It's not What you think | Latent Heat

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Circosity

Circosity

4 ай бұрын

*Title: "What is Colder at 0°C: Ice or Water? Unveiling the Science!"*
*Description:*
Ever pondered over which substance feels colder at 0°C-ice or water? Let's delve into this intriguing question and uncover the science behind temperature perception and the unique properties of ice and water molecules.
🧊 *FAQ Keywords:*
1. *Ice vs. Water:* Explore the differences in temperature sensation between ice and water at 0°C.
2. *Thermal Conductivity:* Understand the role of thermal conductivity in determining the coldness perception.
3. *Latent Heat:* Discover the significance of latent heat in water and its absence in ice at 0°C.
4. *State Transitions:* Learn why water freezes at 0°C and how latent heat affects the temperature sensation.
5. *Temperature Sensation:* Understand why ice may feel colder than water due to its ability to absorb more heat.
🌡️ *Answer:*
At 0°C, ice and water coexist at the same temperature, but their molecular structures differ. Water contains latent heat, which is released when it freezes into ice. However, ice does not have latent heat, which contributes to its ability to absorb more heat from our skin. Hence, ice typically feels colder to the touch than water, even though they are both at 0°C.
💡 *Educational and Engaging:*
This video offers an educational journey with engaging visuals and demonstrations to simplify complex scientific concepts. Whether you're a science enthusiast or simply curious, there's something here for everyone!
Join us as we uncover the mystery of which substance feels colder at 0°C-ice or water-and delve into the captivating science behind it! Don't forget to like, share, and subscribe for more captivating content. Let's explore together! ❄️🔍 #IceVsWater #TemperatureScience #ScienceEducation #LatentHeat #CuriosityExploration
Music- pixabay.com/users/penguinmusi...

Пікірлер: 8
@Ferdish3
@Ferdish3 4 ай бұрын
You're mixing two prinicipially different things - thermodynamic temperature (intensive quantity) and internal energy (extensive quantity) of the system. In terms of temperature, there is no difference between the container of water at 0°C and the container of ice at 0°C. Both have the same temperature, none of them is hotter or colder than the other one.
@tc1349
@tc1349 4 ай бұрын
Isn't the phase changing process changes the potential energy of water instead of kinetic energy? In that case, the average kinetic energy for ice and water at 0C should be the same and they have the same "coldness".
@tuckvison
@tuckvison 4 ай бұрын
This may confuse students studying systems -- generally speaking, when we talk about "coldness" or "hotness" we are talking about thermodynamic temperature. You can sophisticate your analysis of the system with descriptions of extensive quantity and start talking about things like latent heat but this is a measurement of energy (i.e. joules), rather than a measurement of temperature (i.e. Celsius).
@kalexfamily2606
@kalexfamily2606 4 ай бұрын
this proves that the indian teacher on youtube is better than the college teacher
@mas7rreaper126
@mas7rreaper126 4 ай бұрын
That Indian accent can kill
@winter9753
@winter9753 4 ай бұрын
It really doesn't, the dude is wrong, read the comments
@winter9753
@winter9753 4 ай бұрын
You're mistaking temperature for enthalpy. Yes, ice and water at the same temperature don't have the same enthalpy (or heat), but they have the same TEMPERATURE, it's in the premise.
@jamesbreidenbach5866
@jamesbreidenbach5866 4 ай бұрын
Should have shown this visually with a phase change diagram. If you look at one, you get a better understanding that between phases, there is a stage where adding more energy does not raise the temperature, but rather flatlines, and all the energy goes into the changing of phases.
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