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Guide to Publication Policies of the Nature Journals
GUIDE TO PUBLICATION POLICIES OF THE NATURE JOURNALS Last updated on 30 April 2009. Editorial Policies NATURE JOURNALS' POLICIES ON PUBLICATION ETHICS Nature journals' authorship policy Being an author The Nature journals do not require all authors of a research paper to sign the letter of submission, nor do they impose an order on the list of authors. Submission to a Nature journal is taken by the journal to mean that all the listed authors have agreed all of the contents. The corresponding (submitting) author is responsible for having ensured that this agreement has been reached, and for managing all communication between the journal and all co-authors, before and after publication. Any changes to the author list after submission, such as a change in the order of the authors, or the deletion or addition of authors, needs to be approved by a signed letter from every author. Responsibilities of senior team members on multi-group collaborations The editors at the Nature journals assume that at least one member of each collaboration, usually the most senior member of each submitting group or team, has accepted responsibility for the contributions to the manuscript from that team. This responsibility includes, but is not limited to: (1) ensuring that original data upon which the submission is based is preserved and retrievable for reanalysis; (2) approving data presentation as representative of the original data; and (3) foreseeing and minimizing obstacles to the sharing of data, materials, algorithms or reagents described in the work. Author contributions statementsAuthors are required to include a statement of responsibility in the manuscript that specifies the contribution of every author. -
Journal Issue 26 | October 2019
journal Issue 26 | October 2019 Communicating Astronomy with the Public Spotlighting a Black Hole What did it take to create the largest outreach campaign for an astronomical result? Tactile Subaru A project to make telescope technology accessible Naming ExoWorlds Update on the IAU100 NameExoWorlds campaign www.capjournal.org As part of the 100th anniversary commemorations, the International Astronomical Union (IAU) is organising the IAU100 NameExoWorlds global competition to allow any country in the world to give a popular name to a selected exoplanet and its News News host star. The final results of the competion will be announced in Decmeber 2019. Credit: IAU/L. Calçada. Editorial Welcome to the 26th edition of the CAPjournal! To start off, the first part of 2019 brought in a radical new era in astronomy with the first ever image showing a shadow of a black hole. For CAPjournal #26, part of the team who collaborated on the promotion of this image hs written a piece to show what it took to produce one of the largest astronomy outreach campaigns to date. We also highlight two other large outreach campaigns in this edition. The first is a peer-reviewed article about the 2016 solar eclipse in Indonesia from the founder of the astronomy website lagiselatan, Avivah Yamani. Next, an update on NameExoWorlds, the largest IAU100 campaign, as we wait for the announcement of new names for the ExoWorlds in December. Additionally, this issue touches on opportunities for more inclusive astronomy. We bring you a peer-reviewed article about outreach for inclusion by Dr. Kumiko Usuda-Sato and the speech “Diversity Across Astronomy Can Further Our Research” delivered by award-winning astronomy communicator Dr. -
The Nature Index Journals
The Nature Index journals The current 12-month window on natureindex.com includes data from 57,681 primary research articles from the following science journals: Advanced Materials (1028 articles) American Journal of Human Genetics (173 articles) Analytical Chemistry (1633 articles) Angewandte Chemie International Edition (2709 articles) Applied Physics Letters (3609 articles) Astronomy & Astrophysics (1780 articles) Cancer Cell (109 articles) Cell (380 articles) Cell Host & Microbe (95 articles) Cell Metabolism (137 articles) Cell Stem Cell (100 articles) Chemical Communications (4389 articles) Chemical Science (995 articles) Current Biology (440 articles) Developmental Cell (204 articles) Earth and Planetary Science Letters (608 articles) Ecology (259 articles) Ecology Letters (120 articles) European Physical Journal C (588 articles) Genes & Development (193 articles) Genome Research (184 articles) Geology (270 articles) Immunity (159 articles) Inorganic Chemistry (1345 articles) Journal of Biological Chemistry (2639 articles) Journal of Cell Biology (229 articles) Journal of Clinical Investigation (298 articles) Journal of Geophysical Research: Atmospheres (829 articles) Journal of Geophysical Research: Oceans (493 articles) Journal of Geophysical Research: Solid Earth (520 articles) Journal of High Energy Physics (2142 articles) Journal of Neuroscience (1337 articles) Journal of the American Chemical Society (2384 articles) Molecular Cell (302 articles) Monthly Notices of the Royal Astronomical Society (2946 articles) Nano Letters -
SJR Best Quartile Title Issn SJR H Index Country Publisher Q1 Nature
SJR Best Title Issn SJR H index Country Publisher Quartile Q1 Nature Biotechnology 15461696, 10870156 15,358 445 United Kingdom Nature Publishing Group Q1 Nature Materials 14764660, 14761122 14,344 483 United Kingdom Nature Publishing Group Q1 Nature Nanotechnology 17483387, 17483395 14,308 353 United Kingdom Nature Publishing Group Q1 Advanced Materials 09359648, 15214095 10,707 527 United States Wiley-Blackwell Q1 Nature Electronics 25201131 9,569 47 United Kingdom Nature Publishing Group Materials Science and Engineering: R: Q1 0927796X 8,366 146 Netherlands Elsevier BV Reports Q1 Materials Today 13697021 8,071 177 Netherlands Elsevier Institute of Electrical and Electronics Q1 IEEE Communications Surveys and Tutorials 1553877X 6,605 197 United States Engineers Inc. Q1 Nature Biomedical Engineering 2157846X 5,961 56 United States Nature Publishing Group Q1 Nano Energy 22112855 5,764 171 Netherlands Elsevier BV American Association for the Q1 Science Robotics 24709476 5,619 50 United States Advancement of Science Q1 Nano Today 17480132 5,586 143 Netherlands Elsevier Q1 ACS Nano 1936086X, 19360851 5,554 382 United States American Chemical Society Q1 Advanced Science 21983844 5,388 100 Germany Wiley-VCH Verlag Q1 Nano Letters 15306992, 15306984 4,853 488 United States American Chemical Society Q1 Cement and Concrete Research 88846 4,628 215 United Kingdom Elsevier Ltd. Q1 Materials Horizons 20516347, 20516355 4,322 81 United Kingdom Royal Society of Chemistry Q1 Annual Review of Biomedical Engineering 15239829, 15454274 4,142 133 United -
Literaturverweise
Literaturverweise Statt eines Vorworts: Das Corona-Experiment 1. Le Quéré, C., Jackson, R. B., Jones, M. W., Smith, A. J. P., Abernethy, S., Andrew, R. M., De-Gol, A. J., Willis, D. R., Shan, Y., Canadell, J. G., Friedlingstein, P., Creutzig, F., Peters, G. P. (2020): Temporary reduction in daily global CO2 emissions during the COVID-19 forced confinement: Nature Climate Change 10 (7), 647-653. 2. Myllyvirta, L. (2020): Coronavirus temporarily reduced China’s CO2 emissions by a quarter. Carbon Brief https://www.carbonbrief.org/analysis-coronavirus-has- temporarily-reduced-chinas-co2-emissions-by-a-quarter 3. Spencer, R.(2020): Why the current Economics slowdown won’t show up in the atmospheric record, https://www.drroyspencer.com/2020/05/why-the-current- economic-slowdown-wont-show-up-in-the-atmospheric-co2-record/ 4. Die Abbauzeit (Lebensdauer) des CO2 ist die Zeit , in der die Konzentration auf ein 1/e (0,3679) des Ausgangswerts gesunken ist. Sie wird berechnet als Quotient des zum Gleichgewicht von 280 ppm hinzugefügten CO2 durch die Größe des Abbaus. 1959 waren das 34 ppm : 0,64 ppm = 55 Jahre. 2019 sind das 130 ppm : 2,6 ppm =50 Jahre. Die Umrechnung in einen Abbau von 50 % (Halbwertszeit) gelingt durch Multiplikation dieser Abbauzeiten mit ln2 = 0,6931. Das sind dann 1959 38 Jahre und 2019 34,7 Jahre. 5. Haverd, V., Smith, B., Canadell, J. G., Cuntz, M., Mikaloff-Fletcher, S., Farquhar, G., Woodgate, W., Briggs, P. R., Trudinger, C. M. (2020): Higher than expected CO2 fertilization inferred from leaf to global observations: Global Change Biology 26 (4), 2390-2402. -
GSIS Newsletter Will Be Published Quarterly, in March, June, September, and December by the Geoscience Information Society
