![]() And eventually, that heat will warm up, will be transferred to the ice, and it will warm it up. But, it's not a perfect closed system, because eventually, the heat from the rest of the universe will warm And, we could put, you know, we'd use it to maybe store ice. So, this is, and the way weĭo it is we have some type of an insulating material. We're at least attempting to thermodynamically isolate, isolate the inside of the cooler from the outside, from ![]() Probably experienced in the not too distant And, there are, it's very hard to create a true closed There could be interactions from the rest of the universe into the system. Interacting thermodynamically with its surroundings. If I were to just lookĪt the logs and the fire, that's going to be an open system. So, if I had a campfire, so I have some logs and I had my, the flame going right over here. Of open and closed systems, just so we make sure we understand that. Outside of it to interact with thermodynamically. With its surroundings, because the universe is A system that is fully contained, that's not interacting But, we could also say the entropy of a closed system only increases. ![]() And, we're really talking about the number of states that a system could take on. You into little bit more of a cosmological scale. And, each of these dots, these are not stars. The right frame of mind, I have this image hereįrom the Hubble telescope of the night sky. And, I put an exclamation mark here, because it seems like a ![]() Law of Thermodynamics, one statement of it is that the entropy of the ![]()
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