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In many laboratories, it is the original place of record of data (no copying is carried out from other notes) as well as any observations or insights. For data recorded by other means (e.g., on a computer), the lab notebook will record that the data was obtained and the identification of the data set will be given in the notebook. [4]
The modern Applied Physics Laboratory is located in Laurel, Maryland, and spans 461 acres with more than 30 buildings on site. Additional auxiliary campuses exist in the surrounding areas. [ 21 ] The campus includes multiple cutting-edge innovation and collaboration spaces as well as state-of-the-art labs and test facilities.
EDF – European data format; FEF – File Exchange Format for Vital signs; GDF – General data formats for biomedical signals; GMS – Gesture And Motion Signal format; IROCK – intelliRock Sensor Data File Format; MFER – Medical waveform Format Encoding Rules; SAC – Seismic Analysis Code, earthquake seismology data format [28]
Older (.OPJ), but not newer (.OPJU), Origin project files can be read by the open-source LabPlot or SciDAVis software. The files can also be read by QtiPlot but only with a paid "Pro" version. Finally the liborigin [1] library can also read .OPJ files such as by using the opj2dat script, which exports the data tables contained in the file.
Most national laboratories maintained staffs of local researchers as well as allowing for visiting researchers to use their equipment, though priority to local or visiting researchers often varied from lab to lab. With their centralization of resources (both monetary and intellectual), the national labs serve as an exemplar for Big Science.
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Data from Fermilab in 1976 appeared to indicate a new particle at about 6 GeV which decayed into electron-positron pairs. Subsequent data and analysis indicated that the apparent peak resulted from random noise. The name is a pun on upsilon, the proposed name for the new particle and Leon M. Lederman, the principal investigator.
The Cavendish experiment, performed in 1797–1798 by English scientist Henry Cavendish, was the first experiment to measure the force of gravity between masses in the laboratory [1] and the first to yield accurate values for the gravitational constant.