Mevawalla, A.;                     Panchal, S.;                     Tran, M.-K.;                     Fowler, M.;                     Fraser, R.    
        Mathematical Heat Transfer Modeling and Experimental Validation of Lithium-Ion Battery Considering: Tab and Surface Temperature, Separator, Electrolyte Resistance, Anode-Cathode Irreversible and Reversible Heat. Batteries 2020, 6, 61.
    https://doi.org/10.3390/batteries6040061
    AMA Style
    
                                Mevawalla A,                                 Panchal S,                                 Tran M-K,                                 Fowler M,                                 Fraser R.        
                Mathematical Heat Transfer Modeling and Experimental Validation of Lithium-Ion Battery Considering: Tab and Surface Temperature, Separator, Electrolyte Resistance, Anode-Cathode Irreversible and Reversible Heat. Batteries. 2020; 6(4):61.
        https://doi.org/10.3390/batteries6040061
    
    Chicago/Turabian Style
    
                                Mevawalla, Anosh,                                 Satyam Panchal,                                 Manh-Kien Tran,                                 Michael Fowler,                                 and Roydon Fraser.        
                2020. "Mathematical Heat Transfer Modeling and Experimental Validation of Lithium-Ion Battery Considering: Tab and Surface Temperature, Separator, Electrolyte Resistance, Anode-Cathode Irreversible and Reversible Heat" Batteries 6, no. 4: 61.
        https://doi.org/10.3390/batteries6040061
    
    APA Style
    
                                Mevawalla, A.,                                 Panchal, S.,                                 Tran, M.-K.,                                 Fowler, M.,                                 & Fraser, R.        
        
        (2020). Mathematical Heat Transfer Modeling and Experimental Validation of Lithium-Ion Battery Considering: Tab and Surface Temperature, Separator, Electrolyte Resistance, Anode-Cathode Irreversible and Reversible Heat. Batteries, 6(4), 61.
        https://doi.org/10.3390/batteries6040061