fountains.

A traditional fountain is an arrangement where water issues from a source, fills a basin of some kind, and is drained away. Fountains may be wall fountains or freestanding. In fountains, sheets of water may flow over varied surfaces of stone, concrete or metal. Basins may overflow from one into another, or the overflow may imitate a natural cascade. Many fountains are located in small, artificial, ornamental ponds, basins and formal garden pools, and often they include sculpture.

One of the most common features of a fountain, if there is enough pressure, is one or more jets, in which water is forced into the air under pressure to some height. A famous example of such a modern fountain rises from the surface of Lake Geneva.

Early fountains depended on the natural gravitational flow of water, from a spring or aqueduct supplied by a distant and higher source of water, which provided hydraulic head.

Hellenistic hydraulic engineers employed great originality in designing fountains, where the water pressure might be employed to animate automata and water organs.

 

 

Iraqi engineer and inventor al-Jazari first described reciprocating motion in 1206 when the kings of the Artuqid dynasty in Turkey commissioned him to manufacture a machine to raise water for their palaces. The finest result was a machine called the double-acting reciprocating piston pump, which translated rotary motion to reciprocating motion via the crankshaft-connecting rod mechanism.

Other early fountains were geometrically regularized springs, developed in the classic Persian garden. These gardens were typically enclosed and were designed to provide relaxation. The effect of sunlight was the main concern regarding the structural aspect of the Persian garden design. Shapes and textures were specifically chosen for their ability to direct sunlight. In the 16th century, elaborate fountain displays were garden features of Mannerist gardens of Central Italy and the Mughal gardens of India.

 

 

Early Modern English employed fountain to refer to a natural spring water or source, which the 16th century garden fountain might consciously imitate in a grotto.

Christian allegory made much use of the concept of the fountain, specifically the Fountain of Life, associated with the rebirth that was intended to be experienced at the Baptismal font. The Fountain of Life appears in Christian illuminated manuscripts of Late Antiquity, and elaborate Gothic fountains formed centerpieces for enclosed gardens. An offshoot of the Fountain of Life was the legend of the Fountain of Youth, which Juan Ponce de León sought in Florida. From the Fountain of Youth one can drink to gain immortality, or to regain one’s youth.

The practical Romans marked the delivery end of aqueducts with a public fountain, a practice that was revived in Rome in the 15th century, when the restored Aqua Felice once more delivered a symbolic presentation of its waters to Rome in the original Trevi Fountain, since replaced by the familiar Baroque fusion of water, architecture and sculpture.

Animated fountains often use laminar jets that provide water that moves like ping pong balls in animation, so that it breaks up, as the height varies, and the behavior of each jet operates independently with up to 5 Hz modulation frequency (1/5 second), so that the water packets collide with themselves. For example, such fountains can spit up one ball of water, which then explodes, showering people with a fine mist.

A musical fountain is a type of fountain that dances in time with recorded or live music, controlled either by a computer or by a live “organist” operating the fountain through a switchboard. Notable examples of this are fountains on Vasilievsky Island in St. Petersburg, Russia, and the fountains of the Bellagio in the Las Vegas Strip.

 

 

A splash fountain or bathing fountain is a fountain intended for people to cool off in. Although many fountains were not designed as bathing fountains, children of all ages often use them for that purpose. Some fountains are fenced in, or have raised edges as a barricade to keep people out. In other situations, fountains are designed to allow easy access, and feature nonslip surfaces, so that people can safely use them to cool off in on hot summer days.

Splash fountains have zero standing water, to eliminate possible drowning hazards, so that no lifeguards or supervision is required. These splash pads are often located in public pools, public parks, or public playgrounds (known as “spray grounds”).

 

 

A recent example of a public splash fountain, intended for water play, is the one located in Toronto’s Dundas Square. It consists of 600 ground nozzles arranged in groups of 30 (3 rows of 10 nozzles). Each group of 30 nozzles is located beneath a stainless steel grille. Twenty such grilles are arranged in 2 rows of 10, right in the middle of the main walkway through Dundas Square. Both the architects and the designers have confirmed that these were intended for water play, and the facility operators have confirmed that the water is treated to pool water quality standards, and that the health department tests the water quality, at least once a day. The entire surface of Dundas Square is made of special nonslip square granite slabs that match the size of the metal grilles. The special texture on the slabs ensures that they are not slippery when wet.

