Now showing items 1-3 of 3

    • Dunkl, Istvan; von Eynatten, Hilmar; Ando, Sergio; Luensdorf, Keno; Morton, Andrew; Alexander, Bruce; Aradi, Laszlo; Augustsson, Carita; Bahlburg, Heinrich; Barbarano, Marta; Benedictus, Aukje; Berndt, Jasper; Bitz, Irene; Boekhout, Flora; Breitfeld, Tim; Cascalho, Joao; Costa, Pedro J. M.; Ekwenye, Ogechi; Feher, Kristof; Flores Aqueveque, Valentina; Fuehring, Philipp; Giannini, Paulo; Goetz, Walter; Guedes, Carlos; Gyurica, Gyorgy; Hennig Breitfeld, Juliane; Huelscher, Julian; Jafarzadeh, Mahdi; Jagodzinski, Robert; Jozsa, Sandor; Kelemen, Peter; Keulen, Nynke; Kovacic, Marijan; Liebermann, Christof; Limonta, Mara; Luzar Oberiter, Borna; Markovic, Frane; Melcher, Frank; Miklos, Dora Georgina; Moghalu, Ogechukwu; Mounteney, Ian; Nascimento, Daniel; Novakovic, Tea; Obbagy, Gabriella; Oehlke, Mathias; Omma, Jenny; Onuk, Peter; Passchier, Sandra; Pfaff, Katharina; Pinto Lincoñir, Luisa; Power, Matthew; Razum, Ivan; Resentini, Alberto; Sagi, Tamas; Salata, Dorota; Salgueiro, Rute; Schoenig, Jan; Sitnikova, Maria; Sternal, Beata; Szakmany, Gyorgy; Szokaluk, Monika; Thamo Bozso, Edit; Toth, Agoston; Tremblay, Jonathan; Verhaegen, Jasper; Villasenor, Tania; Wagreich, Michael; Wolf, Anna; Yoshida, Kohki (Elsevier, 2020)
      Heavy minerals are typically rare but important components of siliciclastic sediments and rocks. Their abundance, proportions, and variability carry valuable information on source rocks, climatic, environmental and transport ...
    • Esposito, Rosario; Lamadrid, Héctor; Redi, Danielle; Steeleele-MacIinnis, Matthew; Bodnar, Robert J.; Manning, Craig; De Vivo, Benedetto; Cannatelli, Claudia; Lima, Annamaria (Mineralogical Society of America, 2016)
      Fluids exsolved from mafic melts are thought to be dominantly CO2-H2O S fluids. Curiously, although CO2 vapor occurs in bubbles of mafic melt inclusions (MI) at room temperature (7), the expected accompanying vapor and ...
    • Valencia-Gálvez, P.; Peña, O.; Moris, S.; Barahona, P. (Sociedad Chilena de Quimica, 2019)
      Polycrystalline thiospinels CuCr2-xSnxS4 (x = 0.4, 0.8, 1.0 and 1.4) were synthesized via conventional solid-state reaction. The samples were characterized by powder X-ray diffraction (XRD), energy-dispersive X-ray analysis ...