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Calorie (th) per Minute per Square Centimeter [cal(th)/(min·cm²)]


The unit calorie (th) per minute per square centimeter, written as cal(th)/(min·cm²), measures heat flux density or thermal power per unit area using the thermochemical calorie (1 cal(th) = 4.184 J). It represents the amount of heat energy transferred through 1 cm² of surface every minute.


This unit is often used in laboratory experiments, solar energy studies, and material testing, particularly when small surfaces and longer exposure times are involved. Applications include:



  • Solar radiation measurements on small panels or surfaces



  • Thermal testing of materials over extended periods



  • Calorimetry experiments on small samples



Mathematically, the heat flux is expressed as:


q=QAtq = \frac{Q}{A \cdot t}

where q is heat flux in cal(th)/(min·cm²), Q is energy in calories, A is area in cm², and t is time in minutes.


Conversion to SI units:


1cal(th)/(min\cdotpcm²)697.3W/m²1 \, \text{cal(th)/(min·cm²)} \approx 697.3 \, \text{W/m²}

Although SI units such as W/m² are standard, cal(th)/(min·cm²) remains useful in historical calorimetry, laboratory experiments, and solar radiation studies, providing an intuitive measure of energy transfer per minute per small surface area.


Calorie (th) per Second per Square Centimeter [cal(th)/(s·cm²)]


The unit calorie (th) per second per square centimeter, written as cal(th)/(s·cm²), measures heat flux density or power per unit area using the thermochemical calorie (1 cal(th) = 4.184 J). It represents the amount of heat energy transferred through 1 cm² of surface every second.


This unit is commonly used in laboratory-scale heat transfer experiments, solar energy studies, and focused radiation applications, especially where the energy is concentrated over a small surface area. Applications include:



  • Solar radiation intensity measurements



  • Laser or concentrated light experiments



  • Calorimetry experiments on small samples



Heat flux can be expressed mathematically as:


q=QAtq = \frac{Q}{A \cdot t}

where q is heat flux in cal(th)/(s·cm²), Q is energy in calories, A is area in cm², and t is time in seconds.


Conversion to SI units:


1cal(th)/(s\cdotpcm²)41,840W/m²1 \, \text{cal(th)/(s·cm²)} \approx 41,840 \, \text{W/m²}

While W/m² is the SI standard, cal(th)/(s·cm²) remains useful in laboratory and historical references, providing a practical measure for high-intensity, small-area heat transfer.





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