Примери за използване на Raman spectroscopy на Английски и техните преводи на Български
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Raman spectroscopy upon analysis of the.
One of these methods is Raman spectroscopy.
Raman spectroscopy of Mars-analogue rocks.
They have a machine that does raman spectroscopy.
Raman spectroscopy of strongly alkaline solutions has shown the presence of B(OH)-.
Remote sensing of water properties using Raman spectroscopy.
Masic and colleagues scrutinized a small fragment of the Temple Scroll using X-ray and Raman spectroscopy.
Raman spectroscopy is used to study the vibrational, rotational, and other low-frequency modes in a system.
This project will suit a motivated student interested in optical physics,remote sensing, and Raman spectroscopy.
They will be part of a research group that also uses Raman spectroscopy for research in hydrocarbon exploration.
The method, called Raman spectroscopy, could help spot the early signs of breast cancer, tooth decay and osteoporosis.
Through development of new systems,deposits of nano-carbon layers are generated, and Raman spectroscopy has confirmed that these to be in SP2 Sp3 form.
The first-generation Raman spectroscopy probe is currently the subject of a randomized controlled trial involving patients with gliomas.
Through the development of these new systems,deposits of nano-carbon have been generated, and Raman spectroscopy has confirmed that these are in Sp2 and Sp3 form.
The project entails the use of Raman spectroscopy for remote sensing of water temperature, salinity and orgainic content as a function of depth, in coastal and inland waterways.
Project 2.3: Protein biopharmaceuticals: probing correct folding with new near IR,polarized Raman spectroscopy, and circular dichroism spectroscopies. .
In addition, paleontologists andastrobiologists have used Raman spectroscopy- a technique that reveals the cellular compositions of samples- on Mars for some time to search for signs of life.
Raman spectroscopy emits signals that are stronger and longer-lived than other available methods, and the type of particles used in this method can transmit information about multiple types of molecular targets simultaneously.
Its current design calls for combining LIBS with another laser-based technique called Raman spectroscopy, which give information about the molecular structure of the target.
They used X-ray diffraction and Raman spectroscopy- two techniques that use X-rays and laser light to determine the chemical makeup of a compound- to tell if the nobel gas and metals were reacting.
The scientists identified 656 zircons containing dark specks that could be revealing andclosely analyzed 79 of them with Raman spectroscopy, a technique that shows the molecular and chemical structure of ancient microorganisms in three dimensions.
Using a Raman spectroscopy, researchers identified dark specks contained in 656 zircons, analyzing 79 of them in order to unveil the molecular and chemical structure of ancient microorganisms.
In 2005 a team from Berkeley University, USA- Geissler, Saykally and Smith, demonstrated with Raman spectroscopy that hydrogen bonds between water molecules are constantly tearing, changing and moving.
In 2015, scientists at Polytechnique Montréal, the Centre de recherche du Centre hospitalier de l'Université de Montréal(CRCHUM), the Montreal Neurological Institute and Hospital(The Neuro), McGill University, andthe MUHC developed a hand-held Raman spectroscopy probe allowing surgeons to accurately detect virtually all brain cancer cells in real time during surgery.
The intraoperative probe developed in the laboratories uses the same Raman spectroscopy technology as the researchers' first-generation probe to interpret the chemical composition of the tissue examined.
According to a report from UCLA's website, scientists identified 656 zircons containing dark specks that could be revealing andclosely analyzed 79 of them with Raman spectroscopy, a technique that shows the molecular and chemical structure of ancient microorganisms in three dimensions.
In 2005 a team from Berkeley University, USA- Geissler, Saykally and Smith, demonstrated with Raman spectroscopy that hydrogen bonds between water molecules are constantly tearing, changing and moving.
In 2015, scientists from Polytechnique Montréal, the University of Montreal Hospital Research Centre(CRCHUM) andthe McGill University Health Centre(MUHC) developed a portable Raman spectroscopy probe that allows surgeons to accurately detect almost all cancer cells in real time during brain operations.
To figure out what this inorganic layer was made of, and whether it was rubbed there intentionally,the team studied a fragment of the Temple Scroll using X-ray scans and Raman spectroscopy- a technique that reveals the chemical composition of a substance by watching how laser light scatters off various chemical elements.