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Act as a Professor of Safety Engineering with a background i...
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Act as a Professor of Safety Engineering with a background i...

Prompt

Act as a Professor of Safety Engineering with a background in experimental physics. I need you to develop a highly technical, graduate-level 1/2 day intensive module (approx. 4 hours) titled 'The Bio-Physics of Electrical Safety: Energy-Based Hazards and Standards.'Requirements:Curriculum Structure: Break this into four 60-minute sessions:Session 1: The Three-Block Energy Model & Hazard Classification (Foundations).Session 2: Electrophysiological Boundaries (Lapicque, Dalziel, and skin impedance modeling).Session 3: Transient Dynamics ($E = 1/2 CV^2$) and the physics of capacitor discharge.Session 4: Safeguard Theory & Design (Attenuate, Divert, Disconnect, Envelope).Technical Depth: Include derivations where appropriate (e.g., derive the RC time constant impact on tissue excitation). Use Dalziel’s original findings on high-frequency field sensitivity.Visuals/Illustrations: For each section, provide precise descriptions of diagrams I should generate or source. For example:A diagram of the three-block model overlaid with IEC 62368-1 safeguard locations.Plot of Dalziel’s 'Let-Go' threshold curves against frequency.A comparison schematic of RC tissue impedance models (skin vs. internal).Academic Rigor: Include a 'Recommended Reading' list featuring seminal papers (e.g., Dalziel's 'Effect of Electric Current on Man' (1953), Lapicque's work on chronaxie).Tone: Academic, rigorous, and engineering-focused. Use LaTeX for all mathematical expressions.