Certain amount of heat is given to 100 g of copper to increase its temperature by 21 degree Celsius.

Описание к видео Certain amount of heat is given to 100 g of copper to increase its temperature by 21 degree Celsius.

Certain amount of heat is given to 100 g of copper to increase its temperature by 210 C. If the same amount of heat is given to 50 g of water, then the rise in its temperature is : (specific heat capacity of copper = 400 Jkg-1 K-1 and that for water = 4200 Jkg-1 K-1)
(a) 40 C (b) 5.250 C (c) 80 C (d) 60 C
Here’s a detailed YouTube description for a problem involving the comparison of heat transfer between copper and water, tailored for *IIT JEE* and *NEET* aspirants:

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*Title:* Heat Transfer Between Copper & Water | Specific Heat Capacity | Physics for IIT JEE & NEET 2025

*Description:*

Welcome back to our channel! In this video, our team breaks down a *heat transfer* problem involving copper and water, focusing on the relationship between heat supplied, mass, and *specific heat capacity**. This is a crucial concept for understanding thermal physics and mastering problems in **IIT JEE* and *NEET* Physics.

🔍 *Key Concepts Covered:*

1. **Specific Heat Capacity**:
Get to know the concept of *specific heat capacity* and how different materials react to the same amount of heat.
Specific heat capacity is the amount of heat required to raise the temperature of 1 kg of a substance by 1°C, and it varies between different materials like copper and water.

2. **Heat Transfer Equation**:
Understand the fundamental equation for heat transfer:
\[ Q = mc\Delta T \]
Where \( Q \) is the heat added, \( m \) is the mass, \( c \) is the specific heat capacity, and \( \Delta T \) is the change in temperature.
Learn how to use this equation to compare how different substances, like copper and water, absorb heat.

3. **Copper vs Water: Heat Transfer**:
In this specific problem, we explore how the same amount of heat that raises the temperature of *100 g of copper* by 21°C affects **50 g of water**.
By comparing the specific heat capacities of copper (400 J/kg/K) and water (4200 J/kg/K), you'll see how heat capacity influences the rise in temperature between different substances.

4. **Problem Breakdown**:
Step-by-step, we guide you through solving this problem to determine the *temperature rise* in water when the same amount of heat is applied as that given to copper.
These types of problems are common in both *IIT JEE* and *NEET* exams, making this video a valuable resource for solving heat-related questions.

5. **Practical Relevance**:
Discover real-world applications of this concept, such as in *cooling systems**, **heating devices**, and **thermodynamics* in daily life, where different materials respond differently to the same heat.

💡 **Why This is Important for IIT JEE & NEET**:
Mastering heat transfer problems is essential for understanding broader concepts in *thermodynamics* and **thermal physics**, both of which are key chapters in your competitive exam syllabus.

📚 **Related Topics to Explore**:
**Thermodynamics & Heat Transfer**: [Link to Video]
**Specific Heat Capacity and Its Applications**: [Link to Video]
**Problem-Solving Techniques for IIT JEE & NEET**: [Link to Video]

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💬 **Got a Question?**:
Drop your doubts in the comments, and our team will help you understand the solution.
Let us know what physics concepts you'd like us to cover next to help with your exam preparation.

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#IITJEE2025 #NEET2025 #SpecificHeatCapacity #HeatTransferProblems #Thermodynamics #PhysicsConcepts #JEEPhysics2025 #NEETPhysics2025 #PhysicsPreparation

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