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  1. Article ; Online: Double Hopf Bifurcation with Strong Resonances in Delayed Systems with Nonlinerities

    K. W. Chung / J. Xu

    Mathematical Problems in Engineering, Vol

    2009  Volume 2009

    Keywords Mathematics ; QA1-939 ; Science ; Q ; DOAJ:Mathematics ; DOAJ:Mathematics and Statistics ; Engineering (General). Civil engineering (General) ; TA1-2040 ; Technology ; T ; DOAJ:General and Civil Engineering ; DOAJ:Technology and Engineering
    Language English
    Publishing date 2009-01-01T00:00:00Z
    Publisher Hindawi Publishing Corporation
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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  2. Article: Effects of salinity on oil dispersant toxicity in the grass shrimp, Palaemonetes pugio

    DeLorenzo, M.E / C.A. Eckmann / K.W. Chung / M.H. Fulton / P.B. Key

    Ecotoxicology and environmental safety. 2016 Dec., v. 134

    2016  

    Abstract: Chemical dispersants can be a useful tool to mitigate oil spills, but the potential risks to sensitive estuarine species should be carefully considered. To improve the decision making process, more information is needed regarding the effects of oil spill ...

    Abstract Chemical dispersants can be a useful tool to mitigate oil spills, but the potential risks to sensitive estuarine species should be carefully considered. To improve the decision making process, more information is needed regarding the effects of oil spill dispersants on the health of coastal ecosystems under variable environmental conditions such as salinity. The effects of salinity on the toxicity of two oil dispersants, Corexit® 9500 and Finasol® OSR 52, were examined in this study. Corexit® 9500 was the primary dispersant used during the 2010 Deepwater Horizon oil spill event, while Finasol® OSR 52 is another dispersant approved for oil spill response in the U.S., yet considerably less is known regarding its toxicity to estuarine species. The grass shrimp, Palaemonetes pugio, was used as a model estuarine species. It is a euryhaline species that tolerates salinities from brackish to full strength seawater. Adult and larval life stages were tested with each dispersant at three salinities, 5, 20, and 30 ppt. Median acute lethal toxicity thresholds and oxidative stress responses were determined. The toxicity of both dispersants was significantly influenced by salinity, with greatest toxicity observed at the lowest salinity tested. Larval shrimp were significantly more sensitive than adult shrimp to both dispersants, and both life stages were significantly more sensitive to Finasol than to Corexit. Oxidative stress in adult shrimp, as measured by increased lipid peroxidation activity, occurred with exposure to both dispersants. These data will assist environmental managers in making informed decisions regarding dispersant use in future oil spills.
    Keywords adults ; decision making ; ecosystems ; environmental factors ; estuaries ; euryhaline species ; larvae ; lipid peroxidation ; managers ; oil spills ; oils ; oxidative stress ; Palaemonetes pugio ; risk ; salinity ; seawater ; shrimp ; stress response ; toxicity
    Language English
    Dates of publication 2016-12
    Size p. 256-263.
    Publishing place Elsevier Inc.
    Document type Article
    ZDB-ID 436536-7
    ISSN 1090-2414 ; 0147-6513
    ISSN (online) 1090-2414
    ISSN 0147-6513
    DOI 10.1016/j.ecoenv.2016.09.008
    Database NAL-Catalogue (AGRICOLA)

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  3. Article: Comparative Toxicity of Two Chemical Dispersants and Dispersed Oil in Estuarine Organisms

    DeLorenzo, M.E / P. B. Key / K. W. Chung / E. Pisarski / B. Shaddrix / E. F. Wirth / P. L. Pennington / J. Wade / M. Franco / M. H. Fulton

    Archives of environmental contamination and toxicology. 2018 Apr., v. 74, no. 3

    2018  

    Abstract: Chemical dispersants can be a useful tool to mitigate oil spills. This study examined potential risks to sensitive estuarine species by comparing the toxicity of two dispersants (Corexit® EC9500A and Finasol® OSR 52) individually and in chemically ... ...

