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scuba diving
ยท
Module 1
Foundational Physics and Gas Laws
1
Dalton's Law and Diving Decompression
Apply Dalton's Law to calculate partial pressures of gases in breathing mixtures at various depths.
Apply Dalton's Law to calculate partial pressures of gases in breathing mixtures at various depths.
2
Gas Density and Breathing Mechanics
Calculate gas density at depth and evaluate its impact on breathing resistance and work of breathing.
Calculate gas density at depth and evaluate its impact on breathing resistance and work of breathing.
3
Henry's Law: Solubility, Temperature, and Pressure
Analyze the relationship between gas solubility, temperature, and pressure using Henry's Law.
Analyze the relationship between gas solubility, temperature, and pressure using Henry's Law.
4
Calculating EAD and END for Nitrox and Trimix
Calculate Equivalent Air Depth (EAD) and Equivalent Narcotic Depth (END) for nitrox and trimix mixtures.
Calculate Equivalent Air Depth (EAD) and Equivalent Narcotic Depth (END) for nitrox and trimix mixtures.
5
Gas Laws and Diving
Explain the thermodynamic principles governing gas expansion and compression in diving scenarios.
Explain the thermodynamic principles governing gas expansion and compression in diving scenarios.
6
Breathing Gas Viscosity and Deep Diving Physiology
Analyze the physiological implications of breathing gas viscosity at extreme depths.
Analyze the physiological implications of breathing gas viscosity at extreme depths.
7
Helium vs. Nitrogen: Diffusion Rates and Decompression
Compare the diffusion rates of helium versus nitrogen and their implications for decompression.
Compare the diffusion rates of helium versus nitrogen and their implications for decompression.
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Physiology of Deep Diving