Korpusnik

Slovene corpus summarizer

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  • litij (residual)

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Main points

  • The word is most frequently used in the following texts: izvirni znanstveni članek, doktorska disertacija, and magistrsko delo.
  • It is most typically found in domains: P401 Elektrokemija, T370 Kemija ogljikovih spojin, petrokemija, tehnologija goriv in eksplozivov, and T001 Elektronika in elektriška tehnologija.
  • Most common keywords of texts in which the word is found are: baterije, redke kovine, optimizacija, modifikacija nanofibrilirane celuloze, and material NMC 811.
  • The word most typically occurs with ).

Text type

The five corpora, in which Korpusnik conducts its searches, contain over 5.5 billion tokens...

Domains

Main points summarize key information from the diagrams and lists...

Common keywords

Korpusnik is searching in five different corpora, thus the preparation of the results may take a while...

Year of publication

For frequent lemmas, obtaining the results can take a while...

Collocations

The five corpora, in which Korpusnik conducts its searches, contain over 5.5 billion tokens...

Examples

  • (»Lithium Nickel Cobalt Aluminum Oxide (LiNiCoAlO) — NCA« [Battery university], b. d.) 1.4.5 Litij železov fosfat (LiFePO) – LFP Fosfatna katoda pripomore k višjemu toku baterije, daljši življenjski dobi in varnosti.

    Analiza dostopnosti surovin za izdelavo baterij v električnih vozilih, Fakulteta za logistiko, Rok Dvoršak, 2019

  • Ključne besede: alternativna goriva, električna vozila, redke kovine, kobalt, litij Analysis of the availability of raw materials for the production of batteries for electric vehicles In the thesis, we focus on the growth of the production of electric vehicles and the consequent utilization of some rare metals, which are crucial for the production of such vehicles.

    Analiza dostopnosti surovin za izdelavo baterij v električnih vozilih, Fakulteta za logistiko, Rok Dvoršak, 2019

  • systems,” J. Power Sources, vol. 68, pp. 91–98, 1997. [156] H. Cheng, C. Zhu, M. Lu, and Y. Yang, “Spectroscopic and electrochemical characterization of the passive layer formed on lithium in gel polymer electrolytes containing propylene carbonate,” J. Power Sources, vol. 173, no. 1, pp. 531–537, Nov. 2007. [157] A. J. Sanchez et al., “Dead lithium: mass transport effects on voltage, capacity, and Nejc Pavlin Modificirani celulozni separatorji v litij žveplovih akumulatorjih 120 failure of lithium metal anodes,” J. Mater.

    Modificirani celulozni separatorji v litij-žveplovih akumulatorjih, Fakulteta za kemijo in kemijsko tehnologijo, Nejc Pavlin, 2020

  • uporabljenih kratic in simbolov EIS elektrokemijska impedančna spektroskopija SEI sloj trdnega elektrolita (angl. solid electrolyte interphase) VC vinilen karbonat (angl. vinylene carbonate) PE polietilen (angl. polyethylene) PP polipropilen (angl. polypropylene) LFP litij-železov fosfat (angl. lithium iron phosphate) LCO litij-kobaltov oksid (angl. lithium cobalt oxide) LMO litij-manganov oksid (angl. lithium manganese oxide) NMC litij-nikelj-mangan-kobaltov oksid (angl. lithium nickel manganese cobalt oxide) LNO litij-nikljev oksid (angl. lithium nickel oxide) NCA litij-nikelj-kobalt-aluminijev oksid (angl. lithium nickel cobalt aluminium oxide) CV potenciostatska limita (angl. constant voltage) CPE konstantni fazni element (angl. constant phase element) TLM lestvičasti model (angl. transmission line model) PNP Poisson-Nernst-Planck GITT galvanostatsko prekinitvena titracijska tehnika (angl.galvanostatic intermittent titration technique) OCV napetost odprtih sponk (angl. open circuit voltage) EC etilen karbonat (angl. ethylene carbonate) DEC dietil karbonat (angl. diethyl carbonate) CB saje (angl. carbon black) PVDF poliviniliden fluorid (angl. polyvinylidene fluoride

