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11. In class, we derived an equation for the boiling point of a liquid as a function of the radius of the liquid-vapor interface (Thompson

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11. In class, we derived an equation for the boiling point of a liquid as a function of the radius of the liquid-vapor interface (Thompson Equation). Using this equation, determine the boiling point of water at 1.0 atm if the largest vapor cavity that can be formed has a radius of curvature of 1.0 um. You may assume that AvapH is a constant and that yLV = 0.05085 Jm? 11. In class, we derived an equation for the boiling point of a liquid as a function of the radius of the liquid-vapor interface (Thompson Equation). Using this equation, determine the boiling point of water at 1.0 atm if the largest vapor cavity that can be formed has a radius of curvature of 1.0 um. You may assume that AvapH is a constant and that yLV = 0.05085 Jm

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