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JEOL
is a major developer and manufacturer of electron microscopes and other scientific instruments, industrial equipment and medical equipment. Its headquarters are in Tokyo, Japan, with 25 domestic and foreign subsidiaries and associated companies as of 2014. It is listed in the top ten businesses worldwide for analytical laboratory instrument manufacturing. JEOL's instruments are used by researchers around the world, including the University of Cambridge, University of Oxford, and MIT. It has been included in the Activest Lux Nanotech Mutual Fund and the WestLB Nanotech Fund. History Scientists in Japan began to collaborate as early as 1939 on the development of an electron microscope. Kenji Kazato and Kazuo Ito met while working at the Naval Central Institute in Tokyo during World War II. After the war, Kazato attracted Ito and a group of others to Mobara, Chiba Prefecture, Japan. This initial group developed a prototype magnetic field–type electron microscope called the D ...
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Transmission Electron Microscope
Transmission electron microscopy (TEM) is a microscopy technique in which a beam of electrons is transmitted through a specimen to form an image. The specimen is most often an ultrathin section less than 100 nm thick or a suspension on a grid. An image is formed from the interaction of the electrons with the sample as the beam is transmitted through the specimen. The image is then magnified and focused onto an imaging device, such as a fluorescent screen, a layer of photographic film, or a sensor such as a scintillator attached to a charge-coupled device. Transmission electron microscopes are capable of imaging at a significantly higher resolution than light microscopes, owing to the smaller de Broglie wavelength of electrons. This enables the instrument to capture fine detail—even as small as a single column of atoms, which is thousands of times smaller than a resolvable object seen in a light microscope. Transmission electron microscopy is a major analytical method in ...
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Pittcon Heritage Award
The Pittcon Heritage Award recognizes "outstanding individuals whose entrepreneurial careers shaped the instrumentation and laboratory supplies community." The award is jointly sponsored by the Pittsburgh Conference on Analytical Chemistry and Applied Spectroscopy (Pittcon) and the Science History Institute (formerly the Chemical Heritage Foundation). The award is presented annually at a special ceremony during Pittcon. Recipients The award is given yearly and was first presented in 2002. * 2020 Stan Stearns (scientist), Stan Stearns, founder and director of research of VICI Valco Instruments and related companies * 2019 Nicholas Pelick and Walter Supina,, Supelco * 2018 Michael Morris (oceanographer), Michael Morris, SpectrEcology and Ocean Optics * 2017 Robert J. Warren, LECO Corporation, LECO * 2016 Kenji Kazato and Kazuo Ito, JEOL * 2015 A. Blaine Bowman, Dionex (later acquired by Thermo Fisher Scientific) * 2014 Lynwood W. Swanson, FEI Company, USA * 2013 Günther Laukie ...
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Scientific Instrument
A scientific instrument is a device or tool used for scientific purposes, including the study of both natural phenomena and theoretical research. History Historically, the definition of a scientific instrument has varied, based on usage, laws, and historical time period. Before the mid-nineteentcenturysuch tools were referred to as "natural philosophical" or "philosophical" apparatus and instruments, and older tools from antiquity to the Middle Ages (such as the astrolabe and pendulum clock) defy a more modern definition of "a tool developed to investigate nature qualitatively or quantitatively." Scientific instruments were made by instrument makers living near a center of learning or research, such as a university or research laboratory. Instrument makers designed, constructed, and refined instruments for purposes, but if demand was sufficient, an instrument would go into production as a commercial product. In a description of the use of the eudiometer by Jan Ingenhousz to show ...
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Akishima, Tokyo
is a city located in the western portion of Tokyo Metropolis, Japan. , the city had an estimated population of 113,542, and a population density of 6500 persons per km². The total area of the city is . Geography Akishima is located on the left bank of the Tama River, about 35 kilometers west of central Tokyo. The Tamagawa Aqueduct flows in the northern part of the city. The city area generally slopes gently from northwest to southeast toward the Tama River, which flows to the south of the city. The altitude of the city area is 170.72 meters above sea level at the highest point and 76.68 meters at the lowest point. With the JR East Ome Line running east to west through the city as a boundary, housing estates, industrial parks, golf courses, and the Showa Memorial Park occupy a large area in the north. In the south, residential areas occupy a large proportion of them city area. Surrounding municipalities Tokyo Metropolis * Tachikawa *Fussa *Hachiōji * Hino Climate Akishima has a ...
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Nuclear Magnetic Resonance
Nuclear magnetic resonance (NMR) is a physical phenomenon in which nuclei in a strong constant magnetic field are perturbed by a weak oscillating magnetic field (in the near field) and respond by producing an electromagnetic signal with a frequency characteristic of the magnetic field at the nucleus. This process occurs near resonance, when the oscillation frequency matches the intrinsic frequency of the nuclei, which depends on the strength of the static magnetic field, the chemical environment, and the magnetic properties of the isotope involved; in practical applications with static magnetic fields up to ca. 20  tesla, the frequency is similar to VHF and UHF television broadcasts (60–1000 MHz). NMR results from specific magnetic properties of certain atomic nuclei. Nuclear magnetic resonance spectroscopy is widely used to determine the structure of organic molecules in solution and study molecular physics and crystals as well as non-crystalline materials. ...
