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ENGN 1230: Instrumentation Design
0.00 - 1.00 Credits
Brown University
Sensors for pressure, temperature, blood flow, muscle and neural activity. Amplifiers, filters, and A/D-D/A converters. The use of computers in monitoring and controlling physiological processes. Feedback controllers for temperature, flow rate, and experimental stimuli. Intended as a design course primarily for biomedical engineers.
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ENGN 1230 - Instrumentation Design
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ENGN 1300: Structural Analysis
1.00 Credits
Brown University
A unified study of truss, beam, frame, plate, and shell structures. Emphasis on principles of virtual work and numerical methods of elastic structural analysis by matrix methods. Includes calculation of deflections and reactions in beam structures, beam vibrations, and column buckling. Theorems of plastic limit analysis. Plate bending. Membrane stresses and local bending effects in axially symmetric shells. Prerequisite: ENGN 0310.
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ENGN 1300 - Structural Analysis
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ENGN 1310: Planning and Design of Systems
1.00 Credits
Brown University
Course description unavailable
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ENGN 1310 - Planning and Design of Systems
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ENGN 1340: Water Supply and Wastewater Treatment
1.00 Credits
Brown University
The hydrological cycle, surface water hydrology, ground water hydrology. Emphasis on the formulation of mathematical models of various flow problems and their solution by analytical or numerical means. Typical problems: open channel and river flows; flood routing; ground water flow in aquifers and into wells. Topics in wastewater treatment plant design: mixing, residence time, aeration, and, bacteriological and chemical treatment processes. Prerequisite: ENGN 0810.
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ENGN 1340 - Water Supply and Wastewater Treatment
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ENGN 1360: Soil Mechanics and Principles of Foundation Engineering
0.00 - 1.00 Credits
Brown University
Classification and identification of geological materials; mechanical and physical properties and methods of testing. Elements of the analysis of stress and strain in rock and soil masses; theories of failure, theory of seepage. Problems of building foundations; consolidation and settlement; stability of earth slopes and embankments. Includes geotechnical laboratory. Prerequisite: ENGN 0310.
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ENGN 1360 - Soil Mechanics and Principles of Foundation Engineering
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ENGN 1370: Advanced Engineering Mechanics
1.00 Credits
Brown University
A unified study of the dynamics of particles, rigid bodies, and deformable continua. Generalized coordinates and Lagrange's equations; variational principles; stability of equilibrium; vibrations of discrete systems and of elastic continua, and wave propagation. Prerequisites: ENGN 0040, APMA 0340, or equivalent.
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ENGN 1370 - Advanced Engineering Mechanics
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ENGN 1380: Design of Civil Engineering Structures
1.00 Credits
Brown University
This course provides an introduction to the design of steel and reinforced concrete structures using ultimate strength methods. Lectures will cover key concepts of design theory, building codes, and standards using examples from real structures. Students will apply concepts through computer labs, homework problems, and a design project. Lectures plus lab. Prerequisite: ENGN 1300.
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ENGN 1380 - Design of Civil Engineering Structures
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ENGN 1400: Analytical Methods in Biomaterials
1.00 Credits
Brown University
Analytical methods and instrumentation currently used to characterize biomaterials. Specific methods/instrumentation covered include: molecular scale analysis (NMR, FTIR, UV-Vis spectroscopy); surface anaylsis (AFM, SEM, XPS, contact angle goniometry, ellipsometry, quartz crystal microbalance, electrochemistry, grazing angle IR); bulk analysis (DSC, mechanical testing) and biological analyis (bioassays, flourescence and confocal microscopy). Prerequisites: CHEM 0330, CHEM 0350, ENGN 0040 and BIOL 0200.
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ENGN 1400 - Analytical Methods in Biomaterials
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ENGN 1410: Physical Chemistry of Solids
1.00 Credits
Brown University
Application of physical chemistry and solid state chemistry to the structure and properties of engineering solids as used in solid state devices, ceramics, and metallurgy. Equilibrium and free energy of heterogeneous systems, thermodynamics of solutions, chemical kinetics, diffusion, catalysis and corrosion, solid state transformations. Case studies taken from industrial practice. Prerequisites: ENGN 0410, 0720.
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ENGN 1410 - Physical Chemistry of Solids
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ENGN 1420: Kinetics Processes in Materials Science and Engineering
1.00 Credits
Brown University
This course introduces the basic principles and formulations that describe kinetic processes in materials science and engineering. These are divided into the following principle types of mechanisms: solid state diffusion, reactions at surfaces and interfaces, and phase transformations. The final section of the course applies these principles to several relevant materials processing systems. Prerequisites: ENGN 0410, 0720, 1410 or equivalent.
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ENGN 1420 - Kinetics Processes in Materials Science and Engineering
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