Given the specific heat, mass flowrate and enthalpy of formation of a stream of Nitrogen below: HN₂ = MN2 [ Hƒ (№2) + CP(N2) (T − 298.15K)] - Enthalpy of formation (Hƒ (№2) = 16.881 × 10³ kJ/kg); Specific heat (CPN2 = 1.04 kJ/kg.K); Mass flowrate (M = 3.678 kg/s) Table 2 H [kJ/s] 62088.318 62183.946 62279.574 62375.202 62470.83 62566.458 62662.086 Determine temperature of the stream at each of the enthalpy readings in table 3. a. 1 screenshot of table with Excel code used to determine temperature in full view. b. 1 screenshot of table with all the temperature readings.

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Given the specific heat, mass flowrate and enthalpy of formation of a stream of
Nitrogen below:
HN₂
=
MN2 [ Hƒ (№2) + CP(N2) (T − 298.15K)]
-
Enthalpy of formation (Hƒ (№2) = 16.881 × 10³ kJ/kg);
Specific heat (CPN2 = 1.04 kJ/kg.K);
Mass flowrate (M = 3.678 kg/s)
Table 2
H [kJ/s]
62088.318
62183.946
62279.574
62375.202
62470.83
62566.458
62662.086
Determine temperature of the stream at each of the enthalpy readings in table 3.
a. 1 screenshot of table with Excel code used to determine temperature in full view.
b. 1 screenshot of table with all the temperature readings.
Transcribed Image Text:Given the specific heat, mass flowrate and enthalpy of formation of a stream of Nitrogen below: HN₂ = MN2 [ Hƒ (№2) + CP(N2) (T − 298.15K)] - Enthalpy of formation (Hƒ (№2) = 16.881 × 10³ kJ/kg); Specific heat (CPN2 = 1.04 kJ/kg.K); Mass flowrate (M = 3.678 kg/s) Table 2 H [kJ/s] 62088.318 62183.946 62279.574 62375.202 62470.83 62566.458 62662.086 Determine temperature of the stream at each of the enthalpy readings in table 3. a. 1 screenshot of table with Excel code used to determine temperature in full view. b. 1 screenshot of table with all the temperature readings.
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