Answer:

Step-by-step explanation:
Diameter

Temperature

Rate of supply

Emissivity of base surface

Temperature at base

Generally the equation for Area of base surface is mathematically given by



Generally the equation for Area of Hemispherical dome is mathematically given by



Since base is a flat surface


Therefore


Generally the equation for Net rate of radiation heat transfer between two surfaces is mathematically given by


Where

Therefore


Therefore the emissivity of the dome is