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Scientific Instrument
A scientific instrument is a device or tool used for scientific purposes, including the study of both natural phenomena and theoretical research. History Historically, the definition of a scientific instrument has varied, based on usage, laws, and historical time period. Before the mid-nineteentcenturysuch tools were referred to as "natural philosophical" or "philosophical" apparatus and instruments, and older tools from antiquity to the Middle Ages (such as the astrolabe and pendulum clock) defy a more modern definition of "a tool developed to investigate nature qualitatively or quantitatively." Scientific instruments were made by instrument makers living near a center of learning or research, such as a university or research laboratory. Instrument makers designed, constructed, and refined instruments for purposes, but if demand was sufficient, an instrument would go into production as a commercial product. In a description of the use of the eudiometer by Jan Ingenhousz to show ...
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Peabody, MA
Peabody () is a city in Essex County, Massachusetts, United States. The population was 54,481 at the time of the 2020 United States Census. Peabody is located in the North Shore region of Massachusetts, and is known for its rich industrial history. History The area was long inhabited by Native American people known as the Naumkeag. The area was settled as part of Salem in 1626 by a small group of English colonists from Cape Ann led by Roger Conant. It was subsequently referred to as the Northfields, Salem Farms, and Brooksby. Several area residents were accused of witchcraft during the Salem witch trials of the late 17th century, three of whom were executed ( John Proctor, Giles Corey, and Martha Corey). In 1752, the area was set off from Salem, and incorporated as a district of Danvers. It was referred to as "the South Parish", associated with a church located in present-day Peabody Square. In 1855, the community broke away from Danvers, and was incorporated as the ind ...
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Electron Microscope
An electron microscope is a microscope that uses a beam of accelerated electrons as a source of illumination. As the wavelength of an electron can be up to 100,000 times shorter than that of visible light photons, electron microscopes have a higher resolving power than light microscopes and can reveal the structure of smaller objects. A scanning transmission electron microscope has achieved better than 50  pm resolution in annular dark-field imaging mode and magnifications of up to about 10,000,000× whereas most light microscopes are limited by diffraction to about 200  nm resolution and useful magnifications below 2000×. Electron microscopes use shaped magnetic fields to form electron optical lens systems that are analogous to the glass lenses of an optical light microscope. Electron microscopes are used to investigate the ultrastructure of a wide range of biological and inorganic specimens including microorganisms, cells, large molecules, biopsy samples, ...
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Public Company
A public company is a company whose ownership is organized via shares of stock which are intended to be freely traded on a stock exchange or in over-the-counter markets. A public (publicly traded) company can be listed on a stock exchange (listed company), which facilitates the trade of shares, or not (unlisted public company). In some jurisdictions, public companies over a certain size must be listed on an exchange. In most cases, public companies are ''private'' enterprises in the ''private'' sector, and "public" emphasizes their reporting and trading on the public markets. Public companies are formed within the legal systems of particular states, and therefore have associations and formal designations which are distinct and separate in the polity in which they reside. In the United States, for example, a public company is usually a type of corporation (though a corporation need not be a public company), in the United Kingdom it is usually a public limited company (plc), i ...
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Mitaka, Tokyo
260px, Inokashira Park in Mitaka is a city in the western portion of Tokyo Metropolis, Japan. , the city had an estimated population of 190,403, and a population density of 12,000 persons per km². The total area of the city was . Geography Mitaka is located on the Kantō Plain, just outside the 23 special wards of Tokyo Metropolis, which are on its eastern borders. The Tamagawa Aqueduct canal, which runs alongside Mitaka station, has an important place in history, built in 1653 to feed the local metropolis. It is also the place where novelist Osamu Dazai died by suicide in 1948. The National Astronomical Observatory of Japan is located in Mitaka. Surrounding municipalities Tokyo Metropolis * Setagaya * Suginami *Chōfu * Musashino *Koganei Climate Mitaka has a Humid subtropical climate (Köppen ''Cfa'') characterized by warm summers and cool winters with light to no snowfall. The average annual temperature in Mitaka is 14.5 °C. The average annual rainfall is 1647  ...
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Mass Spectrometry
Mass spectrometry (MS) is an analytical technique that is used to measure the mass-to-charge ratio of ions. The results are presented as a ''mass spectrum'', a plot of intensity as a function of the mass-to-charge ratio. Mass spectrometry is used in many different fields and is applied to pure samples as well as complex mixtures. A mass spectrum is a type of plot of the ion signal as a function of the mass-to-charge ratio. These spectra are used to determine the elemental or isotopic signature of a sample, the masses of particles and of molecules, and to elucidate the chemical identity or structure of molecules and other chemical compounds. In a typical MS procedure, a sample, which may be solid, liquid, or gaseous, is ionized, for example by bombarding it with a beam of electrons. This may cause some of the sample's molecules to break up into positively charged fragments or simply become positively charged without fragmenting. These ions (fragments) are then separated accordin ...
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Stigmator
A stigmator is a component of electron microscopes that reduces astigmatism of the beam by imposing a weak electric or magnetic quadrupole field on the electron beam. Background For early electron microscopes - between the 1940s and 1960s - astigmatism was one of the main performance limiting factors. Sources of this astigmatism include misaligned objectives, non-uniform magnetic fields of the lenses, which was especially hard to correct, lenses that aren't perfectly circular and contamination on the objective aperture.Batten, C. F. (2000). Autofocusing and astigmatism correction in the scanning electron microscope (Doctoral dissertation, Faculty of the Department of Engineering, University of Cambridge). Therefore, to improve the resolving resolution, the astigmatism had to be corrected. The first commercially used stigmators on electron microscopes were installed in the early 1960s. The stigmatic correction is done using an electric or magnetic field perpendicular to the beam. ...
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