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Fungal planet description sheets: 951–1041
Crous P.W., Wingfield M.J., Lombard L., Roets F., Swart W.J., Alvarado P., Carnegie A.J., Moreno G., Luangsa-Ard J., Thangavel R., Alexandrova A.V., Baseia I.G., Bellanger J.-M., Bessette A.E., Bessette A.R., García D., Gené J., Pham T.H.G., Heykoop M., Malysheva E., Malysheva V., Martín M.P., Morozova O.V., Noisripoom W., Overton B.E., Rea A.E., Sewall B.J., Smith M.E., Smyth C.W., Tasanathai K., Visagie C.M., Adamčík S., Alves A., Andrade J.P., Aninat M.J., Araújo R.V.B., Bordallo J.J., Boufleur T., Baroncelli R., Barreto R.W., Bolin J., Cabero J., Caboň M., Cafà G., Caffot M.L.H., Cai L., Carlavilla J.R., Chávez R., Delgat L., Deschuyteneer D., Dios M.M., Domínguez L.S., Evans H.C., Eyssartier G., Ferreira B.W., Figueiredo C.N., Liu F., Fournier J., Galli-Terasawa L.V., Gil-Durán C., Glienke C., Gonçalves M.F.M., Gryta H., Guarro J., Himaman W., Hywel-Jones N., Iturrieta-González I., Ivanushkina N.E., Jargeat P., Khalid A.N., Khan J., Kiran M., Kiss L., Kochkina G.A., Kolařík M., Kubátová A., Lodge D.J., Loizides M., Luque D., Manjón J.L., Marbach P.A.S., Mata M., Miller A.N., Mongkolsamrit S., Moreau P.-A., Morte A., Mujic A., Navarro-Ródenas A., Németh M.Z., Nóbrega T.F., Nováková A., Olariaga I., Ozerskaya S.M., Palma M.A., Petters-Vandresen D.A.L., Piontelli E., Popov E.S., Rodríguez A., Requejo Ó., Rodrigues A.C.M., Rong I.H., Roux J., Seifert K.A., Silva B.D.B., Sklenář F., Smith J.A., Sousa J.O., Souza H.G., Švec K., Tanchaud P., Tanney J.B., Terasawa F., Thanakitpipattana D., Torres-Garcia D., Vaca I., Vaghefi N., Vasilenko O.V., Verbeken A., Yilmaz N., Zamora J.C., Zapata M., Jurjević Ž., Groenewald J.Z., De La Peña-Lastra S., De Castro R.R.L., Massola N.S.Jr., De Souza J.T., Van Iperen A.L.

Biological crusts to increase soil carbon sequestration: New challenges in a new environment, (3) a lack of studies based on carbon (C) balance and suitable for model parameterization, and (4) a

Effect of the granulometric composition of microspherical catalyst on the product yield for the dehydrogenation of iso-butane determining the acceleration of the cracking reactions was a rise in temperature to 600-610°C in the upper

Development of technology for the production of microspherical alumina support for the alkane dehydrogenation catalyst: III. the effect of the phase composition of microspherical supports on their thermal stability to 1100°C is reported. Microspherical alumina supports obtained by successive thermal and hydrothermal

Development of technology for the production of microspherical alumina support for the alkane dehydrogenation catalyst: III. the effect of the phase composition of microspherical supports on their thermal stability to 1100°C is reported. Microspherical alumina supports obtained by successive thermal and hydrothermal

Survival and New Prognosticators in Metastatic Seminoma: Results From the IGCCCG-Update Consortium

Tribological screening tests for the selection of raw materials for automotive brake pad formulations

Erratum to: Fuelling conditions at staging sites can mitigate Arctic warming effects in a migratory bird (Nature Communications, (2018), 9, 1, (4263), 10.1038/s41467-018-06673-5)

Electrochemical characterization of a novel nimesulide anti-inflammatory drug analog: LQFM-091

Effect of the granulometric composition of microspherical catalyst on the product yield for the dehydrogenation of iso-butane determining the acceleration of the cracking reactions was a rise in temperature to 600-610°C in the upper

Страница 1 из 12113