    Impedančna spektroskopija katodnih materialov NMC 811, Fakulteta za kemijo in kemijsko tehnologijo, Jan Žuntar, 2021

  • 40 viii Seznam uporabljenih kratic in simbolov EIS elektrokemijska impedančna spektroskopija SEI sloj trdnega elektrolita (angl. solid electrolyte interphase) VC vinilen karbonat (angl. vinylene carbonate) PE polietilen (angl. polyethylene) PP polipropilen (angl. polypropylene) LFP litij-železov fosfat (angl. lithium iron phosphate) LCO litij-kobaltov oksid (angl. lithium cobalt oxide) LMO litij-manganov oksid (angl. lithium manganese oxide) NMC litij-nikelj-mangan-kobaltov oksid (angl. lithium nickel manganese cobalt oxide) LNO litij-nikljev oksid (angl. lithium nickel oxide) NCA litij-nikelj-kobalt-aluminijev oksid (angl. lithium nickel cobalt aluminium oxide) CV potenciostatska limita (angl. constant voltage) CPE konstantni fazni element (angl. constant phase element) TLM lestvičasti model (angl. transmission line model) PNP Poisson-Nernst-Planck GITT galvanostatsko prekinitvena titracijska tehnika (angl.galvanostatic intermittent titration technique) OCV napetost odprtih sponk (angl. open circuit voltage) EC etilen karbonat (angl. ethylene carbonate) DEC dietil karbonat (angl. diethyl carbonate) CB saje (

    Impedančna spektroskopija katodnih materialov NMC 811, Fakulteta za kemijo in kemijsko tehnologijo, Jan Žuntar, 2021

  • 1995. [182] C. Yan, X.-B. Cheng, C.-Z. Zhao, J.-Q. Huang, S.-T. Yang, and Q. Zhang, “Lithium metal protection through in-situ formed solid electrolyte interphase in lithium-sulfur batteries: The role of polysulfides on lithium anode,” J. Power Sources, vol. 327, pp. 212–220, Sep. 2016. [183] M. Barghamadi et al., “Effect of LiNO additive and pyrrolidinium ionic liquid on the solid Nejc Pavlin Modificirani celulozni separatorji v litij žveplovih akumulatorjih 122 electrolyte interphase in the lithium–sulfur battery,” J. Power Sources, vol. 295, pp. 212– 220, Nov. 2015. [184] S. S. Zhang, “A new finding on the role of LiNO in lithium-sulfur battery,” J. Power Sources, vol. 322, pp. 99–105, Aug. 2016. [185] A. Rosenman, R. Elazari, G. Salitra, E. Markevich, D. Aurbach, and A. Garsuch, “The Effect of Interactions and Reduction Products of LiNO 3 ,

    Modificirani celulozni separatorji v litij-žveplovih akumulatorjih, Fakulteta za kemijo in kemijsko tehnologijo, Nejc Pavlin, 2020

  • Poraba antipsihotikov (SLO - NOR) 31 45- 2 1 1,5- � L t tu i>,!>- n ll [flrfi 0- �IIIInlinilk.JHInllUlr JI tli SLO - 2001 NOR - 2001 SLO - 2004 NOR- 2004 � amisulprid ? cuklopentiksol I"! fiifenaTJTi �haloperidol ?klozapin ?kvetiapin ? levomepromazin ? litij � olanzapin ?promaziii ?risperidon ? sulpirid ?tioridazin Slika 4: Primerjava med Slovenijo in Norveoko (tistih antipsihotikov, ki jih predpisujemo v Sloveniji) Figure 4: The comparison of Slovenia and Norway (of those antipsychotics, prescribed in Slovenia) V letu 2004 je priolo do precejonjih razlik med Slovenijo in Norveoko, upootevajoo delea klasionih in atipionih antipsihotikov, oeprav je bila celokupna poraba teh zdravil v DDD/1000 preb./dan oe vedno precej podobna (10,6 DDD/1000 preb./dan v Sloveniji in 10,3 DDD/1000 preb.

    Poraba antipsihotikov v Sloveniji in primerjava z Norveško, Fakulteta za farmacijo, Vlasta Žvikart, 2007