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:: Electronic Systems
In the United States, a certificate may be offered by an institute of higher education. These certificates usually signify that a student has reached a standard of knowledge about a certain vocational or professional subject. Certificate programs can be completed more quickly than associate degrees and often do not have general education requirements. Undergraduate certificates represent completion of a specific program offered in coordination with a bachelors degree. Graduate certificates represent completion of studies beyond the bachelor's degree, yet short of a masters degree.
In the State of Maryland, a Certificate of Merit was, until recently, issued to graduating high-school seniors who met certain academic requirements (such as completion of advanced courses and a cumulative GPA of 3.00); the statewide certificate has since been replaced by "endorsements" defined by each local school system.[3]
It also may be awarded as a necessary certification to validate that a student is considered competent in a certain specific networking skill area in information technology. Thus a computer engineer or computer science graduation most likely will have to obtain additional certificates on and pertaining to the specific technologies or equipment used by the hiring corporation; if not, such employer may suffer unwanted penalties like foregoing (voiding the contract) the protections of a certain level of customer service or warranties.
A certification is a third-party attestation of an individual's level of knowledge or proficiency in a certain industry or profession. They are granted by authorities in the field, such as professional societies and universities, or by private certificate-granting agencies. Most certifications are time-limited; some expire after a period of time (e.g., the lifetime of a product that required certification for use), while others can be renewed indefinitely as long as certain requirements are met. Renewal usually requires ongoing education to remain up-to-date on advancements in the field, evidenced by earning the specified number of continuing education credits (CECs), or continuing education units (CEUs), from approved professional development courses.
Many certification programs are affiliated with professional associations, trade organizations, or private vendors interested in raising industry standards. Certificate programs are often created or endorsed by professional associations, but are typically completely independent from membership organizations. Certifications are very common in fields such as aviation, construction, technology, environment, and other industrial sectors, as well as healthcare, business, real estate, and finance.
According to The Guide to National Professional Certification Programs (1997) by Phillip Barnhart, "certifications are portable, since they do not depend on one company's definition of a certain job" and they provide protential employers with "an impartial, third-party endorsement of an individual's professional knowledge and experience".[1]
Certification is different from professional licensure. In the United States, licenses are typically issued by state agencies, whereas certifications are usually awarded by professional societies or educational institutes. Obtaining a certificate is voluntary in some fields, but in others, certification from a government-accredited agency may be legally required to perform certain jobs or tasks. In other countries, licenses are typically granted by professional societies or universities and require a certificate after about three to five years and so on thereafter. The assessment process for certification may be more comprehensive than that of licensure, though sometimes the assessment process is very similar or even the same, despite differing in terms of legal status.
The American National Standards Institute (ANSI) defines the standard for being a certifying agency as meeting the following two requirements:
- Delivering an assessment based on industry knowledge that is independent from training courses or course providers
- Granting a time-limited credential to anyone who meets the assessment standards
The Institute for Credentialing Excellence (ICE) is a U.S.-based organization that sets standards for the accreditation of personnel certification and certificate programs based on the Standards for Educational and Psychological Testing, a joint publication of the American Educational Research Association (AERA), the American Psychological Association (APA), and the National Council on Measurement in Education (NCME). Many members of the Association of Test Publishers (ATP) are also certification organizations.
Electronic system level (ESL) design and verification is an electronic design methodology, focused on higher abstraction level concerns. The term Electronic System Level or ESL Design was first defined by Gartner Dataquest, an EDA-industry-analysis firm, on February 1, 2001. It is defined in ESL Design and Verification as: "the utilization of appropriate abstractions in order to increase comprehension about a system, and to enhance the probability of a successful implementation of functionality in a cost-effective manner."
The basic premise is to model the behavior of the entire system using a high-level language such as C, C++, or using graphical "model-based" design tools. Newer languages are emerging that enable the creation of a model at a higher level of abstraction including general purpose system design languages like SysML as well as those that are specific to embedded system design like SMDL and SSDL. Rapid and correct-by-construction implementation of the system can be automated using EDA tools such as high-level synthesis and embedded software tools, although much of it is performed manually today. ESL can also be accomplished through the use of SystemC as an abstract modeling language.