    Abstract Chemical dispersants can be a useful tool to mitigate oil spills. This study examined potential risks to sensitive estuarine species by comparing the toxicity of two dispersants (Corexit® EC9500A and Finasol® OSR 52) individually and in chemically enhanced water-accommodated fractions (CEWAFs) of Louisiana Sweet Crude oil. Acute toxicity thresholds and sublethal biomarker responses were determined in seven species (sheepshead minnow, grass shrimp, mysid, amphipod, polychaete, hard clam, mud snail). Comparing median lethal (LC₅₀) values for the dispersants, Finasol was generally more toxic than Corexit and had greater sublethal toxicity (impaired embryonic hatching, increased lipid peroxidation, decreased acetylcholinesterase activity). The nominal concentration-based mean LC₅₀ for all species tested with Corexit was 150.31 mg/L compared with 43.27 mg/L with Finasol. Comparing the toxicity of the CEWAFs using the nominal concentrations (% CEWAF), Corexit-CEWAFs appeared more toxic than Finasol-CEWAFs; however, when LC₅₀ values were calculated using measured hydrocarbon concentrations, the Finasol-CEWAFs were more toxic. There was greater dispersion efficiency leading to greater hydrocarbon concentrations measured in the Corexit-CEWAF solutions than in equivalent Finasol-CEWAF solutions. The measured concentration-based mean LC₅₀ values for all species tested with Corexit-CEWAF were 261.96 mg/L total extractable hydrocarbons (TEH) and 2.95 mg/L total polycyclic aromatic hydrocarbons (PAH), whereas the mean LC₅₀ values for all species tested with Finasol-CEWAF were 23.19 mg/L TEH and 0.49 mg/L total PAH. Larval life stages were generally more sensitive to dispersants and dispersed oil than adult life stages within a species. These results will help to inform management decisions regarding the use of oil-spill dispersants.
    Keywords Amphipoda ; Cyprinodon variegatus ; Palaemonetes ; Polychaeta ; acetylcholinesterase ; acute toxicity ; adults ; biomarkers ; clams ; enzyme activity ; estuaries ; hatching ; larvae ; lethal concentration 50 ; lipid peroxidation ; oil spills ; oils ; petroleum ; polycyclic aromatic hydrocarbons ; risk ; snails ; Louisiana
    Language English
    Dates of publication 2018-04
    Size p. 414-430.
    Publishing place Springer US
    Document type Article
    ZDB-ID 185986-9
    ISSN 1432-0703 ; 0090-4341
    ISSN (online) 1432-0703
    ISSN 0090-4341
    DOI 10.1007/s00244-017-0430-9
    Database NAL-Catalogue (AGRICOLA)

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  4. Article: A comparison of sampling designs in a Hainan tropical rain forest

    Yu, S. X / H. S. Y. Chan / K. W. Chung

    Community ecology. 2000 July 1, v. 1, no. 1

    2000  

    Abstract: Different sampling strategies are simulated by changing quadrat size, quadrat shape, sample size and the arrangement of quadrats in a tropical rain forest of Hainan (South China). The simulation uses enumeration data of trees, and derived variables such ... ...

    Abstract Different sampling strategies are simulated by changing quadrat size, quadrat shape, sample size and the arrangement of quadrats in a tropical rain forest of Hainan (South China). The simulation uses enumeration data of trees, and derived variables such as species richness, species importance, and species population density, to compare the efficiency of the sampling. The results verify that greater sampling efficiency is to be expected using systematic sampling than random sampling. Quadrat size has substantial influence on parameter estimation, but quadrat shape has negligible effect except when the quadrat is extremely long and narrow.
    Keywords population density ; species diversity ; trees ; tropical rain forests ; Accuracy ; Sample size ; Efficiency ; GIS simulation ; Parameter estimation ; Quadrat size ; Quadrat shape ; Sampling method ; China
    Language English
    Dates of publication 2000-0701
    Size p. 81-87.
    Publishing place Akadémiai Kiadó
    Document type Article
    ISSN 1585-8553
    DOI 10.1556%2FComEc.1.2000.1.11
    Database NAL-Catalogue (AGRICOLA)

