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In an academic context, the Association for Computing Machinery defines IT as "undergraduate degree programs that prepare students to meet the computer technology needs of business, government, healthcare, schools, and other kinds of organizations .... IT specialists assume responsibility for selecting hardware and software products appropriate for an organization, integrating those products with organizational needs and infrastructure, and installing, customizing, and maintaining those applications for the organization’s computer users." In a business context, the Information Technology Association of America has defined information technology as "the study, design, development, application, implementation, support or management of computer-based information systems". The responsibilities of those working in the field include network administration, software development and installation, and the planning and management of an organization's technology life cycle, by which hardware and software are maintained, upgraded and replaced. The business value of information technology lies in the automation of business processes, provision of information for decision making, connecting businesses with their customers, and the provision of productivity tools to increase efficiency. Information technology (IT) is the use of computers to store, retrieve, transmit, and manipulate data,[1] or information, often in the context of a business or other enterprise. IT is considered to be a subset of information and communications technology (ICT). An information technology system (IT system) is generally an information system, a communications system or, more specifically speaking, a computer system – including all hardware, software and peripheral equipment – operated by a limited group of users. 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.
Maryland (/ˈmɛərɪlənd/ (
Sixteen of Maryland's twenty-three counties border the tidal waters of the Chesapeake Bay estuary and its many tributaries, which combined total more than 4,000 miles of shoreline. Although one of the smallest states in the U.S., it features a variety of climates and topographical features that have earned it the moniker of America in Miniature. In a similar vein, Maryland's geography, culture, and history combines elements of the Mid-Atlantic, Northeastern, and South Atlantic regions of the country. One of the original Thirteen Colonies of Great Britain, Maryland was founded by George Calvert, a Catholic convert[11][12] who sought to provide a religious haven for Catholics persecuted in England.[13] In 1632, Charles I of England granted Calvert a colonial charter, naming the colony after his wife, Queen Mary.[14] Unlike the Pilgrims and Puritans, who enforced religious conformity in their settlements, Calvert envisioned a colony where people of different religious sects would coexist under the principle of toleration.[13] Accordingly, in 1649 the Maryland General Assembly passed an Act Concerning Religion, which enshrined this principle by penalizing anyone who "reproached" a fellow Marylander based on religious affiliation.[15] Nevertheless, religious strife was common in the early years, and Catholics remained a minority, albeit in greater numbers than in any other English colony. Maryland's early settlements and population centers clustered around rivers and other waterways that empty into the Chesapeake Bay. Its economy was heavily plantation-based, centered mostly on the cultivation of tobacco. The need for cheap labor led to a rapid expansion of indentured servants, penal labor, and African slaves. In 1760, Maryland's current boundaries took form following the settlement of a long-running border dispute with Pennsylvania. Maryland was an active participant in the events leading up to the American Revolution, and by 1776 its delegates signed the Declaration of Independence. Many of its citizens subsequently played key political and military roles in the war. In 1790, the state ceded land for the establishment of the U.S. capital of Washington, D.C. Although a slave state, Maryland remained in the Union during the U.S. Civil War, its strategic location giving it a significant role in the conflict. After the war, Maryland took part in the Industrial Revolution, driven by its seaports, railroad networks, and mass immigration from Europe. Since the Second World War, the state's population has grown rapidly, to approximately six million residents, and it is among the most densely populated states in the nation. As of 2015, Maryland had the highest median household income of any state, owing in large part to its close proximity to Washington, D.C. and a highly diversified economy spanning manufacturing, services, higher education, and biotechnology.[16] Maryland has been ranked as one of the best governed states in the country.[17] The state's central role in American history is reflected by its hosting of some of the highest numbers of historic landmarks per capita. The Bureau of Economic Analysis estimates that Maryland's gross state product in 2016 was $382.4 billion.[132] However, Maryland has been using Genuine Progress Indicator, an indicator of well-being, to guide the state's development, rather than relying only on growth indicators like GDP.[133][134] According to the U.S. Census Bureau, Maryland households are currently the wealthiest in the country, with a 2013 median household income of $72,483[135] which puts it ahead of New Jersey and Connecticut, which are second and third respectively. Two of Maryland's counties, Howard and Montgomery, are the second and eleventh wealthiest counties in the nation respectively. Maryland ranked No. 1 with the most millionaires per capita in 2013, with a ratio of 7.7 percent.[136] Also, the state's poverty rate of 7.8 percent is the lowest in the country.[137][138][139] per capita personal income in 2006 was $43,500, fifth in the nation. As of February 2018, the state's unemployment rate was 4.2 percent.[140] ![]() A map showing Maryland's median income by county. Data is sourced from the 2014 ACS 5-year Estimate report published by the US Census Bureau.
