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Creation, protection, and exploitation of a useful idea, including bargaining and negotiations. View night fever face details in MyPlan: CHEM E 309CHEM E 310 Material and Energy Balances (4)Chemical and physical process calculations: steady- and unsteady-state material and energy balances with specific examples in vapor-liquid contact operations and multiphase extraction, and introductory thermochemistry.

Prerequisite: PHYS 122 and MATH 307. View course details in MyPlan: CHEM E 310CHEM E 325 Energy and Entropy (4)Introduction to the basic principles of thermodynamics from both microscopic and macroscopic points of view.

Emphasis on equilibrium phenomena, and the trade-off of energy and disorder in determining structure and properties. Applications of thermodynamics in process design and analysis. Prerequisite: CHEM E 310. Prerequisite: CHEM E 325. View course details in MyPlan: CHEM E 330CHEM E 340 Transport Processes II (4)Heat Spectazole (Econazole Nitrate)- FDA, basic principles, Spectazole (Econazole Nitrate)- FDA applications.

Conduction, convection, and radiation. Prerequisite: CHEM E 330. View course details in MyPlan: CHEM E 340CHEM E 341 Energy and Environment (3) NWEnergy use.

Oil, gas, coal resources. Nuclear energy principles, reactors, fuel cycle. View medimetriks com details in MyPlan: CHEM E 341CHEM E 355 Biological Frameworks for Engineers (3)For engineers with no prior experience in the biological sciences. Hands-on, project-based course covers fundamental concepts and language of biology, from an engineering perspective.

View course details in MyPlan: CHEM E 355CHEM E 375 Chemical Enginering Computer Skills Spectazole (Econazole Nitrate)- FDA PfaendtnerUse Excell, Matlab, and AspenPlus to solve typical chemical engineering Spectazole (Econazole Nitrate)- FDA. Solve realistic problems and explore alternatives that would be inaccessible for hand calculations.

Includes equations of state, chemical equilibrium of simultaneous reactions, phase equilibria, plug flow reactors, heat transfer in 1-D, and time-dependent heat transfer. View course details in MyPlan: CHEM E 375CHEM E 434 Physiological Processes in Engineering Nanomedicine (3) Elizabeth NanceProvides an understanding of the physiological principles that influence the use of nanoscale systems in the human body.

View course details in MyPlan: CHEM E 434CHEM E 435 Transport Processes III (4)Mass transfer, basic principles, and applications to equipment design. Emphasis on teaming, experimental planning, procedures, report writing, and oral presentations. View course details in MyPlan: CHEM E 436CHEM E 437 Chemical Engineering Laboratory II (3)Continuation of CHEM E 436. Laboratory investigation of chemical engineering principles applied to equipment design with emphasis on mass transfer operations and chemical reactors.

View course details in MyPlan: CHEM E 440CHEM E 442 Renewable Energy (4) NW Philip C MalteIntroduction to renewable energy. Principles and practices: solar, wind, water, and biomass energy conversion. Prerequisite: either M E 323, CHEM E 325, A A 260, or E E 351. View course details in MyPlan: CHEM E 442CHEM E 445 Fuel Cell Engineering (3)Introduction Spectazole (Econazole Nitrate)- FDA electrochemical fuel cells for use in transportation and stationary power applications.

Topics covered include types of fuel cells, single cell operation, stack engineering, overall system design, and safety, with emphasis on proton exchange membrane and solid oxide fuel cells. Instructors: StuveView course details in MyPlan: CHEM E 445CHEM E 455 Surface and Colloid Science Laboratory (3) Berg, PozzoLaboratory techniques, equipment, and underlying fundamentals in surface and Spectazole (Econazole Nitrate)- FDA science.

Experiments in the measurement of surface tension, adsorption, wetting and spreading, colloid properties, emulsion preparation and stability, electrophoresis, Spectazole (Econazole Nitrate)- FDA interfacial hydrodynamics.

View course details in MyPlan: CHEM E 455CHEM E 457 Principles of Molecular Engineering (3)Covers the basic aspects of statistical mechanics, focusing primarily on the canonical ensemble. Develops and applies a set of tools to regular liquid solutions, phase formation, spinodal decomposition, adsorption, polymer bristol myers squibb pharma, chemical kinetics, and physical kinetics.

Instructors: Hillhouse Offered: Sp. View course details in MyPlan: CHEM E 457CHEM E 458 Surface Analysis (3)Understanding of solid surfaces for research and development in microelectronics, catalysis, adhesion, biomaterials, science wear, and corrosion science. Newer methods available to study surfaces of materials.

Electron emission spectroscopies (ESCA, Auger): ion scattering, ion spectroscopic, photon spectroscopic, and thermodynamic methods. View course details in MyPlan: CHEM E 458CHEM E 460 Polymer chemistry Laboratory (3) C. DEFORESTLaboratory techniques, equipment, and underlying fundamentals in polymer chemistry, synthesis, and design. Quantitative understanding of polymerization reaction engineering will be developed through careful examination of kinetics and structure-property relationships.

Selection of laboratory polymerization and characterization techniques, as well as recent innovations in polymer Spectazole (Econazole Nitrate)- FDA, will be highlighted.

View course details in MyPlan: CHEM E 460CHEM E 461 Electrochemical Engineering (3) SchwartzExplores role of thermodynamics, charge transfer kinetics, and mass transfer on behavior of electrochemical systems. Includes cell thermodynamics, faradaic and non-faradaic rate exam physical, ionic transport, nucleation and Spectazole (Econazole Nitrate)- FDA theories.

Applications to chemical sensors, batteries, corrosion, thin film deposition. In-class demonstrations to illustrate concepts. View course details in MyPlan: CHEM E 465CHEM E 467 Biochemical Engineering (3) F.

BANEYXApplication of basic chemical engineering principles to biochemical and biological process industries such as fermentation, enzyme technology, and biological waste treatment.

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