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Liquid oxygen freezes at -218.4°C and boils at -183.0°C. Convert these temperatures in terms of the Fahrenheit scale and Kelvin scale.
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- The world's deepest gold mine, which is located in South Africa, is over 5.1 km deep. Every day, the mine transfers enough energy by heat to the mine's cooling systems to melt 348114 kg of ice at 0.0 degrees Celsius. If the energy output from the mine is increased by 9.6 percent, to what final temperature will the 348114 kg of ice-cold water be heated? Latent Heat of fusion of Ice-3.33 × 105 J/kg Specific heat capacity of Water = 4186J/(kg. °C). Liquid oxygen freezes at -218.4°C and boils at 183°C. Express these temperature in terms of Fahrenheit scale.The world’s deepest gold mine, which is located in South Africa, is over 3.2 km deep. Every day, the mine transfers enough energy by heat to the mine’s cooling systems to melt 362704 kg of ice at 0.0 degrees Celsius. If the energy output from the mine is increased by 4.9 percent, to what final temperature will the 362704 kg of ice-cold water be heated?
- Water with a mass of 0.500 kg at 15.0 degrees C is mixed with 0.800 kg of water t 35.0 degrees C. What is the final temperature Tf of the mixture? Express your answer in degrees Celsius.The Fahrenheit temperature scale is defined so that ice melts at 32°F and water boils at 212°F.Derive the formulas for converting from Fahrenheit to Celsius and backyou are sick and your temperature is 311.3 kelvins. convert this temperature to the fahrenheit scale.
- Liquid helium boils at 4.2 Kelvins at 1 atmospheric pressure. What is the temperature, in degrees Celsius and FahrenheitDuring a marathon race David uses energy at a rate of 272 W. What volume of body fluid does he lose in the 5.5 hours of the race if 21.0% of the energy goes to the muscle tissue and the rest is used in removing the perspiration from the body. The latent heat of vaporization is 2.41 106 J/kg at 37.0°C and density of water is 1000 kg/m3. Answer in cubic meters.Find the temperature in °C corresponding to the following temperatures on the Fahrenheit scale: 0.00 ° F, 10.0 ° F, 20.0 ° F, 40.0 ° F, 60.0 ° F, 80.0 ° F.