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  5. Article: Search for Gravitational Waves Associated with Gamma-Ray Bursts Detected by Fermi and Swift During the LIGO-Virgo Run O3a

    Collaboration, The LIGO Scientific / R.Abbott, the Virgo Collaboration / T.D.Abbott, / S.Abraham, / F.Acernese, / K.Ackley, / C.Adams, / R.X.Adhikari, / V.B.Adya, / C.Affeldt, / M.Agathos, / K.Agatsuma, / N.Aggarwal, / O.D.Aguiar, / A.Aich, / L.Aiello, / A.Ain, / P.Ajith, / G.Allen, /
    A.Allocca, / P.A.Altin, / A.Amato, / S.Anand, / A.Ananyeva, / S.B.Anderson, / W.G.Anderson, / S.V.Angelova, / S.Ansoldi, / S.Antier, / S.Appert, / K.Arai, / M.C.Araya, / J.S.Areeda, / M.Arene, / N.Arnaud, / S.M.Aronson, / Y.Asali, / S.Ascenzi, / G.Ashton, / M.Assiduo, / S.M.Aston, / P.Astone, / F.Aubin, / P.Aufmuth, / K.AultONeal, / C.Austin, / V.Avendano, / S.Babak, / P.Bacon, / F.Badaracco, / M.K.M.Bader, / S.Bae, / A.M.Baer, / J.Baird, / F.Baldaccini, / G.Ballardin, / S.W.Ballmer, / A.Bals, / A.Balsamo, / G.Baltus, / S.Banagiri, / D.Bankar, / R.S.Bankar, / J.C.Barayoga, / C.Barbieri, / B.C.Barish, / D.Barker, / K.Barkett, / P.Barneo, / F.Barone, / B.Barr, / L.Barsotti, / M.Barsuglia, / D.Barta, / J.Bartlett, / I.Bartos, / R.Bassiri, / A.Basti, / M.Bawaj, / J.C.Bayley, / M.Bazzan, / B.B'ecsy, / M.Bejger, / I.Belahcene, / A.S.Bell, / D.Beniwal, / M.G.Benjamin, / J.D.Bentley, / F.Bergamin, / B.K.Berger, / G.Bergmann, / S.Bernuzzi, / C.P.L.Berry, / D.Bersanetti, / A.Bertolini, / J.Betzwieser, / R.Bhandare, / A.V.Bhandari, / A.Bianchi, / J.Bidler, / E.Biggs, / I.A.Bilenko, / G.Billingsley, / R.Birney, / O.Birnholtz, / S.Biscans, / M.Bischi, / S.Biscoveanu, / A.Bisht, / G.Bissenbayeva, / M.Bitossi, / M.A.Bizouard, / J.K.Blackburn, / J.Blackman, / C.D.Blair, / D.G.Blair, / R.M.Blair, / F.Bobba, / N.Bode, / M.Boer, / Y.Boetzel, / G.Bogaert, / F.Bondu, / E.Bonilla, / R.Bonnand, / P.Booker, / B.A.Boom, / R.Bork, / V.Boschi, / S.Bose, / V.Bossilkov, / J.Bosveld, / Y.Bouffanais, / A.Bozzi, / C.Bradaschia, / P.R.Brady, / A.Bramley, / M.Branchesi, / J.E.Brau, / M.Breschi, / T.Briant, / J.H.Briggs, / F.Brighenti, / A.Brillet, / M.Brinkmann, / P.Brockill, / A.F.Brooks, / J.Brooks, / D.D.Brown, / S.Brunett, / G.Bruno, / R.Bruntz, / A.Buikema, / T.Bulik, / H.J.Bulten, / A.Buonanno, / D.Buskulic, / R.L.Byer, / M.Cabero, / L.Cadonati, / G.Cagnoli, / C.Cahillane, / Bustillo, J.Calder'on / J.D.Callaghan, / T.A.Callister, / E.Calloni, / J.B.Camp, / M.Canepa, / Santoro, G.Caneva / K.C.Cannon, / H.Cao, / J.Cao, / G.Carapella, / F.Carbognani, / S.Caride, / M.F.Carney, / G.Carullo, / T.L.Carver, / Diaz, J.Casanueva / C.Casentini, / J.Castaneda, / S.Caudill, / M.Cavaglia, / F.Cavalier, / R.Cavalieri, / G.Cella, / P.Cerd'a-Dur'an, / E.Cesarini, / O.Chaibi, / K.Chakravarti, / C.Chan, / M.Chan, / S.Chao, / P.Charlton, / E.A.Chase, / E.Chassande-Mottin, / D.Chatterjee, / M.Chaturvedi, / H.Y.Chen, / X.Chen, / Y.Chen, / H.