Sunday, November 27, 2011

Hair And Beauty Solutions From Experts School

!±8± Hair And Beauty Solutions From Experts School

School of hair design at a glance

Headmasters School of Hair Design is located at Idaho and is one of the best schools of design in Boise. This school had been established on December 1, 1982 at Coeur D Alene and since then had been successfully producing brilliant students and professionals. The school of hair design has won several awards including awards at I.E.C.A in three successive years in a row.

The school has best team of experts trained varied techniques and disciplines so as to provide students high level of knowledge. Faculty at the hair design school is selected with great discretion by the headmasters. Several instructors and cosmetology experts have been appointed to being out best in the students enrolled in various courses.

High standards of the school of hair design

Headmasters School of Hair Design has been acknowledged as one of the best design school in college directory of U.S. universities. The National Commission of Cosmetology Arts and Sciences has accredited the school of hair design as one of the best U.S. colleges.

Students who are interested in enrolling themselves in one of the courses offered at institution can look up the address and other necessary details regarding the admission and enrollment procedure in college directory.

Courses offered

The school of hair design offers some of the most prestigious certification courses that are very much popular in U.S. universities that include:

1. Cosmetology Program

2. Nail Technology Program

3. Instructor Training Program

4. Esthetics Programs

The best part of earning certification from the Headmasters School of Hair Design is that the study curriculum involves scientific researches, artistic principles and hands-on expertise. There is a simulation salon environment available for students so as to prepare them for the practical application of the techniques and beauty art they are learning in the classrooms

Licensing and study curriculum

After the completion of their respective programs students can register themselves for the licensing exams after clearing which they can practice their skill professionally. The professional skills incorporated in the study plan include chemical processes, hair designs, imaging, nail care, hair care, product knowledge, business ethics and principles.

Headmasters School of Hair Design has also been accredited and approved by the US Department of Education which provides financial assistance to students of the best U.S. colleges.

Boise campus of the school of hair design has a complete and highly sophisticated skin care center where instructors work along with students and introduce them to high standard of learning and using new technologies. Students having high diplomas and GED can apply for financial aid and certain specific loans as well.


Hair And Beauty Solutions From Experts School

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Saturday, November 19, 2011

Washing Machines and Principles of Operation

!±8± Washing Machines and Principles of Operation

Soil removal in a modern washing machine is a combination of chemical and mechanical processes.

1. Chemical action. The detergent or soap solution dissolves and loosens the soil in the fabric.
2. Mechanical action. Flexing the clothes and forcing the detergent or soap through removes the soil. The functioning of the washer is aided by the heat and softness of the water, which increases the chemical action of the detergent or soap used.

Almost all modern automatic washers employ one of two types of mechanical action, tumbler or agitator. The latter is by far the more popular and more commonly used. But all automatic washers, regardless of type, model, or make, have only four basic functions of operation: (1) fill, (2) wash, (3) pump out, and (4) extraction (spin).

The heart of the agitator-type washing machine is the agitator, which usually consists of vanes or blades on a cone that fits over a central shaft in the washer tub. As the agitator turns back and forth, the blades or vanes catches clothes and move them about. This movement also creates currents in the water, which contribute to the cleaning action.

There are almost as many agitator designs as there are washers that use agitators. Agitators have vanes or blades of various numbers, designs, and sizes, which are arranged in a vertical or spiral position. Agitators may be of solid or perforated plastic or metal (usually aluminum).

Most agitator-type washing machines employ an oscillating (back-and-forth) action during the wash cycle. To produce this oscillating action, the arm is generally connected off-center to a low-speed gear wheel. As this gear wheel turns, it imparts a back-and-forth motion to the arm. This motion, in turn, is transmitted to a pinion gear which drives the agitator.

There are also other methods of driving the agitator. For instance, a few models provide a slow-speed, off center, wobbling motion to the agitator, while some others impart an up-and-down, pulsating motion to it. While the oscillating action is the one most commonly used for the washing operation, some machines of this type employ a rotating or revolving motion to spin the tub or basket for the extraction operation. To accomplish this, a clutch action of some type is used to disengage one set of gears and engage the other. One such clutch used in washers consists of a pin dropping in place in a hole in the drive gear to engage it or it may be a friction type, as is frequently found in automobiles. Incidentally, agitator-type washing machines are top loading, meaning that the clothes are placed in the washer through a door or lid that opens on the top of the unit.

The front-load type of automatic washer has gained in popularity in recent years. The tumbler mechanism is a perforated cylinder, usually aluminum or porcelain-enameled steel, which holds the clothes; it revolves in a larger tub that holds the water. Within the cylinder are baffles, which are projections designed to carry the clothes along, through, and out of the water, until the position of the clothes causes them to fall downward again, and the process is repeated.

The axis of rotation of the washing cylinder usually is either parallel to the floor or inclined upward from the floor at approximately a 30 degree angle. A few have a vertical cylinder. Most tumbler-type washers are loaded from the front, but some can be loaded from the top or at an angle. During the washing cycle, the cylinder revolves slowly, tumbling the clothes about in soapy water. During the damp-dry cycle, the cylinder revolves rapidly, and centrifugal action helps to throw the water out of the clothes. The low speed for washing and the high speed for damp-drying are provided by the gears in a transmission as in an automobile. In a similar manner, there is a gear-shifting arrangement and a clutch to engage the gears.

The needs and components of both tumbler and agitator washers are about the same. For example, both require hot and cold water. This water is fed into valves in the washer which turn on and off the hot and cold water and mix them at appropriate times. While a few washers control water temperature with a thermostat, most operate on a simple on-off principle. When the hot water is on and cold is off, the water in the washer is hot-whatever temperature the water-heater tank provides. When the cold water is on and whatever temperature the cold-water tap provides. When both hot and cold are on, they are evenly mixed to provide warm water; with average cold water temperatures out of the tap (about 50F), the mixture comes out at about 100F.

