Spectroscopy
The use of the absorption, emission, or scattering of electromagnetic radiation by atoms or molecules (or atomic or molecular ions) to qualitatively or quantitatively study the atoms or molecules, or to study physical processes. Virginia Tech
See Also: Dissolved Gas, Terahertz
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Spectroscopy
Vis-NIR Spectroscopy Lab Analyzers
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Metrohm NIRS lab analyzers enable you to perform routine analysis quickly and with confidence – without requiring sample preparation or additional reagents and yielding results in less than a minute. Combining visible (Vis) and near-infrared (NIR) spectroscopy, these analyzers are capable of performing qualitative analysis of various materials and quantitative analysis of a number of physical and chemical parameters in one run.
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Spectroscopy
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Engineered from the outset with “ease-of-use” in mind, every Andor Spectroscopy system features a combination of market leading detectors and spectral instruments, seamlessly controlled through Andor’s dedicated and intuitive Solis software platform. From configuration of these pre-aligned, pre-calibrated instruments to integration into each unique laboratory set-up, Andor Spectroscopy solutions allow researchers around the world to focus quickly on their own challenges.
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Spectroscopy
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Spectrometers are used to measure the properties of light for a variety of applications including environmental or chemical analysis, fluorescence, or Raman. Spectrometers are optical instruments that can detect spectral lines and measure their wavelength or intensity. Spectrometers are ideal for determining compositional makeup for detecting weak light signals. Spectrometers can also be used to test the efficiency of an optical filter in order to determine whether a filter has properly blocked or transmitted specific wavelengths.
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Molecular Spectroscopy
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Molecular Spectroscopy requires a range of technologies, including pick-and-place automation for moving sample tubes, sample injection automation to reduce sample contamination and consumption of rinse-solutions, and basic autosamplers for delivering samples to the analyzer. A variety of pumping technologies are also used to manage the delivery of samples and rinse solutions as needed.
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Gamma Spectroscopy
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Gamma spectroscopy is the science (or art) of identification and/or quantification of radionuclides by analysis of the gamma-ray energy spectrum produced in a gamma-ray spectrometer.
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Raman Spectroscopy
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Raman spectroscopy is a form of vibrational spectroscopy, like infrared (IR) absorption, that provides detailed chemical and structural characterisation. The Raman technique has the benefit of being non-destructive and requiring no sample preparation.
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Spectroscopy, Elemental & Isotope Analysis
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Research, production and analytical laboratories worldwide rely on us for rapid, efficient qualitative and quantitative analysis. Our innovative instruments and user-friendly software serve a range of industrial, educational, environmental and health markets. We offer a comprehensive portfolio for the quantification and identification of trace elemental species at ppm to sub-ppt levels in addition to isotopes. We also provide a wide range of lab-based and handheld instruments employing analytical techniques including XRF, FTIR, NIR, Raman spectroscopy, IRMS, ICP-MS and more.
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*Laser Spectroscopy
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*Sum Frequency Generation (SFG) vibrational spectroscopy and microscopy*Investigation of surfaces and interfaces of solids, liquids, polymers, biological membranes and other systems
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Raman Spectroscopy
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Raman is a spectroscopic technique that uses laser light to interact with molecular excitations and determine what a substance or element is composed of. It relies upon the inelastic scattering of photons which produces a weak signal, making the collection of information challenging particularly when the substance to be measured is at distance or can only be given short exposure times. Our Raman spectrometers are particularly effective at making Raman measurements due to their configuration which delivers a higher throughput/etendue than standard instruments.
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Infrared, Near Infrared and Raman Spectroscopy
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From the very compact FTIR spectrometer to the world’s highest resolution: Bruker offers the industry's largest selection for demanding routine and High End FTIR research application including the new and unique verTera cw THz functionality.Process monitoring with FTIR / FT-NIR process spectrometers.A complete line of Near Infrared Spectrometers to fit all your needs, including Process Monitoring.FTIR Microscopy and Raman Microscopy and Spectral Imaging for high sensitivity at high spatial resolution.High spectral resolution, high performance Raman and FT-Raman spectrometers for advanced routine solutions.
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Modular Spectroscopy Equipment
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Sciencetech offers a large line of spectroscopy equipment, for an overview of Sciencetech''s modular spectroscopy equipment see the chart at the bottom of page
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Inductively Coupled Plasma Emission Spectroscopy
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Inductively Coupled Plasma Emission Spectroscopy
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Functional Near-Infrared Spectroscopy System For Research
LABNIRS
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Just how the human brain functions remains one of the greatest unsolved puzzles. To solve this mystery, brain-function imaging for visualization of brain functions has developed rapidly in recent years. In particular, in vivo optical imaging by functional near-infrared spectroscopy (fNIRS) has attracted attention as a technique that supports next-generation brain science. Utilizing its leading-edge science and technology, Shimadzu has developed the LABNIRS, thereby contributing to the still growing field of brain science.