-P.Cheng, / C.K.Cheong, / H.Y.Chia, / F.Chiadini, / R.Chierici, / A.Chincarini, / A.Chiummo, / G.Cho, / H.S.Cho, / M.Cho, / N.Christensen, / Q.Chu, / S.Chua, / K.W.Chung, / S.Chung, / G.Ciani, / P.Ciecielag, / M.Cie'slar, / A.A.Ciobanu, / R.Ciolfi, / F.Cipriano, / A.Cirone, / F.Clara, / J.A.Clark, / P.Clearwater, / S.Clesse, / F.Cleva, / E.Coccia, / P.-F.Cohadon, / D.Cohen, / M.Colleoni, / C.G.Collette, / C.Collins, / M.Colpi, / M.Constancio, / L.Conti, / S.J.Cooper, / P.Corban, / T.R.Corbitt, / I.Cordero-Carri'on, / S.Corezzi, / K.R.Corley, / N.Cornish, / D.Corre, / A.Corsi, / S.Cortese, / C.A.Costa, / R.Cotesta, / M.W.Coughlin, / S.B.Coughlin, / J.-P.Coulon, / S.T.Countryman, / P.Couvares, / P.B.Covas, / D.M.Coward, / M.J.Cowart, / D.C.Coyne, / R.Coyne, / J.D.E.Creighton, / T.D.Creighton, / J.Cripe, / M.Croquette, / S.G.Crowder, / J.-R.Cudell, / T.J.Cullen, / A.Cumming, / R.Cummings, / L.Cunningham, / E.Cuoco, / M.Curylo, / Canton, T.Dal / G.D'alya, / A.Dana, / L.M.Daneshgaran-Bajastani, / B.D'Angelo, / S.L.Danilishin, / S.D'Antonio, / K.Danzmann, / C.Darsow-Fromm, / A.Dasgupta, / L.E.H.Datrier, / V.Dattilo, / I.Dave, / M.Davier, / G.S.Davies, / D.Davis, / E.J.Daw, / D.DeBra, / M.Deenadayalan, / J.Degallaix, / Laurentis, M.De / S.Del'eglise, / M.Delfavero, / Lillo, N.De / Pozzo, W.Del / L.M.DeMarchi, / V.D'Emilio, / N.Demos, / T.Dent, / Pietri, R.De / Rosa, R.De / Rossi, C.De / R.DeSalvo, / Varona, O.de / S.Dhurandhar, / M.C.D'iaz, / M.Diaz-Ortiz, / T.Dietrich, / Fiore, L.Di / Fronzo, C.Di / Giorgio, C.Di / Giovanni, F.Di / Giovanni, M.Di / Girolamo, T.Di / Lieto, A.Di / B.Ding, / Pace, S.Di / Palma, I.Di / Renzo, F.Di / A.K.Divakarla, / A.Dmitriev, / Z.Doctor, / F.Donovan, / K.L.Dooley, / S.Doravari, / I.Dorrington, / T.P.Downes, / M.Drago, / J.C.Driggers, / Z.Du, / J.-G.Ducoin, / P.Dupej, / O.Durante, / D.D'Urso, / S.E.Dwyer, / P.J.Easter, / G.Eddolls, / B.Edelman, / T.B.Edo, / O.Edy, / A.Effler, / P.Ehrens, / J.Eichholz, / S.S.Eikenberry, / M.Eisenmann, / R.A.Eisenstein, / A.Ejlli, / L.Errico, / R.C.Essick, / H.Estelles, / D.Estevez, / Z.B.Etienne, / T.Etzel, / M.Evans, / T.M.Evans, / B.E.Ewing, / V.Fafone, / S.Fairhurst, / X.Fan, / S.Farinon, / B.Farr, / W.M.Farr, / E.J.Fauchon-Jones, / M.Favata, / M.Fays, / M.Fazio, / J.Feicht, / M.M.Fejer, / F.Feng, / E.Fenyvesi, / D.L.Ferguson, / A.Fernandez-Galiana, / I.Ferrante, / E.C.Ferreira, / T.A.Ferreira, / F.Fidecaro, / I.Fiori, / D.Fiorucci, / M.Fishbach, / R.P.Fisher, / R.Fittipaldi, / M.Fitz-Axen, / V.Fiumara, / R.Flaminio, / E.Floden, / E.Flynn, / H.Fong, / J.A.Font, / P.W.F.Forsyth, / J.