All automatic washers have an electric motor as well as a pump. The motor on most models, in driving the washer through the wash and rinse cycles, operates in both the counterclockwise and clockwise directions when viewed from the top of the machine. It operates counterclockwise during the wash cycles and agitate-rinse operation and clockwise during the pump out and spin operations. The motor turns the pump and drive pulleys through a belt or motor-coupler arrangement. After the completion of the agitation or rinse, the water is pumped from the washer before the start of the rinse cycle. In this operation the motor is operating in the clockwise direction as it is in the spin; however, and overriding clutch disengages the transmission spin tube so the basket will not spin. At the end of the pump out period a solenoid releases the clutch spring and the spin basket rotates to extract the water from the clothes. The pump is usually in operation continuously. When the agitator is in operation, power is transferred directly into the transmission from the drive pulley through the transmission drive shat and clutch spring located inside the transmission case. During the pump out and spin periods the clockwise rotation of the motor releases the clutch.

Solenoids play a very important part in the operation of an automatic washer. In addition to operating the clutch and gearshift arrangements, they control water flow, detergent application and the like. Of course, the overall control of the automatic washer is left to the timer or the electronic control. While part of the control is selected by the user - for instance, washing time and water temperature-most of the automatic action is performed at certain preselected time intervals by the timer/control.


Washing Machines and Principles of Operation

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Monday, November 7, 2011

Refrigerator Door Seals, Diagnosis and Repair

!±8± Refrigerator Door Seals, Diagnosis and Repair

Refrigerator door seals may be one of the most misunderstood parts of the refrigerator. Ask a layman or do-it-yourselfer about why his refrigerator is not functioning or warming properly and the first thing he may say after "I don't work on compressors" is "but let's check the door seals." The door seals rarely go bad or have a problem over the lifetime of the refrigerator. The only door seals I've seen go bad are when dogs or cats chew or sharpen their claws on them, or kids that like to climb or hang on the refrigerator door. A really bad door seal problem is most likely to show up as a defrost problem or frost buildup on the interior of the freezer. This is due to humid air getting into the refrigerator.

Door seals are magnetically held to the door frame to keep the doors closed. Unless the seal is shredded or you can physically see a gap between the seal and the door frame with the door closed, there is no reason to suspect a door seal problem.

To replace the refrigerator door seal, you should have a nut driver of the proper size. A cordless drill-driver is better choice. A magnetic tip will prevent you from going crazy trying to hold the driver, the screw and the seal at the same time and allow you to complete the job faster. There are lots of screws holding the seal on so be prepared. Remove the screws from no more than two sides at a time. One side at a time is better. The idea is to prevent the plastic inner door liner from drifting around. If you have to re align it, it can be a long, frustrating process. The new seal will fit in the same way as the old one came out.

You are much more likely to have a door alignment issue or warping. There's not much you can do with a badly warped refrigerator door except to try to warp it, or bend it, back into shape or replace it.

With the door closed, measure the gap around it, top and bottom, left and right. Check if the door edges and the refrigerator edges are parallel. If the measurements indicate that the door is badly out of alignment, re align it by loosening the hinges slightly and shifting the door around. It may take a few tries to get it aligned properly.

Remove anything that might be obstructing the door seals. Sometimes the kick plate or drawer will get in the way. If it's metal, you may be able to bend it slightly to solve your problem.


Refrigerator Door Seals, Diagnosis and Repair

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Friday, November 4, 2011

Boise State University Information

!±8± Boise State University Information

In the capital city of Idaho, a US state, is situated Boise State University. In 1932, Episcopal Church founded Boise state university as a junior college. In 1965-69 are the years, when the university gained acceleration and started with bachelor degree courses and higher education. In 1974, it gained university status and was named what it is called today.

At the south bank of Boise river is located the beautiful campus of the university. With more than 170 buildings, the campus is situated across 175 acres of land. There exist provost department that oversees all the academic activities and programs. It is also responsible for the quality of faculty and academic excellence. Institutional accreditation and accountability also come under this department. The largest academic unit of the university is college of arts and sciences. Various bachelors, masters and doctoral programs are provided in the university. Departments, Interdisciplinary programs and research units are the three basic units of arts and science colleges. Among various departments, there are art, biology, English, geosciences, mathematics, literature, music etc.

If student wants to undergo interdisciplinary programs, he or she can go for environmental studies too, with either B.A. in environmental studies or Minor in environmental studies. For research oriented people, various research units are available in the university. These are- Bio-molecular research center (BRC), Environmental science and Public Policy Research Institute (ESPRI), GeoSpatial research Facility(GRF), Center for Geophysical Investigation of Shallow subsurface(CGISS), Permian research institute(PRI), etc.

The university is deeply involved with community activities also. Different events, activities and internships are carried out. The university claims to create real world learning opportunities through these community based programs. The internships include workshops or practical training sessions with local businesses or agencies, with or without wages. There is also service learning associated with non-profit organizations. Applying the knowledge in the world beyond university is the opportunity given by internships. Mentor's guidance and work experience are the major breakthroughs attained through these internships. The Boise state university also provide4s learning opportunities through service learning. Students, faculties, community and agencies are all benefited by these service learning programs.

Along with educational opportunities, within the campus, there are also Bronco stadium for football, Morrison center as a performance hall, Albertson's library, Student union building and Taco Bell Arena for basketball, gymnastics, wrestling and different concerts. With the student number around 19, 540, BSU offers 190 fields of study along with 201 degrees.


Boise State University Information

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