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Date of download: 11/4/2017 Copyright © ASME. All rights reserved.

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1 Date of download: 11/4/2017 Copyright © ASME. All rights reserved. From: Modeling of Electrochemical Double Layer Capacitors by Means of Fractional Impedance J. Comput. Nonlinear Dynam. 2008;3(2): doi: / Figure Legend: RC transmission line

2 Date of download: 11/4/2017 Copyright © ASME. All rights reserved. From: Modeling of Electrochemical Double Layer Capacitors by Means of Fractional Impedance J. Comput. Nonlinear Dynam. 2008;3(2): doi: / Figure Legend: Nyquist diagram of a capacitor (ideal and Westerlund and Ekstam equations) and an EDLC (50F)

3 Date of download: 11/4/2017 Copyright © ASME. All rights reserved. From: Modeling of Electrochemical Double Layer Capacitors by Means of Fractional Impedance J. Comput. Nonlinear Dynam. 2008;3(2): doi: / Figure Legend: Nyquist diagram of an EDLC of 4.7F

4 Date of download: 11/4/2017 Copyright © ASME. All rights reserved. From: Modeling of Electrochemical Double Layer Capacitors by Means of Fractional Impedance J. Comput. Nonlinear Dynam. 2008;3(2): doi: / Figure Legend: Models of classical circuits

5 Date of download: 11/4/2017 Copyright © ASME. All rights reserved. From: Modeling of Electrochemical Double Layer Capacitors by Means of Fractional Impedance J. Comput. Nonlinear Dynam. 2008;3(2): doi: / Figure Legend: Proposed model

6 Date of download: 11/4/2017 Copyright © ASME. All rights reserved. From: Modeling of Electrochemical Double Layer Capacitors by Means of Fractional Impedance J. Comput. Nonlinear Dynam. 2008;3(2): doi: / Figure Legend: Nyquist diagram of the 50F EDLC and the proposed circuit

7 Date of download: 11/4/2017 Copyright © ASME. All rights reserved. From: Modeling of Electrochemical Double Layer Capacitors by Means of Fractional Impedance J. Comput. Nonlinear Dynam. 2008;3(2): doi: / Figure Legend: Nyquist diagram of the 10F EDLC and the proposed circuit


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