3.-Increase in the dissipation of a plate by means of needle-shaped fins An area of 1m x 1m with a surface temperature of 110 C, dissipates heat to the environment at 20 C, with a connective coefficient of 50 W/m2. Perpendiculars are located cylindrical fins of 3 mm diameter, of high conductivity (110 W/m K). Find: e fins A) Heat dissipation through the base area without the fir B) The heat transferred by each fin, with its maximum useful length. C) The number of fins needed to increase the heat dissipated by the base area by 30%
Energy transfer
The flow of energy from one region to another region is referred to as energy transfer. Since energy is quantitative; it must be transferred to a body or a material to work or to heat the system.
Molar Specific Heat
Heat capacity is the amount of heat energy absorbed or released by a chemical substance per the change in temperature of that substance. The change in heat is also called enthalpy. The SI unit of heat capacity is Joules per Kelvin, which is (J K-1)
Thermal Properties of Matter
Thermal energy is described as one of the form of heat energy which flows from one body of higher temperature to the other with the lower temperature when these two bodies are placed in contact to each other. Heat is described as the form of energy which is transferred between the two systems or in between the systems and their surrounding by the virtue of difference in temperature. Calorimetry is that branch of science which helps in measuring the changes which are taking place in the heat energy of a given body.
![3.-Increase in the dissipation of a plate by means of needle-shaped fins
An area of 1m x 1m with a surface temperature of 110 C, dissipates heat to the
environment at 20 C, with a connective coefficient of 50 W/m2. Perpendiculars are
located cylindrical fins of 3 mm diameter, of high conductivity (110 W/m K). Find:
A) Heat dissipation through the base area without the fins
B) The heat transferred by each fin, with its maximum useful length.
C) The number of fins needed to increase the heat dissipated by the base area by
30%](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F995c5a83-8643-4f84-861a-e01bfe704396%2F846b474d-fb4c-4b3a-b5ed-9045e1d70663%2F916z24c_processed.jpeg&w=3840&q=75)
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