12000 BTUs per 425-525 per sq ft.
20 btu per square foot
usually 20 btu's per square foot so......12000 btu's should do fine
The ideal mini split BTU per square foot for efficient cooling in a residential space is around 20-30 BTUs per square foot.
The heat content of natural gas is typically measured in British Thermal Units (BTU) per standard cubic foot. The range can vary but it's commonly around 1,000 BTU per cubic foot. When calculating BTU per square foot, you would need to factor in the gas consumption rate to determine the BTU output for a specific area.
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The recommended mini split BTU per square foot for efficient cooling and heating in a residential space is typically around 20-30 BTU per square foot. This can vary depending on factors such as insulation, ceiling height, and climate conditions.
No No they are not the same. BTU is a unit of measure, square foot is another unit of measure. So BTU per square foot is refining the unit of measure further. Another example of your question would be: miles and miles per gallon, two different but related units of measure.
You need 100W per square meter. 100W equals around 341.3BTU. 1 square meter are around 10.7 square feet. You therefore need around 32 BTU per square foot.
Divide the heat loss or gain obtained by the load calculation by square footage of the building.
To determine the BTU needed for a room, a common rule of thumb is to allocate about 20 BTU per square foot. For a 108-square-foot room, this would be approximately 2,160 BTU (108 sq ft x 20 BTU/sq ft). However, factors such as ceiling height, room insulation, number of windows, and occupancy can affect this calculation, so adjustments may be necessary for optimal comfort.
The required BTU (British Thermal Units) for a window air conditioner depends on the size of the room you want to cool. As a general guideline, you'll need about 20 BTU per square foot of living space. For example, a 150-square-foot room would require approximately 3,000 BTU, while a 500-square-foot room might need around 10,000 BTU. Other factors, such as ceiling height, sunlight exposure, and the number of occupants, can also influence the BTU requirement.
2500 btu per cubic foot of vapor.