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Spectroscopy & Scientific Analysis Systems
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Advancing Knowledge. Empowering Breakthroughs. Our spectroscopy instruments and software help advance knowledge and understanding of radioactive materials, empowering the next wave of breakthrough science and innovation.
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Molecular Spectroscopy
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A comprehensive range of molecular spectroscopy instruments for applications in the Far-UV to the Terahertz region.
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Alpha Spectroscopy
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Alpha spectroscopy is used to identify and quantify radionuclides based on the alpha particles emitted in the decay process. Similar to Gamma Spectroscopy, energy spectra are generated with high precision detectors and electronics and analyzed with special software. Typically, samples are measured following chemical separation to isolate the radionuclides of concern due to the complexity associated with correcting for these interferences with spectrum analysis software as is common for many Gamma Spectroscopy measurements.
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Non-Beryllium Solid-State Battery Spectroscopy Module
SS1
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A customizable non-beryllium spectroscopy module for solid-state battery research, compatible with IR, FTIR, UV–Vis, XRD, and other laboratory spectroscopy systems.
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Atomic Spectroscopy
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Agilent’s comprehensive atomic spectroscopy software portfolio leads the industry in the simple setup and productivity tools required by routine analytical laboratories, while also providing the flexibility needed for advanced method development in research and academia. Our advanced ICP-MS software, including the powerful ChemStation and MassHunter systems, are used in all of our mass-spec platforms, so you can benefit from a single solution and reduce staff training requirements. Our cutting edge ICP software also enables intuitive control in ICP-MS processes.
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Spectroscopy
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*Femtosecond multi-pulse transient absorption and reflection measurements *Femtosecond fluorescence upconversion *Time-resolved femtosecond stimulated Raman scattering (FSRS) *Hundred picoseconds-to-microsecond time-correlated single-photon counting (TCSPC)
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Spectroscopy Lamps and Light Sources
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The StellarNet portable Light Sources facilitate measurements in the UV, VIS, and NIR for various samples and application types using standard SMA-905 optical connectors. These low cost modular components are robust, reliable, and designed to last in portable and industrial environments.
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Infrared, Near Infrared & Raman Spectroscopy
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Our selection of near, mid and far infrared and Raman spectrometers is unrivalled across the industry. Our portfolio includes compact, portable routine as well as powerful research spectrometers. Our solutions cover the entire spectral range from near infrared, mid infrared, far infrared to THz applications.
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X-ray Fluorescence Spectroscopy (XRF) Services
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Work we''ve done: Coating identification, Measuring lead levels in paint and solder, Elemental comparison of two metal ingots, Restriction of Hazardous Substance (RoHS) testing.
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Energy Dispersive X-ray Fluorescence Spectroscopy Systems
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Energy Dispersive X-ray Fluorescence Spectroscopy Systems
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High Speed Spectroscopy Camera
SynapsePlus CCD
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Superfast electronics (up to thousands of spectra per second). Very low read noise. Best linearity in its class. Different chip types to suit every spectroscopy need. Open Electrode (OE) 1024 x 256 pixels, Front-illuminated UV enhanced (FIUV) - 2048 x 512 pixels, Front-illuminated visible (FIVS) - 2048 x 512 pixels, Back-illuminated UV enhanced (BIUV) - 1024 x 256 and 2048 x 512 pixels, Back-illuminated visible (BIVS) - 1024 x 256 and 2048 x 512 pixels, Back-illuminated deep depletion (BIDD) – 1024 x 256 pixels.
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Molecular Spectroscopy Software
Spectra Manager™ Suite
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A unique and powerful, cross-platform suite of software tools for controlling a truly comprehensive range of molecular spectroscopy instrumentation. Design experimental methods, acquire data and get results quickly.
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Localized Electrochemical Impedance Spectroscopy
VS-LEIS
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The VersaSTAT 3F applies an AC voltage to the sample emerged in electrolyte. This "global" voltage generates AC current to flow at the electrode / electrolyte interface. A dual-element probe is positioned in solution close to the surface of the sample. The electrometer measures a differential voltage measure between the two measurement elements as a measure of local voltage-drop in solution. This voltage-drop exists in solution because of current flow from local reactions at the sample, the resistance of the electrolyte and the spatial separation of the dual measurement elements.





























