<?xml version="1.0" encoding="UTF-8"?><oembed><type>video</type><version>1.0</version><html>&lt;iframe src=&quot;https://www.loom.com/embed/86714768528544c4b34e50a9473bfed4&quot; frameborder=&quot;0&quot; width=&quot;1152&quot; height=&quot;864&quot; webkitallowfullscreen mozallowfullscreen allowfullscreen&gt;&lt;/iframe&gt;</html><height>864</height><width>1152</width><provider_name>Loom</provider_name><provider_url>https://www.loom.com</provider_url><thumbnail_height>864</thumbnail_height><thumbnail_width>1152</thumbnail_width><thumbnail_url>https://cdn.loom.com/sessions/thumbnails/86714768528544c4b34e50a9473bfed4-db30c3fbb50f7e3a.gif</thumbnail_url><duration>444.535</duration><title>MODULE 2 - 7: Equivalent Circuit Modelling</title><description>In this video, I walk you through the process of creating an equivalent circuit model using the Pulsenics dashboard, specifically focusing on fitting to a Nyquist plot I&apos;ve previously generated. I demonstrate how to navigate to the validation tab, select the appropriate frequency response plot, and utilize both pre-made and custom circuit models. I also explain how to set initial guesses and parameter bounds to improve the fit, which resulted in a root mean squared error of 2.2%, and how excluding data below 100 Hz improved this to 1%. I encourage you to follow along and apply these techniques to enhance your own circuit modeling.</description></oembed>