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Page Title: ENABLING OBJECTIVES (Cont.)
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ENABLING OBJECTIVES (Cont.)
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Thermodynamics Heat Transfer and Fluid Flow Volume 1 of 3
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ENABLING OBJECTIVES (Cont.)

OBJECTIVES Thermodynamics ENABLING OBJECTIVES (Cont.) 1.16 Given  a  Mollier  diagram  and  sufficient  information  to  indicate  the  state  of  the  fluid, DETERMINE any unknown properties for the fluid. 1.17 Given a set of steam tables and sufficient information to indicate the state of the fluid, DETERMINE any unknown properties for the fluid. 1.18 DETERMINE  the  change  in  the  enthalpy  of  a  fluid  as  it  passes  through  a  system component, given the state of the fluid at the inlet and outlet of the component and either steam tables or a Mollier diagram. 1.19 STATE the First Law of Thermodynamics. 1.20 Using  the  First  Law  of  Thermodynamics,  ANALYZE  an  open  system  including  all energy transfer processes crossing the boundaries. 1.21 Using   the   First   Law   of   Thermodynamics,   ANALYZE   cyclic   processes   for   a thermodynamic system. 1.22 Given  a  defined  system,  PERFORM  energy  balances  on  all  major  components  in  the system. 1.23 Given a heat exchanger, PERFORM an energy balance across the two sides of the heat exchanger. 1.24 IDENTIFY  the  path(s)  on  a  T-s  diagram  that  represents  the  thermodynamic  processes occurring in a fluid system. 1.25 STATE the Second Law of Thermodynamics. 1.26 Using  the  Second  Law  of  Thermodynamics,  DETERMINE  the  maximum  possible efficiency of a system. 1.27 Given  a  thermodynamic  system,  CONDUCT  an  analysis  using  the  Second  Law  of Thermodynamics. 1.28 Given a thermodynamic system, DESCRIBE the method used to determine: a. The maximum efficiency of the system b. The efficiency of the components within the system HT-01 Page xii Rev. 0

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