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Data-driven Analysis and Computation Take at least two courses from: o o o o o o ECBM E4040: Neural networks and deep learning; EECS E4764: Internet of things – intelligent and connected systems; ELEN E4810: Digital Signal Processing ELEN E4903: Topic: Machine learning (or equivalent); EEOR E6616: Convex optimization; EECS E6893: Topic: Big data analytics Take at least one course from: o o o o ECBM E6040: Neural networks and deep learning research; EECS E6720: Bayesian models for machine learning; EECS E6765: Internet of things - systems and physical data analytics; EECS E6895: Topic: Advanced big data analytics Take a second course from #3, or one course from: o o o o o ECBM E4060: Introduction to Genomic Information Science and Technology ECBM E6070: Topics in Neuroscience and Deep Learning ELEN E6690: Topics in data-driven analysis and computation ELEN E6886: Sparse representation and high-dimensional geometry ELEN E9601: Seminar in data-driven analysis and computation Networking 1. One basic networking course from the following: o ELEN E6761: Computer communication networks I o CSEE W4119: Computer networks 2. One basic systems or analytical course from the following: o Systems courses: CSEE E4140: Networking laboratory COMS 4113: Distributed Systems COMS W4118: Operating systems I o Analytical courses: ELEN E6772: Topic: Network Algorithms ELEN E6950: Wireless and mobile networking ICSEE 6180: Modeling and Performance Evaluation 3. Three courses from the following list (but a course cannot be used to fulfill both this requirement and any of the above requirements). o ELEN E6488 Optical interconnects and interconnection networks o ELEN E6761: Computer communication networks I o ELEN E6767: Internet Econ, Eng & Society o ELEN E6770: Topic: Next Gen networks o ELEN E6772: Topic: Network Algorithms o ELEN E6775: Topic: Computer Networks: A Systems Approach o ELEN E6776: Topic: content distribution networks. o ELEN E6950: Wireless and mobile networking I o EEOR E4650: Convex optimization for EE o EEOR E6616: Convex optimization o CSEE E4140: Networking laboratory o CSEE E4951: Wireless and mobile networks and systems. o CSEE 6180: Modeling and Performance Evaluation o COMS W4180: Network security o COMS 4995: Internet Technology, Economics and Policy o COMS 6181: Advanced Internet Services o COMS E6998: Cloud Computing and Big Data o IEOR E6704: Queueing theory o IEOR E4106: Stochastic models o With adviser approval, other relevant advanced topic courses on networking topics from ELEN E677*, COMS 4995, COMS E6998, or other course numbers may be used to fulfill this requirement. 4. At least two of the four courses used to fulfill requirements 3 and 4 must be 6000-level ELEN, EECS, CSEE, or EEOR courses. Wireless and Mobile Communication 1. One basic circuits course such as: o ELEN E4312: Analog electric circuits; o ELEN E4314: Communication circuits; o ELEN E6314: Advanced communication circuits; o ELEN E6312: Advanced analog ICs. 2. Two communications or networking courses such as: o CSEE W4119: Computer networks; o ELEN E4702: Digital communications; o ELEN E4703: Wireless communications; o ELEN E6711: Stochastic signals and noise; o ELEN E4810: Digital signal processing; ELEN E6950: Wireless and mobile networking, I; ELEN E6951: Wireless and mobile networking, II; o ELEN E6761: Computer communication networks, I; o ELEN E6712: Communication theory; o ELEN E6713: Topics in communications; o ELEN E6717: Information theory; o ELEN E677x: Topics in telecommunication networks. 3. At least two additional approved courses in wireless communications or a related area. o o Integrated Circuit ands Systems 1. One digital course from: EECS E4321: Digital VLSI circuits or EECS E6321: Advanced digital electronic circuits. 2. One analog course from: o ELEN E4312: Analog electronic circuits; o ELEN E6312: Advanced analog integrated circuits; o ELEN E6316: Analog circuits and systems in VLSI; o ELEN E4314: Communication circuits; o ELEN E6314: Advanced communication circuits; o ELEN E6320: Millimeter-wave IC design. 3. Two additional courses such as: o Other courses from 2. and 3.; o ELEN E6350: VLSI design laboratory; o ELEN E6304: Topics in electronic circuits; o ELEN E6318: Microwave circuit design; o ELEN E9303: Seminar in electronic circuits. 4. At least one additional approved course in integrated circuits and systems or a related area. Microelectronic Devices 1. One basic course such as: ELEN E4301: Introduction to semiconductor devices or ELEN E4411: Fundamentals of photonics. 2. One advanced course such as: o ELEN E4193: Modern display science and technology; o ELEN E4944: Principles of device microfabrication; o ELEN E4503: Sensors, actuators, and electromechanical systems; o ELEN E6151: Surface physics and analysis of electronic materials; ELEN E6331: Principles of semiconductor physics, I; ELEN E6332: Principles of semiconductor physics, II; o ELEN E6333: Semiconductor device physics; o ELEN E6945: Nanoscale fabrication and devices. 3. At least two other approved courses in devices or a related area. Options also include courses outside EE such as: o APPH E4090: Nanotechnology; o APPH E4100: Quantum physics of matter; o APPH E4110: Modern optics; o CHAP E4120: Statistical mechanics; o APPH E4112: Laser physics; o APPH E4130: Physics of solar energy; o APPH E6081: Solid state physics, I; o APPH E6082: Solid state physics, II; o APPH E6091: Magnetism and magnetic materials; o APPH E6110: Laser interactions with matter; o MSAE E4202: Thermodynamics and reactions in solids; o MSAE E4206: Electronic and magnetic properties of solids; o MSAE E4207: Lattice vibrations and crystal defects; o MSAE E6120: Grain boundaries and interfaces; o MSAE E6220: Crystal physics; o MSAE E6229: Energy and particle beam processing of materials; o MSAE E6225: Techniques in X-ray and neutron diffraction. o o