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Unlock the secrets of your cyclic voltammetry (CV) data! 📊 In this video, we’ll guide you through a step-by-step process to analyze and visualize the capacitive and diffusive contributions in a CV. Whether you're working on advanced energy storage materials or exploring electrochemical phenomena, this tutorial will help you separate and quantify these key components with clarity. 🔍 What You’ll Learn: ✔️ Understanding the power-law relationship between current and scan rate. ✔️ How to calculate capacitive and diffusive contributions. ✔️ Plotting and visualizing their percentage contributions. ✔️ Use scan rate dependence to validate your results. 🛠️ Tools & Techniques: Data fitting and visualization methods Practical tips for CV data analysis. 💬 Join the Conversation: Have questions or want to share your results? Drop a comment below! 👇 Don’t forget to like 👍, subscribe 🔔, and share this video with your research community! For any inquiries: EMAIL: [email protected] INSTAGRAM: @pcrudra #energystorage #powerlaw #electrochemistry #materialsscience #nanomaterials #supercapacitors #batteries #renewableenergy #advancedmaterials #energysolutions #research #science #chandigarhuniversity #crystallography #TypesOfSolids #unitcell #crystalstructure #scienceexplained #materialscience #chemistry #physics #education #stem #nanotechnology #scienceexplained #nanotech #stemeducation #nanomaterials #scientificexploration #physics #nanoscience #techexplained #innovation #futuretechnology #research #sciencevlogs #cuttingedgetech #sciencesimplified #nanotech #techeducation #quantumscienceb #Crystallography #dspacing #BraggsLaw #XrayDiffraction #ScienceExplained #braggslaw #xraydiffraction #physicsexplained #crystallography #scienceexplained #EnergyBands #SolidStatePhysics #BandTheory #Semiconductors #quantumphysics