Electronic System Level is an established approach at many of the world’s leading System-on-a-chip (SoC) design companies, and is being used increasingly in system design. From its genesis as an algorithm modeling methodology with ‘no links to implementation’, ESL is evolving into a set of complementary methodologies that enable embedded system design, verification, and debugging through to the hardware and software implementation of custom SoC, system-on-FPGA, system-on board, and entire multi-board systems.
Design and verification are two distinct disciplines within this methodology. Some practices are to keep the two elements separate, while others advocate for closer integration between design and verification.
Washington (/ˈwɒʃɪŋtən/ (listen)), officially the State of Washington, is a state in the Pacific Northwest region of the United States. Named for George Washington, the first president of the United States, the state was made out of the western part of the Washington Territory, which was ceded by Britain in 1846 in accordance with the Oregon Treaty in the settlement of the Oregon boundary dispute. It was admitted to the Union as the 42nd state in 1889. Olympia is the state capital; the state's largest city is Seattle. Washington is sometimes referred to as Washington State to distinguish it from Washington, D.C., the capital of the United States.
Washington is the 18th largest state, with an area of 71,362 square miles (184,827 km2), and the 13th most populous state, with more than 7.4 million people. Approximately 60 percent of Washington's residents live in the Seattle metropolitan area, the center of transportation, business, and industry along Puget Sound, an inlet of the Pacific Ocean consisting of numerous islands, deep fjords, and bays carved out by glaciers. The remainder of the state consists of: deep temperate rainforests in the west; mountain ranges in the west, central, northeast, and far southeast; and a semi-arid basin region in the east, central, and south, given over to intensive agriculture. Washington is the second most populous state on the West Coast and in the Western United States, after California. Mount Rainier, an active stratovolcano, is the state's highest elevation, at almost 14,411 feet (4,392 meters), and is the 2nd topographically prominent mountain in the continental United States, the first being Denali in Alaska. It is also the 2nd highest peak in the contiguous United States, the first being Mt. Whitney in California.
Washington is a leading lumber producer. Its rugged surface is rich in stands of Douglas fir, hemlock, ponderosa pine, white pine, spruce, larch, and cedar. The state is the biggest producer of apples, hops, pears, red raspberries, spearmint oil, and sweet cherries, and ranks high in the production of apricots, asparagus, dry edible peas, grapes, lentils, peppermint oil, and potatoes. Livestock and livestock products make important contributions to total farm revenue, and the commercial fishing of salmon, halibut, and bottomfish makes a significant contribution to the state's economy. Washington ranks second only to California in the production of wine.
Manufacturing industries in Washington include aircraft and missiles, ship-building, and other transportation equipment, lumber, food processing, metals and metal products, chemicals, and machinery. Washington has over 1,000 dams, including the Grand Coulee Dam, built for a variety of purposes, including irrigation, power, flood control, and water storage.
Washington is one of the wealthiest and most socially progressive states in the country. The state consistently ranks among the best for life expectancy and low unemployment.[3] Along with Colorado, Washington was one of the first to legalize medicinal and recreational cannabis, was among the first thirty-six states to legalize same-sex marriage, doing so in 2012, and was one of only four U.S. states to have been providing legal abortions on request before the 1973 Supreme Court decision in Roe v. Wade loosened federal abortion laws. Similarly, Washington voters approved a 2008 referendum on legalization of physician-assisted suicide, and is currently only one of five states, along with Oregon, California, Colorado and Vermont, as well as the District of Columbia to have legalized the practice. The state is also one of eight in the country to have criminalized the sale, possession and transfer of bump stocks, with California, Florida, New Jersey, New York, Vermont, Maryland, and Massachusetts also having banned these devices.