-D.Fournier, / S.Frasca, / F.Frasconi, / Z.Frei, / A.Freise, / R.Frey, / V.Frey, / P.Fritschel, / V.V.Frolov, / G.Fronze, / P.Fulda, / M.Fyffe, / H.A.Gabbard, / B.U.Gadre, / S.M.Gaebel, / J.R.Gair, / S.Galaudage, / D.Ganapathy, / S.G.Gaonkar, / C.Garc'ia-Quir'os, / F.Garufi, / B.Gateley, / S.Gaudio, / V.Gayathri, / G.Gemme, / E.Genin, / A.Gennai, / D.George, / J.George, / L.Gergely, / S.Ghonge, / Ghosh, Abhirup / Ghosh, Archisman / S.Ghosh, / B.Giacomazzo, / J.A.Giaime, / K.D.Giardina, / D.R.Gibson, / C.Gier, / K.Gill, / J.Glanzer, / J.Gniesmer, / P.Godwin, / E.Goetz, / R.Goetz, / N.Gohlke, / B.Goncharov, / G.Gonz'alez, / A.Gopakumar, / S.E.Gossan, / M.Gosselin, / R.Gouaty, / B.Grace, / A.Grado, / M.Granata, / A.Grant, / S.Gras, / P.Grassia, / C.Gray, / R.Gray, / G.Greco, / A.C.Green, / R.Green, / E.M.Gretarsson, / H.L.Griggs, / G.Grignani, / A.Grimaldi, / S.J.Grimm, / H.Grote, / S.Grunewald, / P.Gruning, / G.M.Guidi, / A.R.Guimaraes, / G.Guix'e, / H.K.Gulati, / Y.Guo, / A.Gupta, / Gupta, Anchal / P.Gupta, / E.K.Gustafson, / R.Gustafson, / L.Haegel, / O.Halim, / E.D.Hall, / E.Z.Hamilton, / G.Hammond, / M.Haney, / M.M.Hanke, / J.Hanks, / C.Hanna, / M.D.Hannam, / O.A.Hannuksela, / T.J.Hansen, / J.Hanson, / T.Harder, / T.Hardwick, / K.Haris, / J.Harms, / G.M.Harry, / I.W.Harry, / R.K.Hasskew, / C.-J.Haster, / K.Haughian, / F.J.Hayes, / J.Healy, / A.Heidmann, / M.C.Heintze, / J.Heinze, / H.Heitmann, / F.Hellman, / P.Hello, / G.Hemming, / M.Hendry, / I.S.Heng, / E.Hennes, / J.Hennig, / M.Heurs, / S.Hild, / T.Hinderer, / S.Y.Hoback, / S.Hochheim, / E.Hofgard, / D.Hofman, / A.M.Holgado, / N.A.Holland, / K.Holt, / D.E.Holz, / P.Hopkins, / C.Horst, / J.Hough, / E.J.Howell, / C.G.Hoy, / Y.Huang, / M.T.Hubner, / E.A.Huerta, / D.Huet, / B.Hughey, / V.Hui, / S.Husa, / S.H.Huttner, / R.Huxford, / T.Huynh-Dinh, / B.Idzkowski, / A.Iess, / H.Inchauspe, / C.Ingram, / G.Intini, / J.-M.Isac, / M.Isi, / B.R.Iyer, / T.Jacqmin, / S.J.Jadhav, / S.P.Jadhav, / A.L.James, / K.Jani, / N.N.Janthalur, / P.Jaranowski, / D.Jariwala, / R.Jaume, / A.C.Jenkins, / J.Jiang, / G.R.Johns, / A.W.Jones, / D.I.Jones, / J.D.Jones, / P.Jones, / R.Jones, / R.J.G.Jonker, / L.Ju, / J.Junker, / C.V.Kalaghatgi, / V.Kalogera, / B.Kamai, / S.Kandhasamy, / G.Kang, / J.B.Kanner, / S.J.Kapadia, / S.Karki, / R.Kashyap, / M.Kasprzack, / W.Kastaun, / S.Katsanevas, / E.Katsavounidis, / W.Katzman, / S.Kaufer, / K.Kawabe, / F.K'ef'elian, / D.Keitel, / A.Keivani, / R.Kennedy, / J.S.Key, / S.Khadka, / F.Y.Khalili, / I.Khan, / S.Khan, / Z.A.Khan, / E.A.Khazanov, / N.Khetan, / M.Khursheed, / N.Kijbunchoo, / Kim, Chunglee / G.J.Kim, / J.C.Kim, / K.Kim, / W.Kim, / W.S.Kim, / Y.