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Titlebook: Gas-Phase IR Spectroscopy and Structure of Biological Molecules; Anouk M. Rijs,Jos Oomens Book 2015 Springer International Publishing Swit

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0340-1022 cialist reader to understand the information presented. Contributions also offer an outlook on potential future developments in the field. Review articles for the individual volumes are invited by the volume ed978-3-319-37865-7978-3-319-19204-8Series ISSN 0340-1022 Series E-ISSN 1436-5049
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Laboratory Obsidian Hydration Rates,the structure of biologically relevant molecules in vacuo. This chapter reviews some of the experimental methods that are currently in use, which can roughly be divided into two main categories: (1) low-temperature neutral molecules in a molecular beam environment, which can be investigated in a con
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https://doi.org/10.1007/978-981-19-2269-5and collision induced dissociations (CID) in the gas phase. We focused our attention on the application of molecular dynamics-based methods. DFT-based molecular dynamics was shown to be able to reproduce InfraRed Multi-Photon Dissociation (IR-MPD) and InfraRed Pre-Dissociation (IR-PD) action spectro
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Memories of the Early Medieval Past,etical state-of-the-art in the field, a review of the major structures and shaping interactions is presented. Special focus is made on conformationally-resolved studies which enable one to go beyond simple structural characterisation; probing flexibility and excited-state photophysics are given as e
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Margarita Díaz-Andreu,Manuel Ramírez Sánchez families (peptides, nucleobases). Beyond their best-known function of energy source in living systems, they act as mediator of molecular recognition processes, carrying molecular information in the so-called “sugar code,” just to name one of their countless functions. Owing to their high conformati
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