State of Washington |
|
Nickname(s):
"The Evergreen State" (unofficial) [1] |
Motto(s): Al-ki or Alki, "bye and bye" in Chinook Jargon |
State song(s): "Washington, My Home" |
|
Official language |
None (de jure)
English (de facto) |
Demonym |
Washingtonian |
Capital |
Olympia |
Largest city |
Seattle |
Largest metro |
Greater Seattle |
Area |
Ranked 18th |
• Total |
71,362 sq mi
(184,827 km2) |
• Width |
360 miles (580 km) |
• Length |
240 miles (400 km) |
• % water |
6.6 |
• Latitude |
45° 33′ N to 49° N |
• Longitude |
116° 55′ W to 124° 46′ W |
Population |
Ranked 13th |
• Total |
7,535,591 (2018) |
• Density |
103/sq mi (39.6/km2)
Ranked 25th |
• Median household income |
$70,979 (2017)[2] (11th[2]) |
Elevation |
|
• Highest point |
Mount Rainier
14,411 ft (4,392 m) |
• Mean |
1,700 ft (520 m) |
• Lowest point |
Pacific Ocean
Sea level |
Before statehood |
Washington Territory |
Admitted to the Union |
November 11, 1889 (42nd) |
Governor |
Jay Inslee (D) |
Lieutenant Governor |
Cyrus Habib (D) |
Legislature |
State Legislature |
• Upper house |
State Senate |
• Lower house |
House of Representatives |
U.S. Senators |
Patty Murray (D)
Maria Cantwell (D) |
U.S. House delegation |
7 Democrats
3 Republicans (list) |
Time zone |
Pacific: UTC −8/−7 |
ISO 3166 |
US-WA |
Abbreviations |
WA, Wash. |
Website |
access.wa.gov |
Washington has a strong economy in general, with a total gross state product of $476.770 billion, placing it 14th in the nation.[97] The minimum wage in 2018 was $11.50 an hour, the second highest in the country. Significant business within the state include the design and manufacture of aircraft (Boeing), automotive (Paccar), computer software development (Microsoft, Bungie, Amazon, Nintendo of America, Valve Corporation, ArenaNet), telecom (T-Mobile US), electronics, biotechnology, aluminum production, lumber and wood products (Weyerhaeuser), mining, beverages (Starbucks, Jones Soda), real estate (John L. Scott, Colliers International, Windermere Real Estate, Kidder Mathews), retail (Nordstrom, Eddie Bauer, Car Toys, Costco, R.E.I.), and tourism (Alaska Airlines, Expedia, Inc.). A Fortune magazine survey of the top 20 Most Admired Companies in the US has four Washington-based companies: Amazon, Starbucks, Microsoft, and Costco.[98] At over 80% the state has significant amounts of hydroelectric power generation. Also, significant amounts of trade with Asia pass through the ports of the Puget Sound, leading to a number 6 ranking of US ports (ranking combines twenty-foot equivalent units (TEUs) moved and infrastructure index).[99]
With the passage of Initiative 1183, the Washington State Liquor Control Board (WSLCB) ended its monopoly of all-state liquor store and liquor distribution operations on June 1, 2012.
Among Washington's resident billionaires are, as of December 2017, both the first and the second wealthiest people in the world: Jeff Bezos of Amazon, with a net worth of US$99.6 billion, and Bill Gates of Microsoft, at of $91.3 billion.[100] As of April 2014, other Washington state billionaires included Microsoft's Paul Allen, Steve Ballmer, and Charles Simonyi, and Craig McCaw of McCaw Cellular Communications, James Jannard of Oakley, and Howard Schultz of Starbucks.[101]
As of December 2018, the state's unemployment rate is 4.3 percent.[102]
There are more than 40 institutions of higher education in Washington. The state has major research universities, technical schools, religious schools, and private career colleges. Colleges and Universities include the University of Washington, Seattle University, Washington State University, Western Washington University, Eastern Washington University, Central Washington University, Pacific Lutheran University, Gonzaga University, University of Puget Sound, The Evergreen State College, and Whitman College.
- Phillips, James W. (1971). Washington State Place Names. University of Washington Press. ISBN 978-0-295-95158-4.
- Kruckeberg, Arthur R. (1991). The Natural History of Puget Sound Country. University of Washington Press. pp. 42–43. ISBN 978-0-295-97477-4.
- Wydoski, Richard; Whitney, Richard (2003). Inland Fishes of Washington (2nd ed.). University of Washington Press. ISBN 978-0-295-98338-7.