Maryland's economy benefits from the state's close proximity to the federal government in Washington, D.C. with an emphasis on technical and administrative tasks for the defense/aerospace industry and bio-research laboratories, as well as staffing of satellite government headquarters in the suburban or exurban Baltimore/Washington area. Ft. Meade serves as the headquarters of the Defense Information Systems Agency, United States Cyber Command, and the National Security Agency/Central Security Service. In addition, a number of educational and medical research institutions are located in the state. In fact, the various components of The Johns Hopkins University and its medical research facilities are now the largest single employer in the Baltimore area. Altogether, white collar technical and administrative workers comprise 25 percent of Maryland's labor force,[citation needed] attributable in part to nearby Maryland being a part of the Washington Metro Area where the federal government office employment is relatively high. Manufacturing, while large in dollar value, is highly diversified with no sub-sector contributing over 20 percent of the total. Typical forms of manufacturing include electronics, computer equipment, and chemicals. The once mighty primary metals sub-sector, which at one time included what was then the largest steel factory in the world at Sparrows Point, still exists, but is pressed with foreign competition, bankruptcies, and mergers. During World War II the Glenn Martin Company (now part of Lockheed Martin) airplane factory employed some 40,000 people. Mining other than construction materials is virtually limited to coal, which is located in the mountainous western part of the state. The brownstone quarries in the east, which gave Baltimore and Washington much of their characteristic architecture in the mid-19th century, were once a predominant natural resource. Historically, there used to be small gold-mining operations in Maryland, some near Washington, but these no longer exist. Maryland has several historic and renowned private colleges and universities, the most prominent of which is Johns Hopkins University, founded in 1876 with a grant from Baltimore entrepreneur Johns Hopkins. The first public university in the state is the University of Maryland, Baltimore, which was founded in 1807 and contains the University of Maryland's only public academic health, human services, and one of two law centers (the other being the University of Baltimore School of Law). Seven professional and graduate schools train the majority of the state's physicians, nurses, dentists, lawyers, social workers, and pharmacists.[166] The flagship university and largest undergraduate institution in Maryland is the University of Maryland, College Park which was founded as the Maryland Agricultural College in 1856 and became a public land grant college in 1864. Towson University, founded in 1866, is the state's second largest university. Baltimore is home to the University of Maryland, Baltimore County and the Maryland Institute College of Art. The majority of public universities in the state are affiliated with the University System of Maryland. Two state-funded institutions, Morgan State University and St. Mary's College of Maryland, as well as two federally funded institutions, the Uniformed Services University of the Health Sciences and the United States Naval Academy, are not affiliated with the University System of Maryland. St. John's College in Annapolis, Maryland and Washington College in Chestertown, Maryland, both private institutions, are the two oldest colleges in the state, and are among the oldest in the country. Other private institutions include Mount St. Mary's University, McDaniel College (formerly known as Western Maryland College), Hood College, Stevenson University (formerly known as Villa Julie College), Loyola University Maryland, and Goucher College, among others.
Choose the education that's right for YOU!
School Descriptionelectronic systems Maryland ListingThe program in Electronics Engineering Technology is designed to prepare you with skills necessary to advance into management opportunities in a technical field. The combination of management and general education courses in the program helps you apply skills in generate management, critical thinking, logic, communication, and problem solving to management challenges in a technical environment. The program helps prepares you for supervisory roles in the Electronics industry. The program will teach you to:
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