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Published byBryce Sullivan Modified over 9 years ago
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HOW IS KINETIC ENERGY DISTRIBUTED IN A LIQUID?
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LOW kinetic energy HIGH kinetic energy
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LOW kinetic energy HIGH kinetic energy
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LOW kinetic energy HIGH kinetic energy
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LOW kinetic energy HIGH kinetic energy
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LOW kinetic energy HIGH kinetic energy
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LOW kinetic energy HIGH kinetic energy
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LOW kinetic energy HIGH kinetic energy
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LOW kinetic energy HIGH kinetic energy HOT COLD
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LOW INTERMEDIATE HIGH kinetic kinetic kinetic energy energy energy COLDHOT
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LOW INTERMEDIATE HIGH kinetic kinetic kinetic energy energy energy COLDHOT
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Number of particles
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kinetic energy lowhigh
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low K.E. high K.E. Number of particles
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low K.E. high K.E. average K.E. = temperature of liquid Number of particles
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WHAT HAPPENS TO A LIQUID’S TEMPERATURE DURING EVAPORATION?
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temperature of liquid low temperature high temperature
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lowhigh temperature 1
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lowhigh temperature 2
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lowhigh temperature 2
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lowhigh
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lowhigh Would the curve remain truncated at the high end as shown? How would the curve change as high KE particles leave?
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Would the curve remain truncated at the high end as shown? How would the curve change as high KE particles leave? low K.E. high K.E.
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Would the curve remain truncated at the high end as shown? How would the curve change as high KE particles leave? average K.E. low K.E. high K.E.
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Would the curve remain truncated at the high end as shown? How would the curve change as high KE particles leave? average K.E. Number of particles low K.E. high K.E.
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average K.E. low K.E. high K.E. Number of particles
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low K.E. high K.E. Number of particles average K.E. 1 average K.E. 2
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Why/How does sweat cool your body? (Sweat is mostly water. What is water in sweat doing?)
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low K.E. high K.E. Number of particles temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid heat transfer from warmer air to cooler water
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low K.E. high K.E. Number of particles air temperature of liquid heat transfer from warmer air to cooler water
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low K.E. high K.E. Number of particles air temperature of liquid heat transfer from warmer air to cooler water
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low K.E. high K.E. Number of particles air temperature of liquid heat transfer from warmer air to cooler water
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low K.E. high K.E. Number of particles air temperature of liquid heat transfer from warmer air to cooler water
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low K.E. high K.E. Number of particles air temperature of liquid heat transfer from warmer air to cooler water
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low K.E. high K.E. Number of particles air temperature of liquid heat transfer from warmer air to cooler water
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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low K.E. high K.E. Number of particles air temperature of liquid
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Back to sweat– how does the evaporating water in the kitchen connect to what is happening with sweat on the surface of your skin?
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