Spray fountains are designed to serve as a play area where children (and sometimes adults) can run around and cool off under a canopy of water. Spray fountains are becoming popular in areas where the construction of public pools is difficult or costly, such as urban areas. However, spray fountains can also be used to enhance a pool’s surrounding play area.

A water fountain or drinking fountain is designed to provide drinking water and has a basin arrangement with either continuously running water or a tap. Modern indoor drinking fountains may incorporate filters to remove impurities from the water and chillers to reduce its temperature. In some regional dialects, water fountains are referred to as bubblers. Water fountains are usually found in public places, like schools, rest areas and grocery stores. Many jurisdictions require water fountains to be wheelchair accessible (by sticking out horizontally from the wall), and to include an additional unit of a lower height for children and short adults. The design that this replaced often had one spout atop a refrigeration unit.

In modern fountains, the traditional gravitational pressure from an unseen reservoir at a higher level is not always practical. In many circumstances fountains obtain their water from a closed, recirculating system that must still be filled at the start from the local water supply system and also topped up through its life to offset the effects of evaporation. Allowance must also be made to handle overflow in the case of heavy rain.

The pressure that causes water to move through the fountain may be produced instead by a motor-driven (often-submersible electric) pump. “Static head” is useful to quantify this pressure.

 

 

A water filter, typically a media filter, removes particles from the water — this filter requires its own pump to force water through it and plumbing to remove the water from the pool to the filter and then back to the pool. The water may need chlorination or anti-algal treatment, or may use biological methods to filter and clean water.

The pumps, filter, electrical switch box and plumbing controls are often housed in a “plant room”. Low-voltage lighting, typically 12-volt direct current, is used to minimize electrical hazards. Lighting is often submerged and must be suitably designed. Floating fountains are also popular for ponds and lakes they consist of a float pump nozzle and water chamber.

Many civic fountains in public parks are commissioned in commemoration of either national or public figures.

 

 

There are also some limited fountain day celebrations. The University at Albany hosts an annual “Fountain Day,” a day on which the university community comes together to celebrate the arrival of spring and the near-end of the semester. Drawing large crowds, the fountain-centered event creates something akin to an urban beach.

A hydraulophone is a fountain that can be played as a musical instrument. These fountains are like woodwind instruments, but using water instead of air. The embouchure of the instrument occurs at the finger holes (referred to as “mouths”). Hydraulophones often have multiple “mouths”, so that a player can put each finger into a different mouth at the same time, in order to play chords, while independently manipulating each finger for separate and individual control of the embouchure of each note in a chord. A skilled hydraulist can slightly “bend” each note in order to play just intonation in any desired key, or to gently and fluidly vary intonation or temperament as a piece of music changes from one key to another.

There is a need for good water quality in contemporary fountains, regardless of their avowed intended use. Regardless of the fact that some fountains are designed and built not as bathing fountains, but are rather used simply as architectural decor, people will often drink from, bathe or wash their hands in any fountain. Additionally, fountain spray can contain legionella bacteria and has been linked to Legionnaires ‘disease outbreaks. Therefore, minimum water quality standards are necessary, regardless of intended use. Guidelines have been developed for control of legionella in ornamental fountains.

In theory, a freestanding water feature should not have a bather load, and consequently, many builders would not choose to install filters or sanitation devices. In reality, however, people will interact with ornamental water fountains in the most surprising ways. In Disneyland, for example, people have been reported to change their babies’ diapers and then wash their hands in the water fountain (thus adding unexpected bacteria and organics into the water).

In July 1997, an outbreak of cryptosporidiosis was connected to an ornamental fountain at the Minnesota Zoo, which did not have proper filtration and water treatment. Children played in fountains and swallowed water, and spurted the water out of their mouths to mimic the way nozzles in the fountain spurted the water. It was therefore necessary to put a fence around the fountain to keep people away.

 

 

In the United States fountain operators and owners are legally liable for failure to either fence-in fountains, or to properly filter, chlorinate or otherwise treat the water, if the fountains are not fenced in. If the water is unsafe, fences must be designed to keep people far enough away, so that they cannot touch the water, otherwise children get water on their hands, put their fingers into their mouths, and end up getting sick, thus subjecting owners and operators to legal liability.

If you are interested in adding a fountain to your home or office, Repairfinders.com is the perfect place for you. With many qualified professionals in your area, it will only take a couple of minutes to find the right person for you. Not only will a fountain bring you peace and entertainment it will also bring elegance to your home office.

