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The T_{0}' ag of the me rod Water jacketed copper rod "D" m in diameter is used to carry the current. The water, which flows continuously maintains the rod temperature at T deg * C during normal operation at "I" amps. The electrical resistance of the rod is known to be "R" Omega/ in If the coolant water ceased to be available and the heat removal diminished greatly, the rod would eventually melt What is the time required for melting to occur if the melting point of the rod material is T mp?
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The T_{0}' ag of the me rod Water jacketed copper rod "D" m in diamete...
Time required for melting of copper rod
1. Calculating power dissipated
- The power dissipated in the rod can be calculated using the formula: P = I^2 * R, where I is the current flowing through the rod and R is the resistance of the rod.
- This power represents the heat generated in the rod due to the current flowing through it.
2. Calculating heat required for melting
- The heat required to melt the rod can be calculated using the formula: Q = m * L, where m is the mass of the rod and L is the latent heat of fusion of the material.
- This heat represents the energy required to change the state of the rod from solid to liquid.
3. Equating power dissipated and heat required
- At the melting point of the material, the heat generated in the rod (power dissipated) should be equal to the heat required for melting.
- By equating the two, we can calculate the time required for melting to occur.
4. Calculating the time required
- The time required for melting can be calculated using the formula: t = Q / P, where t is the time, Q is the heat required for melting, and P is the power dissipated in the rod.
- Substituting the values calculated in steps 1 and 2 into this formula will give us the time required for melting to occur.
By following these steps and calculations, we can determine the time required for the copper rod to melt if the coolant water ceases to be available and the heat removal diminishes greatly.
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The T_{0}' ag of the me rod Water jacketed copper rod "D" m in diameter is used to carry the current. The water, which flows continuously maintains the rod temperature at T deg * C during normal operation at "I" amps. The electrical resistance of the rod is known to be "R" Omega/ in If the coolant water ceased to be available and the heat removal diminished greatly, the rod would eventually melt What is the time required for melting to occur if the melting point of the rod material is T mp?
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The T_{0}' ag of the me rod Water jacketed copper rod "D" m in diameter is used to carry the current. The water, which flows continuously maintains the rod temperature at T deg * C during normal operation at "I" amps. The electrical resistance of the rod is known to be "R" Omega/ in If the coolant water ceased to be available and the heat removal diminished greatly, the rod would eventually melt What is the time required for melting to occur if the melting point of the rod material is T mp? for UPSC 2024 is part of UPSC preparation. The Question and answers have been prepared according to the UPSC exam syllabus. Information about The T_{0}' ag of the me rod Water jacketed copper rod "D" m in diameter is used to carry the current. The water, which flows continuously maintains the rod temperature at T deg * C during normal operation at "I" amps. The electrical resistance of the rod is known to be "R" Omega/ in If the coolant water ceased to be available and the heat removal diminished greatly, the rod would eventually melt What is the time required for melting to occur if the melting point of the rod material is T mp? covers all topics & solutions for UPSC 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The T_{0}' ag of the me rod Water jacketed copper rod "D" m in diameter is used to carry the current. The water, which flows continuously maintains the rod temperature at T deg * C during normal operation at "I" amps. The electrical resistance of the rod is known to be "R" Omega/ in If the coolant water ceased to be available and the heat removal diminished greatly, the rod would eventually melt What is the time required for melting to occur if the melting point of the rod material is T mp?.
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