Number 256, December, 2012 ISSN: 0046-5801 CONTENTS Presidents Column…………………………………………………………. 1 Open access publication opportunities for geoscientists……………….. 13 Geoscience Information Society 2012 Officers……………………………. 2 Annual meeting pictures……………………………………………….. 18 Member updates……………………………………………………………. 3 GeoScienceWorld Unveils Open, Map-Based Discovery Prototype…... 20 Greetings from Australia…………………………………………………... 3 Auditor’s Report for 2010……………………………………………… 21 Geoscience journal prices………………………………………………….. 5 Issue to watch: AGU partners with Wiley-Blackwell………………….. 21 GSIS Publications List…………………………………………………. 22 President's Column By Linda Zellmer Now that we have all returned from the meeting the past year: in Charlotte and (in the case of the members in the United States) eaten our Thanksgiving • April Love and Cynthia Prosser - for setting Dinners, we are probably making our lists for up the GSIS Exhibit holiday gifts. While I do not have any gifts to • Clara McLeod - for coordinating Geoscience give out, I would like to take the opportunity to Librarianship 101 (GL 101). offer my heartfelt appreciation to all of the • Amanda Bielskas – for teaching the people who have contributed to the efforts of Collection Development portion of GL 101. Geoscience Information Society during the past • Hannah Winkler - for teaching the year and our recent meeting. Reference Services portion of GL101. • Megan Sapp-Nelson – for developing a presentation on Library Instruction for the We had 5 sponsors for our meeting who Earth Sciences that I presented for her at GL provided funding to help defray the costs of the 101. meeting. They include: American Association of • Adonna Fleming – for helping with publicity Petroleum Geologists, Geoscience World, for GL 101. Gemological Institute of America, Geological • Jan Heagy – for developing certificates of Society of London and Elsevier. -
Patrick Thaddeus
PUBLISHED: 19 JUNE 2017 | VOLUME: 1 | ARTICLE NUMBER: 0170 obituary Patrick Thaddeus A pioneer in the field of astrochemistry, Patrick Thaddeus discovered dozens of exotic molecules in space and helped revolutionize our view of the interstellar medium and star formation. atrick Thaddeus did more than anyone telescope operating from a rooftop just a else to demonstrate, as he was fond few hundred yards from Broadway. After Pof saying, that chemistry was not a over two decades of steady mapping with provincial subject that stopped five miles this instrument and a near-duplicate one above our heads. As a pioneer in the field that they installed in Chile in 1982, Pat and of astrochemistry, his elegant laboratory his students obtained what is still today work provided ironclad identifications the most extensive and widely used survey of hundreds of new molecules of of the molecular Milky Way. More than astronomical interest, and his observational 40 years later, both telescopes continue to programme discovered about one-sixth yield important scientific results, including of the ~200 molecules known to exist in the discovery over the past decade of two space. His early recognition that carbon THOMAS DAME new spiral arm features of the Galaxy. monoxide would be an excellent tracer of A total of 24 PhD dissertations have the cold dense regions of space led directly been written based on observations or to the discovery of giant molecular clouds instrumental work with the two telescopes. and a revolution in our understanding of In 1986, Pat, along with several the interstellar medium and star formation. -
Curriculum Vitae – WENJUN ZHANG
Curriculum Vitae – WENJUN ZHANG Department of Chemical and Biomolecular Engineering, University of California, Berkeley 201 Gilman Hall, Berkeley, CA 94720 http://www.cchem.berkeley.edu/wzgrp Tel: (510)643-8682, [email protected] https://scholar.google.com/citations?hl=en&user=NUYglIoAAAAJ&view_op=list_works&sortby=pubdate PROFESSIONAL EXPERIENCE Co-director, Agilent/UC Berkeley Synthetic Biology Institute (SBI) 2019 to current Associate Professor, Dept. of Chemical and Biomolecular Engineering, UC Berkeley 2018 to current Biologist Faculty Sci/Engr, Lawrence Berkeley National Laboratory 2014 to current Assistant Professor, Dept. of Chemical and Biomolecular Engineering, UC Berkeley 2011-2018 EDUCATION Research Fellow, Harvard Medical School (adviser: Christopher T. Walsh) 2009-2011 Ph.D., Chemical Engineering, University of California, Los Angeles (adviser: Yi Tang) 2004-2009 M.S., Biochemistry and Molecular Biology, Nanjing University, China (adviser: Genxi Li) 2002-2004 B.S., Biochemistry, DII, Nanjing University, China 1998-2002 AWARDS AND HONORS Presidential Early Career Award for Scientists and Engineers (PECASE) (2019) Scialog Fellow, Research Corporation and the Gordon and Betty Moore Foundation (2018) American Cancer Society Research Scholar (2017) Chau Hoi Shuen Foundation Women in Science Program New Research Grant Award (2017) Chan Zuckerberg Biohub Investigator (2017) Alfred P . Sloan Research Fellow (2016) Paul Saltman Memorial Award in Bioinorganic Chemistry (2016) NIH Director's New Innovator Award (2015) Hellman Fellow (2015) F1000Prime Faculty (Chemical Biology, Small Molecule Chemistry section) (2015) The Charles R. Wilke Endowed Chair in Chemical Engineering, UC Berkeley (2014) University of California Cancer Research Coordinating Committee Research Award (2013) Pew Scholar (2012) Energy Biosciences Institute Proposal Award (2011, 2014) Outstanding Ph.D. -
Inventory of CO2 Available for Terraforming Mars
PERSPECTIVE https://doi.org/10.1038/s41550-018-0529-6 Inventory of CO2 available for terraforming Mars Bruce M. Jakosky 1,2* and Christopher S. Edwards3 We revisit the idea of ‘terraforming’ Mars — changing its environment to be more Earth-like in a way that would allow terres- trial life (possibly including humans) to survive without the need for life-support systems — in the context of what we know about Mars today. We want to answer the question of whether it is possible to mobilize gases present on Mars today in non- atmospheric reservoirs by emplacing them into the atmosphere, and increase the pressure and temperature so that plants or humans could survive at the surface. We ask whether this can be achieved considering realistic estimates of available volatiles, without the use of new technology that is well beyond today’s capability. Recent observations have been made of the loss of Mars’s atmosphere to space by the Mars Atmosphere and Volatile Evolution Mission probe and the Mars Express space- craft, along with analyses of the abundance of carbon-bearing minerals and the occurrence of CO2 in polar ice from the Mars Reconnaissance Orbiter and the Mars Odyssey spacecraft. These results suggest that there is not enough CO2 remaining on Mars to provide significant greenhouse warming were the gas to be emplaced into the atmosphere; in addition, most of the CO2 gas in these reservoirs is not accessible and thus cannot be readily mobilized. As a result, we conclude that terraforming Mars is not possible using present-day technology. he concept of terraforming Mars has been a mainstay of sci- Could the remaining planetary inventories of CO2 be mobi- ence fiction for a long time, but it also has been discussed from lized and emplaced into the atmosphere via current or plausible 1 a scientific perspective, initially by Sagan and more recently near-future technologies? Would the amount of CO2 that could T 2 by, for example, McKay et al. -
SPRINGER NATURE Products, Services & Solutions 2 Springer Nature Products, Services & Solutions Springernature.Com
springernature.com Illustration inspired by the work of Marie Curie SPRINGER NATURE Products, Services & Solutions 2 Springer Nature Products, Services & Solutions springernature.com About Springer Nature Springer Nature advances discovery by publishing robust and insightful research, supporting the development of new areas of knowledge, making ideas and information accessible around the world, and leading the way on open access. Our journals, eBooks, databases and solutions make sure that researchers, students, teachers and professionals have access to important research. Springer Established in 1842, Springer is a leading global scientific, technical, medical, humanities and social sciences publisher. Providing researchers with quality content via innovattive products and services, Springer has one of the most significant science eBooks and archives collections, as well as a comprehensive range of hybrid and open access journals. Nature Research Publishing some of the most significant discoveries