 

 

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Carpentry, a profession for the truely talented.

Hey, folks at home, it is your old pal Jack! Carpentry is a very interesting profession. It requires skill, creativity, honesty, and reliability. It is a great career choice for anyone who is willing to put the work into being good at this. It pays well, and once you take the proper classes, and get your certificates and license, you can make your own hours. So let us talk a little about this today. Carpenters are involved in many different kinds of construction, from the building of highways and bridges to the installation of kitchen cabinets. Carpenters construct, erect, install, and repair structures and fixtures made from wood and other materials.

Each carpentry task is somewhat different, but most involve the same basic steps. Working from blueprints or instructions from supervisors, carpenters first do the layout-measuring, marking, and arranging materials-in accordance with local building codes. They cut and shape wood, plastic, fiberglass, or drywall using hand and power tools, such as chisels, planes, saws, drills, and sanders. They then join the materials with nails, screws, staples, or adhesives. In the last step, carpenters do a final check of the accuracy of their work with levels, rules, plumb bobs, framing squares, and surveying equipment, and make any necessary adjustments.

 

When working with prefabricated components, such as stairs or wall panels, the carpenter’s task is somewhat simpler because it does not require as much layout work or the cutting and assembly of as many pieces. Prefabricated components are designed for easy and fast installation and generally can be installed in a single operation.

Some carpenters do many different carpentry tasks, while others specialize in one or two. Carpenters who remodel homes and other structures, for example, need a broad range of carpentry skills. As part of a single job, for example, they might frame walls and partitions, put in doors and windows, build stairs, install cabinets and molding, and complete many other tasks. Because these carpenters are so well trained, they often can switch from residential building to commercial construction or remodeling work, depending on which offers the best work opportunities.

Carpenters who work for large construction contractors or specialty contractors may perform only a few regular tasks, such as constructing wooden forms for pouring concrete, or erecting scaffolding. Some carpenters build tunnel bracing, or brattices, in underground passageways and mines to control the circulation of air through the passageways and to worksites. Others build concrete forms for tunnel, bridge, or sewer construction projects.

Carpenters employed outside the construction industry perform a variety of installation and maintenance work. They may replace panes of glass, ceiling tiles, and doors, as well as repair desks, cabinets, and other furniture. Depending on the employer, carpenters install partitions, doors, and windows; change locks; and repair broken furniture. In manufacturing firms, carpenters may assist in moving or installing machinery.

 

Work environment. As is true of other building trades, carpentry work is sometimes strenuous. Prolonged standing, climbing, bending, and kneeling often are necessary. Carpenters risk injury working with sharp or rough materials, using sharp tools and power equipment, and working in situations where they might slip or fall. Although many carpenters work indoors, those that work outdoors are subject to variable weather conditions.

Most carpenters work a standard 40 hour week. Hours may be longer during busy periods. Carpenters learn their trade through formal and informal training programs. Between 3 and 4 years of both on-the-job training and classroom, instruction usually is needed to become a skilled carpenter. There are a number of ways to train, but a more formal training program often improves job opportunities.

Education and training. Learning to be a carpenter can start in high school. Classes in English, algebra, geometry, physics, mechanical drawing, blueprint reading, and general shop will prepare students for the further training they will need.

 

After high school, there are a number of different ways to obtain the necessary training. Some people get a job as a carpenter’s helper, assisting workers that are more experienced. At the same time, the helper might attend a trade or vocational school, or community college to receive further trade-related training and eventually become a carpenter.

Some employers offer employees formal apprenticeships. These programs combine on-the-job training with related classroom instruction. Apprentices usually must be at least 18 years old and meet local requirements. Apprenticeship programs usually last 3 to 4 years, but length varies with the apprentice’s skill.

On the job, apprentices learn elementary structural design and become familiar with common carpentry jobs, such as layout, form building, rough framing, and outside and inside finishing. They also learn to use the tools, machines, equipment, and materials of the trade. In the classroom, apprentices learn safety, first aid, blueprint reading, freehand sketching, basic mathematics, and various carpentry techniques. Both in the classroom and on the job, they learn the relationship between carpentry and the other building trades.

The number of apprenticeship programs is limited, however, so only a small proportion of carpenters learn their trade through these programs. Commercial and industrial building contractors with union membership offer most apprenticeships.

