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DC Boiler Exam Prep 2026 questions with accurate detailed answers

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DC Boiler Exam Prep 2026 questions with accurate detailed answers

Institution
DC 3rd Class
Course
DC 3rd Class

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DC Boiler Exam Prep 2026 questions with accurate
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




detailed answers ||\\//||




Area of a rectangle ✔✔ Length x Width
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Area of a Circle ✔✔ .7854 x Diameter²
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Volume of a Box ✔✔ Length x Width x Height ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Volume of a Cylinder ✔✔ .7854 x Diameter² x Length||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Circumference of a Circle ✔✔ π x Diameter ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Unit of Force ✔✔ Pound (lb)
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Formula for Force ✔✔ Pressure ÷ Area ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Unit of Work ✔✔ in-lb or ft-lb
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Formula for Work ✔✔ Force x Distance ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Unit of Power ✔✔ ft-lb/min
||\\//|| ||\\//|| ||\\//|| ||\\//||




Formula for Power ✔✔ = Work ÷ Time ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




or (Force x Distance) ÷ Time
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||

,Formula for Mechanical Horsepower ✔✔ = Power ÷ 33,000 ft-lb/min
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Fahrenheit to Celsius ✔✔ °C = (°F - 32) ÷ 1.8 ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Celsius to Fahrenheit ✔✔ °F = (1.8 x °C) - 32
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Fahrenheit to Rankine ✔✔ °R = °F + 460 ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Celsius to Kelvin ✔✔ K = °C +273.15
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Charles' First Law ✔✔ Volume1 / Pressure1 = Volume2 / Pressure2
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Charles' Second Law ✔✔ Pressure1 / Temperature1 = Pressure2 / Temperature2
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Boyle's Law ✔✔ Pressure1 x Volume1 = Pressure2 x Volume2
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




General Gas Law ✔✔ (Pres1 x Vol1)/ Temp1 = (Pres2 x Vol2)/Temp2
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Formula for Levers ✔✔ Resistance x DistanceR = Effort x DistanceE
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Formula for Inclined Planes ✔✔ Force x Length = Resistance x Height
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Formula for Wheel & Axel ✔✔ Force x DistanceF = Resistance x DistanceR
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Torque ✔✔ Force x Radius
||\\//|| ||\\//|| ||\\//|| ||\\//||

, Safe Working Pressure of a Riveted Boiler (SWP) ✔✔ (Area of Staybolt x Stress Constant of
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Staybolt) ÷ Area Covered by Staybolt or = (a x C) ÷ A ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Area Covered by Staybolt ✔✔ = Pitch x Pitch ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Longitudinal Stress ✔✔ (P x D x L) / 2t ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




P = Pressure
||\\//|| ||\\//||




D = Diameter ||\\//|| ||\\//||




L = Length ||\\//|| ||\\//||




t = thickness of steel
||\\//|| ||\\//|| ||\\//|| ||\\//||




Boiler Heating Surface (tubes) = ✔✔ = C x L x # ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




C = Circumference of tubes
||\\//|| ||\\//|| ||\\//|| ||\\//||




L = Length of tubes
||\\//|| ||\\//|| ||\\//|| ||\\//||




# = Number of tubes
||\\//|| ||\\//|| ||\\//|| ||\\//||




HS = π x Diameter x Length x Number of Tubes
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Watts per Boiler Horsepower ✔✔ 746 Watts ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Horsepower formula ✔✔ = ft-lb/min ÷ 33000 ft-lb/min ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




ft-lb formula for a pump ✔✔ = gpm x 8.33 x head (ft)
||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Factor of Evaporation (FE) = ✔✔ = [Hs - (tfw-32)] ÷ 970.3 ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//|| ||\\//||




Hs = Enthalpy of steam ||\\//|| ||\\//|| ||\\//|| ||\\//||

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Institution
DC 3rd Class
Course
DC 3rd Class

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