since 1869. Nature Research publishes the world’s leading weekly science journal, Nature, in addition to Nature- branded research and review subscription journals. The portfolio also includes Nature Communications, the leading open access journal across all sciences, plus a variety of Nature Partner Journals, developed with institutions and societies. Academic journals on nature.com Prestigious titles in the clinical, life and physical sciences for communities and established medical and scientific societies, many of which are published in partnership a society. Adis A leading international publisher of drug-focused content and solutions. Adis supports work in the pharmaceutical and biotech industry, medical research, practice and teaching, drug regulation and reimbursement as well as related finance and consulting markets. Apress A technical publisher of high-quality, practical content including over 3000 titles for IT professionals, software developers, programmers and business leaders around the world. -
Tracking the Popularity and Outcomes of All Biorxiv Preprints
1 Meta-Research: Tracking the popularity and outcomes of all bioRxiv 2 preprints 3 Richard J. Abdill1 and Ran Blekhman1,2 4 1 – Department of Genetics, Cell Biology, and Development, University of Minnesota, 5 Minneapolis, MN 6 2 – Department of Ecology, Evolution, and Behavior, University of Minnesota, St. Paul, 7 MN 8 9 ORCID iDs 10 RJA: 0000-0001-9565-5832 11 RB: 0000-0003-3218-613X 12 13 Correspondence 14 Ran Blekhman, PhD 15 University of Minnesota 16 MCB 6-126 17 420 Washington Avenue SE 18 Minneapolis, MN 55455 19 Email: [email protected] 1 20 Abstract 21 The growth of preprints in the life sciences has been reported widely and is 22 driving policy changes for journals and funders, but little quantitative information has 23 been published about preprint usage. Here, we report how we collected and analyzed 24 data on all 37,648 preprints uploaded to bioRxiv.org, the largest biology-focused preprint 25 server, in its first five years. The rate of preprint uploads to bioRxiv continues to grow 26 (exceeding 2,100 in October 2018), as does the number of downloads (1.1 million in 27 October 2018). We also find that two-thirds of preprints posted before 2017 were later 28 published in peer-reviewed journals, and find a relationship between the number of 29 downloads a preprint has received and the impact factor of the journal in which it is 30 published. We also describe Rxivist.org, a web application that provides multiple ways 31 to interact with preprint metadata. 32 Introduction 33 In the 30 days of September 2018, four leading biology journals – The Journal of 34 Biochemistry, PLOS Biology, Genetics and Cell – published 85 full-length research 35 articles. -
The Emergence of a Lanthanide-Rich Kilonova Following the Merger of Two Neutron Stars
Draft version September 29, 2017 Typeset using LATEX twocolumn style in AASTeX61 THE EMERGENCE OF A LANTHANIDE-RICH KILONOVA FOLLOWING THE MERGER OF TWO NEUTRON STARS N. R. Tanvir,1 A. J. Levan,2 C. Gonzalez-Fern´ andez,´ 3 O. Korobkin,4 I. Mandel,5 S. Rosswog,6 J. Hjorth,7 P. D'Avanzo,8 A. S. Fruchter,9 C. L. Fryer,4 T. Kangas,9 B. Milvang-Jensen,10 S. Rosetti,1 D. Steeghs,2 R. T. Wollaeger,4 Z. Cano,11 C. M. Copperwheat,12 S. Covino,8 V. D'Elia,13, 14 A. de Ugarte Postigo,11, 10 P. A. Evans,1 W. P. Even,4 S. Fairhurst,15 R. Figuera Jaimes,16 C. J. Fontes,4 Y. I. Fujii,17, 18 J. P. U. Fynbo,19 B. P. Gompertz,2 J. Greiner,20 G. Hodosan,21 M. J. Irwin,3 P. Jakobsson,22 U. G. Jørgensen,23 D. A. Kann,11 J. D. Lyman,2 D. Malesani,19 R. G. McMahon,3 A. Melandri,8 P.T. O'Brien,1 J. P. Osborne,1 E. Palazzi,24 D. A. Perley,12 E. Pian,25 S. Piranomonte,14 M. Rabus,26 E. Rol,27 A. Rowlinson,28, 29 S. Schulze,30 P. Sutton,15 C.C. Thone,¨ 11 K. Ulaczyk,2 D. Watson,19 K. Wiersema,1 and R.A.M.J. Wijers28 1University of Leicester, Department of Physics & Astronomy and Leicester Institute of Space & Earth Observation, University Road, Leicester, LE1 7RH, United Kingdom 2Department of Physics, University of Warwick, Coventry, CV4 7AL, United Kingdom 3Institute of Astronomy, University of Cambridge, Madingley Road, Cambridge, CB3 0HA, United Kingdom 4Computational Methods Group (CCS-2), Los Alamos National Laboratory, P.O.