Some people who are interested in carpentry careers choose to get their classroom training before seeking a job. There are a number of public and private vocational-technical schools and training academies affiliated with unions and contractors that offer training to become a carpenter. Employers often look favorably upon these students and usually start them at a higher level than those without the training.

 

 

Other qualifications. Carpenters need manual dexterity, eye-hand coordination, physical fitness, and a good sense of balance. The ability to solve arithmetic problems quickly and accurately also is required. In addition, military service or a good work history is viewed favorably by employers.

Certification and advancement. Carpenters who complete formal apprenticeship programs receive certification as journeypersons. Some carpenters earn other certifications in scaffold building, high torque bolting, or pump work. These certifications prove that carpenters are able to perform these tasks, which can lead to additional responsibilities.

Carpenters usually have more opportunities than most other construction workers do to become general construction supervisors because carpenters are exposed to the entire construction process. For those who would like to advance, it is increasingly important to be able to communicate in both English and Spanish in order to relay instructions and safety precautions to workers; Spanish-speaking workers make up a large part of the construction workforce in many areas. Carpenters may advance to carpentry supervisor or general construction supervisor positions. Others may become independent contractors. Supervisors and contractors need good communication skills to deal with clients and subcontractors. They should be able to identify and estimate the quantity of materials needed to complete a job and accurately estimate how long a job will take to complete and what it will cost. Average job growth, coupled with replacement needs, create a large number of openings each year. Job opportunities should be best for those with the most training and skills.

Employment change. Employment of carpenters is expected to increase by 10 percent during the 2006-16 decade, about as fast as the average for all occupations. The need for carpenters should grow as construction activity increases in response to demand for new housing and office and retail space, and for modernizing and expanding schools and industrial plants. A strong home remodeling market also will create demand for carpenters. Moreover, construction of roads and bridges as well as restaurants, hotels, and other businesses will increase the demand for carpenters in the coming decade.

Some of the demand for carpenters, however, will be offset by expected productivity gains resulting from the increasing use of prefabricated components and improved fasteners and tools. Prefabricated wall panels, roof assemblies, and stairs, as well as prehung doors and windows can be installed very quickly. Instead of having to be built on the worksite, prefabricated walls, partitions, and stairs can be lifted into place in one operation; beams and, in some cases, entire roof assemblies, are lifted into place using a crane. As prefabricated components become more standardized, builders will use them more often. In addition, improved adhesives are reducing the time needed to join materials, and lightweight, cordless, and pneumatic tools-such as nailers and drills-will all continue to make carpenters more productive. New and improved tools, equipment, techniques, and materials also have made carpenters more versatile, allowing them to perform more carpentry tasks.

 

Job prospects. Job opportunities should be best for those with the most training and skills. Job growth and replacement needs for those who leave the occupation create a large number of openings each year. Many people with limited skills take jobs as carpenters but eventually leave the occupation because they dislike the work or cannot find steady employment.

Carpenters with all-around skills will have better opportunities for steady work than carpenters who can perform only a few relatively simple, routine tasks. Carpenters can experience periods of unemployment because of the short-term nature of many construction projects, winter slowdowns in construction activity in northern areas, and the cyclical nature of the construction industry.

Employment of carpenters, like that of many other construction workers, is sensitive to the fluctuations of the economy. Workers in these trades may experience periods of unemployment when the overall level of construction falls. On the other hand, shortages of these workers may occur in some areas during peak periods of building activity.

Job opportunities for carpenters also vary by geographic area. Construction activity parallels the movement of people and businesses and reflects differences in local economic conditions. The areas with the largest population increases will also provide the best opportunities for jobs as carpenters and for apprenticeships for people seeking to become carpenters. Therefore, as you can see it takes a lot of skill to become a carpenter. The only place to find the best in the field is at Repairfinders.com. We have the best in the business listed and you could never go wrong. Do not believe me check it out for yourself!

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All about Electricians!

Hello folks at home, I was thinking earlier about something quite profound, it made me chuckle and sigh at the same time. It was about how we underestimate electricians. You see, electricians bring us electricity. They put in the wires that carry electricity through our homes, offices, and factories. They also fix electric machines. Without these workers, there would be no lights, no computers, and no TVs plugged into our walls. So today, let us talk about the complexity of being a hardworking electrician.

