Manual Mass Transfer Operations for the Practicing Engineer (Essential Engineering Calculations Series)

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Mass Transfer Operations for the Practicing Engineer and millions of other . As with all of the books in this series, emphasis is placed on an example-based approach to Essential topics for professional engineering exams are also covered. Handbook of Chemical and Environmental Engineering Calculations (Wiley).
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Retail Price:. BookShout Price:. Quantity: Print books are available for purchase with a minimum order of 50 books. Readers Also Liked Discussion Goodreads Reviews. Mass Transfer Operations for the Practicing Engineer. Finite difference equations. Estimation of local and overall heat and mass transfer coefficients. Use, design, and selection of heat exchangers and heat exchange systems for various applications in the chemical process industries.

Study of gas-liquid and liquid-liquid mass transfer operations including gas absorption, extraction, and distillation in equilibrium staged tray columns and packed columns. Quantitative treatment of mass transfer based on material and energy balances, phase equilibrium, and rates of heat and mass transfer.

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Mass Transfer Operations Practicing Engineer by Theodore Louis Ricci Francesco

Applications of radiation heat transfer, boiling, and condensation. The course covers homogeneous kinetics, differential and integral data analysis, batch, mixed, and plug flow reactors, systems with multiple reactions, reactor cascades, and temperature and energy effects. Properties of silicon wafers, wafer-level processes, surface and bulk micromachining, thin-film deposition, dry and wet etching, photolithography, process integration, simple actuators.

Introduction to microfluidic systems. MEMS applications: capacitive accelerometer, cantilever and pressure sensor. Topics on professional practice, ethics, and contemporary and global issues in the profession are discussed. Principles underlying momentum, mass and energy transfer and the applications of equipment used to accomplish such transfer, introduction to laboratory concepts in data collection, record keeping, interpretation and analysis, and instrumentation including experimental error analysis, regression, model formulation, experimental design, and instrumentation.

Written and oral reports are required. Formal instruction on written and oral communication will be provided. Continuation of CHE with further development of hands-on laboratory skills. Introduction to the design process; simulation to assist in process creation; synthesis of separation trains; design of separation equipment; and capital cost estimation.

Design of reactor-separator-recycle networks; heat and power integration; batch process scheduling; annual costs, earnings and profitability; preliminary work on a capstone design project. Completion of an open-ended design project that will include written and oral communication of intermediate results and a final written report.

Chemical engineering

Design process, modeling; analytical and numerical. Actuators; dynamics and thermal issues. Use of software for layout and simulation. Characterization and reliability of MEMS devices. Electrical interfacing and packaging of MEMS. Microsensors, microfluidic systems, applications in engineering, biology, and physics.

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Discusses problems in the field of consulting engineering. Seminars presented by practicing consulting engineers. The mathematics of process dynamics, control system design, Laplace transforms, feedback control theory, characteristics of sensors, transmitters and control elements, stability criteria, and frequency response. Use of control design software is emphasized. Interrelation of polymer structure, properties and processing.

Chemical engineering - Wikipedia

Polymerization kinetics. Methods for molecular weight determination. Fabrication and processing of thermoplastic and thermosetting materials. Student projects. Introduction to the fundamentals of particle technology including particle characterization, transport, sampling, and processing.

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Students will learn about the basic design and scale-up of some industrial particulate systems including fluidized beds, mixers, pneumatic conveying systems, cyclone separators, and hoppers as well as environmental and safety issues related to particulate handling. Physical-chemical unit operations pertinent to wastewater treatment such as membrane separations, filtration, coagulation, flocculation, ion exchange, carbon adsorption.

Applications for unit operations from the chemical process industries are also covered.

Introduction to the Mass Transfer Section (Lec061)

Cross-listed with CE This is a survey course in which the energy needs of the world, the ways in which those needs are currently being met, the development and current usage of renewable energy, and the impact of these on the environment, specifically the impact on climate change, are examined. Life cycle analysis is also considered. Fundamentals of chemical process safety including toxicology, industrial hygiene, toxic release and dispersion models, fires and explosions, designs to prevent fires and explosions. It then goes on to provide step-by-step guidance for traditional mass transfer operations, including distillation, absorption and stripping, and adsorption, plus novel mass transfer processes.

Essential topics for professional engineering exams are also covered.


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Geared towards chemical, environmental, civil, and mechanical engineers working on real-world industrial applications, Mass Transfer Operations for the Practicing Engineer features:. Mass Transfer Operations for the Practicing Engineer.


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