The first Hope Scholars cohort will join Illinois Institute of Technology this fall thanks to the university’s partnership with Hope Chicago, a two-

The first uses of iron alloys such as steel dates to around 1400 B.C.E. Man's technological ascent began in earnest in what is known as the Neolithic period ("New stone age"). The invention of polished stone axes was a major advance because it allowed forest clearance on a large scale to create farms. Additionally, children could contribute labor to the raising of crops more readily than they could to the hunter-gatherer lifestyle. To make a stone tool, a "core" of hard stone with specific flaking properties was struck with a hammerstone. This flaking produced a sharp edge on the core stone as well as on the flakes, either of which could be used as tools, primarily in the form of choppers or scrapers.

The term was previously uncommon in English and mostly referred to the academic discipline, as in the Massachusetts Institute of zaradni.pl. Technology strategy for a diversified corporation must be developed consistently with the general strategies of the individual business units and the... In late 2011, Infineon , a German semiconductor company, is sitting on a €2.4bn cash balance representing 40% of its assets.

generation scholarship program that is committed to... An internship with NASA’s Space Communications and Navigation Internship Project helped Kaya Jones prepare for the rigors of college academics. Just five years after earning his undergraduate degree, Jason Tenebaum helped launch a Dragon spacecraft as a mission operations engineer with SpaceX. For Andrew Jiang, architecture is the “perfect embodiment” of his life experiences. He hopes to create built environments that improve the quality of life for communities for generations to come. Lizz Elliott received a United States Department of Energy scholarship to continue her nuclear energy research.

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Many negative impacts of technology can be mitigated through technological innovations like renewable energy in transportation and industry, genetically modified crops to address soil depletion, and space exploration to mitigate global catastrophic risks. The earliest known technology is the stone tool, used in the prehistoric era, followed by fire use, which contributed to the growth of the human brain and the development of language in the Ice Age. The invention of the wheel in the Bronze Age enabled wider travel and the creation of more complex machines. Recent technological developments, including the printing press, the telephone, and the Internet have lowered communication barriers and ushered in the knowledge economy. When Alfred P. Sloan Jr. created this foundation in 1934, he envisioned it would serve as a vehicle for the creation and dissemination of scientific and economic knowledge.

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Human ancestors have been using stone and other tools since long before the emergence of Homo sapiens approximately 200,000 years ago. The earliest methods of stone tool making, known as the Oldowan "industry," date back to at least 2.3 million years ago, with the earliest direct evidence of tool usage found in Ethiopia within the Great Rift Valley, dating back to 2.5 million years ago. This era of stone tool use is called the Paleolithic, or "Old stone age," and spans all of human history up to the development of agriculture approximately 12,000 years ago. Technology is often a consequence of science and engineering — although technology as a human activity precedes the two fields. For example, science might study the flow of electrons in electrical conductors, by using already-existing tools and knowledge. This new-found knowledge may then be used by engineers to create new tools and machines, such as semiconductors, computers, and other forms of advanced technology.

Various implementations of technology influence the values of a society and new technology often raises new ethical questions. Examples include the rise of the notion of efficiency in terms of human productivity, a term originally applied only to machines, and the challenge of traditional norms. Artificial intelligence technology's impact on society is widely debated. Many argue that AI improves the quality of everyday life by doing routine and even complicated tasks better than humans can, making life simpler, safer, and more efficient. Others argue AI poses dangerous privacy risks, exacerbates racism by standardizing people, and costs workers their jobs leading to greater unemployment.

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In 2005, futurist Ray Kurzweil claimed the next technological revolution would rest upon advances in genetics, nanotechnology, and robotics, with robotics being the most impactful of the three. Genetic engineering will allow far greater control over human biological nature through a process called directed evolution. Some thinkers believe that this may shatter our sense of self, and have urged for renewed public debate exploring the issue more thoroughly; others fear that directed evolution could lead to eugenics or extreme social inequality. Nanotechnology will grant us the ability to manipulate matter "at the molecular and atomic scale", which could allow us to reshape ourselves and our environment in fundamental ways.

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