- "Washington". State & County QuickFacts. U.S. Census Bureau. Retrieved May 11, 2012.
- Gibson, Campbell; Jung, Kay. "Historical Census Statistics on Population Totals By Race, 1790 to 1990, and By Hispanic Origin, 1970 to 1990, For The United States, Regions, Divisions, and States". United States Census Bureau. Archived from the original on July 25, 2008. Retrieved April 17, 2012.
- Schwantes, Carlos (2000). The Pacific Northwest: An Interpretive History (Revised and Enlarged Edition). University of Nebraska Press. p. 155. ISBN 978-0803292284.
- García, Jerry; Treviño, Dora Sánchez (1998). "A Chicana in Northern Aztlán: An Oral History of Dora Sánchez Treviño". Frontiers: A Journal of Women Studies. 19 (2): 16–52. doi:10.2307/3347156. JSTOR 3347156.
- Lemons, Hoyt; Rayburn, D. Tousley (July 1945). "The Washington Apple Industry. I. Its Geographic Basis". Economic Geography. 21 (3): 161–162, 166. doi:10.2307/141294. JSTOR 141294.
- J. Robinson (ed) The Oxford Companion to Wine, Third Edition, pg. 761-762 Oxford University Press 2006 ISBN 0-19-860990-6
- C. Fallis, editor The Encyclopedic Atlas of Wine, p. 50 Global Book Publishing 2006 ISBN 1-74048-050-3
- "Amtrak" (PDF). www.amtrak.com. Retrieved January 21, 2019.
- Jollota, Pat (2002). Naming Clark County. Clark County, Washington: Fort Vancouver Historical Society of Clark County. p. 17.
"History of the State Seal". Secretary of State of Washington. Retrieved April 5, 2007.
School Description
Choose the education that's right for YOU!
|
Computer Engineering Technology (CET) |
|
DeVry University
Program: Computer engineering technologists
take a hands-on approach to designing and implementing computer
systems or other digital subsystems, software and interfaces
to link computers to other physical systems. They design software
systems, create codes and protocols, test and evaluate hardware
and software products and processes, and diagnose and solve
problems. Computers and networks are leading technologies
driving engineering job markets; thus, graduates with competencies
in software development as well as sound knowledge of hardware
and engineering processes are in high demand. To this end,
DeVry's Computer Engineering Technology (CET) program integrates
coursework in hardware and software technologies crucial to
professional success. Graduates are proficient in creating
programs that involve development, modification and application
of software codes and protocols. * In New York, Computer Technology
::
Concentration: Electronic
Systems |
::
Campus |
::
Location:
Seattle (Federal Way), WA |
|
|
|
Electronics Engineering Technology (EET) |
|
DeVry University
Program: Electronics specialists are at
the heart of rapidly evolving technology, applying their expertise
in diverse areas such as semiconductor chip manufacturing,
telecommunications, wireless, computer networking, the internet,
transportation, entertainment, medicine and space exploration.
Global competition and the unparalleled speed at which new
products are developed have greatly increased the need for
highly productive and adaptive engineering technologists.
The EE program is composed of coursework in communication
skills, humanities, social sciences, personal and professional
development, mathematics and science, analysis and design
of electrical and electronic circuits and systems, digital
and microprocessor systems, electronic communications and
controls, computer programming, and senior project design
and development. ** In New York, Electronics Technology
::
Concentration: Electronic
Systems |
::
Campus |
::
Location:
Seattle (Federal Way), WA |
|
|
School Description
electronic systems
Washington Listing
Electronics specialists are at the heart of rapidly evolving technology,
applying their expertise in diverse areas such as semiconductor chip manufacturing,
telecommunications, wireless, computer networking, the internet, transportation,
entertainment, medicine and space exploration. Global competition and
the unparalleled speed at which new products are developed have greatly
increased the need for highly productive and adaptive engineering technologists.
The EE program is composed of coursework in communication skills, humanities,
social sciences, personal and professional development, mathematics and
science, analysis and design of electrical and electronic circuits and
systems, digital and microprocessor systems, electronic communications
and controls, computer programming, and senior project design and development.
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