Examples of 'bruker' in a sentence

Meaning of "bruker"

bruker (noun) - a leading manufacturer of scientific instruments, including nuclear magnetic resonance (NMR) spectrometers. This term is used in the scientific community to refer to a specific brand or company known for its high-quality analytical equipment

How to use "bruker" in a sentence

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bruker
Bruker is worldwide at home in many business areas.
Laukien left four sons who were all involved in Bruker.
Bruker Corporation is divided into six divisions.
Post processing of data was also performed using the standard Bruker software.
Bruker Corporatio announced today it will present at the following conferences.
All aspects of data acquisition were controlled by the Bruker MicroTOF software package.
This makes Bruker one of the leading providers of solutions for instrumental analytics.
All proton and carbon NMR spectra were obtained on a Bruker nuclear magnetic resonance spectrometer.
Consumables for Bruker are manufactured to Bruker standards to provide the best results for instrument.
Two of the spectrometers are the AVANCE IVDr platforms provided by Bruker.
Bruker and Birmingham University will definitely also discuss collaboration in the area of creating content.
Data collection was performed on a Bruker APEX diffractometer at room temperature.
Bruker has been involved in the Phenome Center network since its beginning.
His work has involved several collaborations with the Bruker Corporation.
The Bruker SHELX software was used throughout.

See also

The diffractogram was analyzed using the Topas software package from Bruker.
Single Crystal data collection was performed on a Bruker APEX diffractometer at room temperature.
An empirical absorption correction utilized the SADABS routine associated with the diffractometer Bruker AXS.
The Bruker Raman Correct function was used to do the correction.
A single crystal of DSFF hexahydrate was removed therefrom and mounted on a Bruker Diffractometer.
Data processing was performed using the Bruker XWINNMR software on a Silicon Graphics Indy computer.
Gradient selected NOESY spectra were acquired with the NOESYGPPH Bruker pulse program.
Mass spectrometry was done using a Bruker benchtop linear time-of-flight mass spectrometer.
Analyses were performed using an hplc-dad shimadzu and mass spectrometer bruker daltonics equipment.
The frames were integrated with the Bruker SAINT software package using a narrow-frame integration algorithm.
All NMR spectra were recorded on Bruker instruments.
In addition, Bruker the MINISPEC was used as its analytical software.
Data were collected and analyzed using Bruker DIFFRAC Plus software.
The diffractometer as a whole is controlled by the XRDCommander ® software marketed by the company Bruker.
NMR data were processed and analyzed using the Bruker XWINNMR software package.
How has Bruker technology helped or advanced AFM in biological research?
The NIR spectra of the samples were determined using a Bruker MPA FTNIR instrument.
Plates were mounted on a Bruker GADDS diffractometer equipped with a Hi-Star área detector.
The integrated intensities of the negative cross-peaks were determined using standard Bruker NMR software features.
Single crystal data was collected using a Bruker Platform goniometer with an Apex-II detector.
The identity of the peptide was confirmed by MALDI-MS on a Bruker Microflex.
The diffractogram has been recorded on a Bruker D8 diffractometer, using a standard sample holder.
The analysis was performed using the OPUS software package, provided by Bruker.
All the spectra were collected with a Bruker AutoFlex MALDI-TOF mass spectrometer.
The Bruker Alicona Metrology Newsletter informs you 4 times a year about.
Nuclear magnetic resonance ( NMR ) spectra were obtained on Bruker model DRX spectrometers.
Samples were analyzed on a Bruker BiFlex III MALDI-TOF instrument in positive ion mode.
One-dimensional proton spectra were processed and analyzed using Bruker Xwinnmr software package.
Imagine was performed in a Bruker Autoflex III spectrometer, equipped with a linear TOF detector.
The synthesized peptides were characterized by mass spectrometry using Bruker mass spectrometer ( ® Bruker Daltonik GmbH ).
Bruker AXS DIFFRACplus Basic EVA 12 software was used to visualize and evaluate the PXRD diffractograms.
Data collection and processing was carried out using the standard Bruker software XWIN-NMR.
All samples measured on the Bruker D8 were rotated during the measurement.
Solution phase 1H NMR spectra were acquired at ambient temperature on a Bruker model AM spectrometer.
The infrared spectra were recorded on a Bruker Tensor 27 infrared apparatus with a Golden Gate ATR accessory.

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