Science Advances
Basic Information
Science Advances is the American Association for the Advancement of Science’s (AAAS) open access multidisciplinary journal, publishing impactful research papers and reviews in any area of science, in both disciplinary-specific and broad, interdisciplinary areas. The mission of Science Advances is to provide fair, fast, and expert peer review to authors and a vetted selection of research, freely available to readers. Led by a team of distinguished scientists and allowing flexible article formats, Science Advances supports the AAAS mission by extending the capacity of Science magazine to identify and promote significant advances in science and engineering across a wide range of areas. The journal’s use of evolving digital publishing technologies plays a critical role in building and sustaining AAAS’s mission as a global participant and advocate for the communication and use of science to benefit humankind.
CiteScore
| Subject | Rank | Percentile |
|---|---|---|
MultidisciplinaryMultidisciplinary |
7 / 171 | 96% |
Journal Statistics
Submission Information
Submission Website:
https://cts.sciencemag.org./scc/Accepted Types:
Reviews
Related Articles
Investigations on the gas-phase photolysis and OH radical kinetics of methyl-2-nitrophenols
Ian Barnes, Romeo Olariu, Shouming Zhou, Peter Wiesen, Thorsten Benter
DOI: 10.1039/B709464G
Low-volatility poly-oxygenates in the OH-initiated atmospheric oxidation of α-pinene: impact of non-traditional peroxyl radical chemistry
L. Vereecken, J.-F. Müller, J. Peeters
DOI: 10.1039/B708023A
Theory and computation of nuclear magnetic resonance parameters
Juha Vaara
DOI: 10.1039/B706135H
Fully state-selected VMI study of the near-threshold photodissociation of NO2: variation of the angular anisotropy parameter
S. J. Matthews, S. Willitsch, T. P. Softley
DOI: 10.1039/B706428D
Fourth-order coherent Raman spectroscopy in a time domain: applications to buried interfaces
DOI: 10.1039/B704566M
Probing the evaporation of ternary ethanol–methanol–water droplets by cavity enhanced Raman scattering
Chris R. Howle, Chris J. Homer, Rebecca J. Hopkins, Jonathan P. Reid
DOI: 10.1039/B706211G
Structures, energetics, and infrared spectra of the Cl−–(H2S)n and Br−–(H2S)n anion clusters from ab initio calculations
T. Lenzer
DOI: 10.1039/B710111B
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