An electrician is a tradesman specializing in electrical wiring of buildings and related equipment. Electricians may be employed in the installation of new electrical components or the maintenance and repair of existing electrical infrastructure. How do they do this you say? Well I will tell you! Electricians start by reading maps (called blueprints) that show how electricity flows. Blueprints show where to put wires, electrical equipment, and outlets for plugs. When working on a new building, electricians draw new blueprints. Then, electricians put tubes or pipes inside the walls. They also put small boxes on the walls to hold switches and outlets. They pull wires through the tubes to connect the boxes and make a path for the electricity to follow. A path for electricity is called a circuit. Electricians also add circuit breakers, transformers, and other equipment to control how electricity flows. They make sure the right amount of electricity goes to the machines that use it. Electricians follow strict rules about how to wire buildings. After they finish wiring, electricians use ohmmeters, voltmeters, and oscilloscopes to measure the amount of electricity running through the system. Electricians also install wires for telephones, computers, and fire alarms. Sometimes, they use fiber optic cable.

 

In most countries, the job of an electrician is a regulated trade for safety reasons due to the many hazards of working with electricity, requiring testing, registration, or licensing. Licensing of electricians is controlled through government and/or professional societies. Maintenance electricians fix electric machines or broken wiring. Some focus on houses. They might rewire a house. They could replace an old fuse box with one that can run more appliances. Some electricians work in factories. They might fix motors, generators, and robots. They also inspect equipment and fix it before it breaks. They tell managers when equipment needs to be replaced. Electricians put in new electrical equipment, too. Electricians use wire strippers, knives, hacksaws, and power tools. Some electricians stand for a long time and climb ladders. Some work in dusty, dirty, or hot places. But others work in clean places. They need to be careful to avoid falls, cuts, and electric shock. They need good hand-eye coordination and to be good at seeing the different colors of wire.

As you can see, it is not easy at all to be an electrician. Not only do they have to work in a potentially dangerous environment but they also have to be smart. They have to do very well in math and science. Even after an electrician get their licensing and what not; they still have to spend 3 to 5 years as an apprentice before they are able to stretch out on their own. These are important facts we all must consider. When you are looking for a trained highly qualified electrician the best place to look is… you know this! That is right, repairfinders.com. Why? Because at repairfinders we only list the best in the industry, so not only will you get excellent service, and a hardworking individual, you will also get a reliable electrician for life. So why are you still here reading this? You should be getting free quotes from electricians in your area right now on our site! Until the next time, Jack

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What kind of Handyman?

I was asked a very interesting question a couple of days ago, and I have decided to expound on it. A young woman came into my office, she wanted some minor handy work done around her house, and she wanted to know if she would be better off hiring someone with or without a license. So today folks I will explain to you the general facts of a handy man, and whether it is better to get one who is or is not licensed for different needs.

A handy man is a person competent in a variety of trade skills, repair, and maintenance work. The term often describes someone who is paid for the application of these skills around the home. Tasks for which a Handyman may be employed range from minor to major, and may include such jobs as painting, drywall repair, remodeling, minor plumbing work, minor electrical work, and furniture assembly.

Some, but not all, handymen are licensed and insured. Some jurisdictions require licensing and/or insurance. For safety reasons, they may disallow them from performing plumbing, electrical wiring, or gas-fitting services without being licensed in the applicable trade. If you decide to hire a non-licensed handyman they can only do miscellaneous non-structural repair work. This is a list of what they can and cannot do.

CAN DO

CANT DO

Awning Installations

Adding or changing existing windows

Minor Carpentry

Adding, removing, or cutting away walls, portions, or partitions

Door Repair

Chemical treatment of pools

Dry Wall

Electrical Repair

Non-structural Masonry

Addition, alteration, replacement or relocation of any plumbing piping, electrical wiring or mechanical equipment

Painting

Pool Installations

Paneling

Roofing Repairs

Paving (excluding driveway apron)

Well Drilling

Small Appliance Repair

Mechanical H.V.A.C. repairs

Soffit & Fascia

Removal of any structural beam or load bearing support

Non-structural Stone

Removal or change of any required means of any egress or rearrangement of parts of a structure

Texture Coating

Gas-fitting services

Tile Installation


Trim Work


Window Repair


 

 

On repairfinders.com you will find a large selection of licensed and non licensed repair people, it is up to you to choose which one would be best for the work that you need done. Think about the differences in price, quality of work, and the time it would take. However, don think that just because a handyperson is not licensed it makes him less qualified to do the job. If they are on our site, they are hardworking, honest, and reliable. So if you need a general handyman today, I suggest you hightail it over to repairfinders.com right now. Jack is over and out.

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