-M.Kim, / C.Kimball, / P.J.King, / M.Kinley-Hanlon, / R.Kirchhoff, / J.S.Kissel, / L.Kleybolte, / S.Klimenko, / T.D.Knowles, / E.Knyazev, / P.Koch, / S.M.Koehlenbeck, / G.Koekoek, / S.Koley, / V.Kondrashov, / A.Kontos, / N.Koper, / M.Korobko, / W.Z.Korth, / M.Kovalam, / D.B.Kozak, / V.Kringel, / N.V.Krishnendu, / A.Kr'olak, / N.Krupinski, / G.Kuehn, / A.Kumar, / P.Kumar, / Kumar, Rahul / Kumar, Rakesh / S.Kumar, / L.Kuo, / A.Kutynia, / B.D.Lackey, / D.Laghi, / E.Lalande, / T.L.Lam, / A.Lamberts, / M.Landry, / B.B.Lane, / R.N.Lang, / J.Lange, / B.Lantz, / R.K.Lanza, / Rosa, I.La / A.Lartaux-Vollard, / P.D.Lasky, / M.Laxen, / A.Lazzarini, / C.Lazzaro, / P.Leaci, / S.Leavey, / Y.K.Lecoeuche, / C.H.Lee, / H.M.Lee, / H.W.Lee, / J.Lee, / K.Lee, / J.Lehmann, / N.Leroy, / N.Letendre, / Y.Levin, / A.K.Y.Li, / J.Li, / K.li, / T.G.F.Li, / X.Li, / F.Linde, / S.D.Linker, / J.N.Linley, / T.B.Littenberg, / J.Liu, / X.Liu, / M.Llorens-Monteagudo, / R.K.L.Lo, / A.Lockwood, / L.T.London, / A.Longo, / M.Lorenzini, / V.Loriette, / M.Lormand, / G.Losurdo, / J.D.Lough, / C.O.Lousto, / G.Lovelace, / H.Luck, / D.Lumaca, / A.P.Lundgren, / Y.Ma, / R.Macas, / S.Macfoy, / M.MacInnis, / D.M.Macleod, / I.A.O.MacMillan, / A.Macquet, / Hernandez, I.Magana / F.Magana-Sandoval, / R.M.Magee, / E.Majorana, / I.Maksimovic, / A.Malik, / N.Man, / V.Mandic, / V.Mangano, / G.L.Mansell, / M.Manske, / M.Mantovani, / M.Mapelli, / F.Marchesoni, / F.Marion, / S.M'arka, / Z.M'arka, / C.Markakis, / A.S.Markosyan, / A.Markowitz, / E.Maros, / A.Marquina, / S.Marsat, / F.Martelli, / I.W.Martin, / R.M.Martin, / V.Martinez, / D.V.Martynov, / H.Masalehdan, / K.Mason, / E.Massera, / A.Masserot, / T.J.Massinger, / M.Masso-Reid, / S.Mastrogiovanni, / A.Matas, / F.Matichard, / N.Mavalvala, / E.Maynard, / J.J.McCann, / R.McCarthy, / D.E.McClelland, / S.McCormick, / L.McCuller, / S.C.McGuire, / C.McIsaac, / J.McIver, / D.J.McManus, / T.McRae, / S.T.McWilliams, / D.Meacher, / G.D.Meadors, / M.Mehmet, / A.K.Mehta, / Villa, E.Mejuto / A.Melatos, / G.Mendell, / R.A.Mercer, / L.Mereni, / K.Merfeld, / E.L.Merilh, / J.D.Merritt, / M.Merzougui, / S.Meshkov, / C.Messenger, / C.Messick, / R.Metzdorff, / P.M.Meyers, / F.Meylahn, / A.Mhaske, / A.Miani, / H.Miao, / I.Michaloliakos, / C.Michel, / H.Middleton, / 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    Abstract: We search for gravitational-wave transients associated with gamma-ray bursts detected by the Fermi and Swift satellites during the first part of the third observing run of Advanced LIGO and Advanced Virgo (1 April 2019 15:00 UTC - 1 October 2019 15:00 ... ...

