units

CHE3161

Faculty of Engineering

Monash University

Undergraduate - Unit

This unit entry is for students who completed this unit in 2013 only. For students planning to study the unit, please refer to the unit indexes in the the current edition of the Handbook. If you have any queries contact the managing faculty for your course or area of study.

print version

6 points, SCA Band 2, 0.125 EFTSL

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LevelUndergraduate
FacultyFaculty of Engineering
Organisational UnitDepartment of Chemical Engineering
OfferedClayton First semester 2013 (Day)
Sunway First semester 2013 (Day)
Coordinator(s)Dr Wenlong Cheng (Clayton); Dr Ta Yeong Wu (Sunway)

Synopsis

This unit covers thermodynamics from a chemical engineering viewpoint. Content will cover basic concepts and the use of: thermodynamic functions such as free energy, enthalpy, and entropy; estimation of properties of pure compounds and mixtures; description of solution thermodynamics and its applications, equilibrium phase diagrams and chemical reaction equilibria.

Outcomes

On successful completion of this course students should be able to:

  1. apply mass, energy and entropy balances to flow processes
  2. determine the properties of ideal and real mixtures based on thermodynamic principles
  3. analyse changes in the properties of gases, fluids and solids undergoing changes in temperature and volume
  4. explain the underlying principles of phase equilibrium in binary and multi-component systems
  5. analyse the extent to which chemical reactions proceed, and determine the composition attained at equilibrium.

Assessment

Tests/Laboratory: 40% and Examination (3 hours): 60%
Students are required to achieve at least 45% in the total continuous assessment component (assignments, tests, mid-semester exams, laboratory reports) and at least 45% in the final examination component and an overall mark of 50% to achieve a pass grade in the unit. Students failing to achieve this requirement will be given a maximum of 45% in the unit.

Chief examiner(s)

Contact hours

3 hours lectures and 2 hours tutorials per week, plus one 4 hour laboratory during the semester. Approximately 7 hours of private study per week.

Prerequisites