Zobrazeno 1 - 10
of 30
pro vyhledávání: '"Daniel Zindel"'
Autor:
Vít, Svoboda, Niraghatam Bhargava, Ram, Denitsa, Baykusheva, Daniel, Zindel, Max D J, Waters, Benjamin, Spenger, Manuel, Ochsner, Holger, Herburger, Jürgen, Stohner, Hans Jakob, Wörner
Publikováno v:
Science advances. 8(28)
Understanding the chirality of molecular reaction pathways is essential for a broad range of fundamental and applied sciences. However, the current ability to probe chirality on the time scale of primary processes underlying chemical reactions remain
Autor:
Mark S. Zahniser, Sakae Toyoda, Kristýna Kantnerová, Stefano M. Bernasconi, David D. Nelson, Béla Tuzson, Daniel Zindel, Naohiro Yoshida, Mayuko Nakagawa, Joachim Mohn, Longfei Yu, Lukas Emmenegger
Publikováno v:
Rapid Communications in Mass Spectrometry. 34
Rationale Unravelling the biogeochemical cycle of the potent greenhouse gas nitrous oxide (N2 O) is an underdetermined problem in environmental sciences due to the multiple source and sink processes involved, which complicate mitigation of its emissi
Autor:
Naohiro Yoshida, Lukas Emmenegger, Mark S. Zahniser, Longfei Yu, Stefano M. Bernasconi, Kristýna Kantnerová, Sakae Toyoda, Mayuko Nakagawa, David D. Nelson, Joachim Mohn, Béla Tuzson, Daniel Zindel
Nitrous oxide (N2O) has been for long a major focus of all greenhouse gas accounting agreements. Understanding the mechanisms of its formation and clarifying its sources and sinks are highly important for mitigating N2O emissions. In this context, me
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ffd5f20276ee4a24970ffacb449b40a2
http://t2r2.star.titech.ac.jp/cgi-bin/publicationinfo.cgi?q_publication_content_number=CTT100836013
http://t2r2.star.titech.ac.jp/cgi-bin/publicationinfo.cgi?q_publication_content_number=CTT100836013
Autor:
Kristýna, Kantnerová, Longfei, Yu, Daniel, Zindel, Mark S, Zahniser, David D, Nelson, Béla, Tuzson, Mayuko, Nakagawa, Sakae, Toyoda, Naohiro, Yoshida, Lukas, Emmenegger, Stefano M, Bernasconi, Joachim, Mohn
Publikováno v:
Rapid communications in mass spectrometry : RCMREFERENCES. 34(15)
Unravelling the biogeochemical cycle of the potent greenhouse gas nitrous oxide (NWe present a laser spectroscopic technique to selectively and simultaneously measure the eight most abundant isotopocules of NThe method is validated for a large range
Autor:
Johannes Hellwagner, Liam Grunwald, Manuel Ochsner, Daniel Zindel, Beat H. Meier, Matthias Ernst
Publikováno v:
Magnetic Resonance
Autor:
Manuel Ochsner, Beat H. Meier, Liam Grunwald, Johannes Hellwagner, Daniel Zindel, Matthias Ernst
Homonuclear decoupling sequences in solid-state NMR under magic-angle spinning (MAS) show experimentally significantly larger residual linewidth than expected from Floquet theory to second order. We present an in-depth theoretical and experimental an
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::af71b78e175badd13c9303e86f81a280
https://doi.org/10.5194/mr-2019-5
https://doi.org/10.5194/mr-2019-5
Autor:
Cathy Zindel-Weber, Daniel Zindel
Ein Ermutigungsbuch – liebevoll, klug, mitten aus dem Leben Manchmal tut Hilfe so gut. Hilfe von jemandem, der in unser Familienleben hineinblickt - liebevoll, beratend, pädagogisch erfahren, individuell, hoffnungsvoll und voller Glaubensstärke.
Autor:
Irina Bolotova, Daniel Zindel, Hans Hollenstein, Ziqiu Chen, Sieghard Albert, Elena Sergeevna Bekhtereva, O.N. Ulenikov, Martin Quack
Publikováno v:
Journal of Molecular Spectroscopy. 337:96-104
We report high resolution ( δ ν ⩽ 0.001 cm - 1 ) Fourier Transform Infrared (FTIR) spectra of the trifluoromethane (fluoroform) isotopomer 13 CHF 3 including results from synchrotron based spectroscopy at the Swiss light source (SLS). The analysi
Autor:
Daniel Zindel, Csaba Fábri, Martin Quack, Georg Seyfang, Sieghard Albert, Zupeng Chen, Irina Bolotova
Publikováno v:
Physical Chemistry Chemical Physics, 19 (19)
We report the first successful high-resolution analyses of the Fourier transform infrared (FTIR) spectrum of trisulfane. A band centered at 861.0292 cm−1 can be assigned unambiguously to the chiral trans conformer by means of ground state combinati