
Btu (th)/second/square inch = dyne/hour/centimeter (dyn/(h*cm)) / 5882352941176.5
To get Btu th per second per square inch heat flux density, simply divide Dyne per hour per centimeter by 5882352941176.5. With the help of this heat flux density converter, we can easily convert Dyne per hour per centimeter to Btu th per second per square inch. Here you are provided with the converter, proper definitions,relations in detail along with the online tool to convert dyne/hour/centimeter (dyn/(h*cm)) to Btu (th)/second/square inch.
1 dyne/hour/centimeter (dyn/(h*cm)) is 1.7E-13 Btu (th)/second/square inch.
dyne/hour/centimeter (dyn/(h*cm)) to Btu (th)/second/square inch converter is the heat flux density converter from one unit to another. It is required to convert the unit of heat flux density from Dyne per hour per centimeter to Btu th per second per square inch, in heat flux density. This is the very basic unit conversion, which you will learn in primary classes. It is one of the most widely used operations in a variety of mathematical applications. In this article, let us discuss how to convert dyne/hour/centimeter (dyn/(h*cm)) to Btu (th)/second/square inch, and the usage of a tool that will help to convert one unit from another unit, and the relation between Dyne per hour per centimeter and Btu th per second per square inch with detailed explanation.
A dyne-centimeter per hour per square centimeter (dyn·cm/h·cm² = dyn/h·cm) is a CGS unit of heat flux density. By definition, a dyne per hour per centimeter is the rate of heat energy of one dyne-centimeter per hour transferred through the area of one square centimeter, which is normal to the direction of the heat flux (dyn·cm/h·cm²).
A thermochemical BTU per second per square inch (BTU/s·in²) is a US Customary and British Imperial unit of heat flux density. By definition, a thermochemical BTU per second per square inch is the rate of heat energy of one thermochemical BTU per second transferred through the area of one square inch, which is normal to the direction of the heat flux.