    Abstract We search for gravitational-wave transients associated with gamma-ray bursts detected by the Fermi and Swift satellites during the first part of the third observing run of Advanced LIGO and Advanced Virgo (1 April 2019 15:00 UTC - 1 October 2019 15:00 UTC). 105 gamma-ray bursts were analyzed using a search for generic gravitational-wave transients; 32 gamma-ray bursts were analyzed with a search that specifically targets neutron star binary mergers as short gamma-ray burst progenitors. We describe a method to calculate the probability that triggers from the binary merger targeted search are astrophysical and apply that method to the most significant gamma-ray bursts in that search. We find no significant evidence for gravitational-wave signals associated with the gamma-ray bursts that we followed up, nor for a population of unidentified subthreshold signals. We consider several source types and signal morphologies, and report for these lower bounds on the distance to each gamma-ray burst.
    Keywords covid19
    Publisher ArXiv
    Document type Article
    Database COVID19

    Kategorien

  6. Article: comparison of sampling designs in a Hainan tropical rain forest

    Yu, S. X. / H. S. Y. Chan / K. W. Chung

    Community ecology

    Volume v. 1,, Issue no. 1

    Abstract: Different sampling strategies are simulated by changing quadrat size, quadrat shape, sample size and the arrangement of quadrats in a tropical rain forest of Hainan (South China). The simulation uses enumeration data of trees, and derived variables such ... ...

    Abstract Different sampling strategies are simulated by changing quadrat size, quadrat shape, sample size and the arrangement of quadrats in a tropical rain forest of Hainan (South China). The simulation uses enumeration data of trees, and derived variables such as species richness, species importance, and species population density, to compare the efficiency of the sampling. The results verify that greater sampling efficiency is to be expected using systematic sampling than random sampling. Quadrat size has substantial influence on parameter estimation, but quadrat shape has negligible effect except when the quadrat is extremely long and narrow.
    Language English
    Document type Article
    ISSN 1585-8553
    Database AGRIS - International Information System for the Agricultural Sciences and Technology

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