Paper Engineering and Interactive Play (ITPG-GT 2187)

The class will focus on the many overlooked aspects of paper, and how it can be used as a three-dimensional material. We will learn the disciplines of making Pop-Ups, Origami, Paper Crafting, and Visual Design. Using these methods as a starting point, students will build prototypes to explore new ways to tell stories, inform, interact, play with, engage, and challenge a younger audience. Most classes are hands – on. The rest, dedicated to criticism (including from children), analysis, and refinement, technical and conceptual. We will discuss how they could be mass produced and distributed. Students will build three prototypes, during the semester. From these, each student will select a favorite to fully develop as the final.

Interactive Telecommunications (Graduate)
2 credits – 6 Weeks

Sections (Spring 2024)


ITPG-GT 2187-000 (14760)01/25/2024 – 03/07/2024 Thu9:00 AM – 12:00 AM (Morning)at Brooklyn CampusInstructed by Ita, Sam

Computational Letterforms and Layout (ITPG-GT 2051)

Language is more than just words and meanings: it’s paper and ink, pixels and screens, fingertips on keyboards, voices speaking out loud. Language is, in a word, material. In this course, students will gain an understanding of how the material of language is represented digitally, and learn computational techniques for manipulating this material in order to create speculative technologies that challenge conventional reading and writing practices. Topics include asemic writing, concrete poetry, markup languages, keyboard layouts, interactive and generative typography, printing technologies and bots (alongside other forms of radical publishing). Students will complete a series of weekly readings and production-oriented assignments leading up to a final project. In addition to critique, sessions will feature lectures, class discussions and technical tutorials. Prerequisites: Introduction to Computational Media or equivalent programming experience.

Interactive Telecommunications (Graduate)
4 credits – 14 Weeks

Sections (Spring 2025)


ITPG-GT 2051-000 (11394)01/23/2025 – 05/01/2025 Thu6:00 PM – 8:00 PM (Evening)at Brooklyn CampusInstructed by Parrish, Allison

Introduction to Engineering and Design (EG-UY 1004)

Credits: 4
Duration: 15 Weeks
Dates: Tue
Credits: 4
Duration: 15 Weeks
Dates: Tue,Mon
Credits: 4
Duration: 15 Weeks
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Credits: 4
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Credits: 4
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Credits: 4
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Credits: 4
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Credits: 4
Duration: 15 Weeks
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Credits: 4
Duration: 15 Weeks
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Credits: 4
Duration: 15 Weeks
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Credits: 4
Duration: 15 Weeks
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Duration: 15 Weeks
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Credits: 4
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Credits: 4
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Credits: 4
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Credits: 4
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Credits: 4
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Credits: 4
Duration: 15 Weeks
Dates: Tue,Mon,Thu,Wed,Fri
Credits: 4
Duration: 15 Weeks
Dates: Tue,Mon,Thu,Wed,Fri

This course introduces selected aspects of the history, philosophy, methodology, tools, and contemporary topics in engineering. Also included are basic engineering experimentation, data analysis, and a team-design project. This course will provide an understanding of what professional engineers do. In this context, an emphasis will be placed on developing oral and written communication skills. EG1004 is a survey course that introduces students to NYU Tandon academic opportunities, professional and career development, and teamwork skills. Design and project management skills are developed throughout a semester-long design project. Disciplines within engineering will be introduced during lecture, and explored through practice in laboratory assignments.

General Engineering (Undergraduate)
4 credits – 15 Weeks

Digital Logic and State Machine Design (ECE-UY 2204)

Credits: 4
Duration: 15 Weeks
Dates: Thu
Credits: 4
Duration: 15 Weeks
Dates: Thu
Credits: 4
Duration: 15 Weeks
Dates: Thu,Fri
Credits: 4
Duration: 15 Weeks
Dates: Thu,Fri
Credits: 4
Duration: 15 Weeks
Dates: Thu,Fri,Mon,Wed

This course covers combinational and sequential digital circuits. Topics: Introduction to digital systems. Number systems and binary arithmetic. Switching algebra and logic design. Error detection and correction. Combinational integrated circuits, including adders. Timing hazards. Sequential circuits, flipflops, state diagrams and synchronous machine synthesis. Programmable Logic Devices, PLA, PAL and FPGA. Finite-state machine design. Memory elements. A grade of C or better is required of undergraduate computer-engineering majors. | Prerequisite for Brooklyn Students: CS-UY 1114 (C- or better) or CS-UY 1133 (C- or better) | Prerequisite for Abu Dhabi Students: CS-UH 1001 (C- or better) or ENGR-UH 1000 (C- or better) | Prerequisite for Shanghai Students: CSCI-SHU 101 (C- or better)

Elect. Engineering – ECE UGRD (Undergraduate)
4 credits – 15 Weeks

The Virtual Producer: Beats & Beatmaking (REMU-UT 1016)

This course will cover various professional Music Production Techniques & Strategies such as: Sampling (& Sample Chopping), Drum Programming / Drum Design, Synthesis & Sound Design, Music Theory (in the context of Music Production), MIDI Editing, as well as numerous Mixing Techniques. Over the course of the class, through the utilization and knowledge of these various skills, students will learn how to create Original Music Compositions & Productions. The primary DAW platform for the course is Ableton. While a Beatmaker / Composer / Producer must be well versed in the application of various software and hardware tools, as well as the many Production skills & techniques, they must also have artistic vision and creative efficacy. So while the course is about Music / Beat Construction and the tools involved, there will also be a strong emphasis on innovative envision, inventive mobility, and how to think / strategize like a Music Producer.

Undergraduate

3D Game Studio: Unreal (GAMES-UT 326)

3D Game Studio: Unreal is a practical course that introduces students to the methods, tools and principles used in developing three-dimensional games. This class builds on the foundations laid by the Intermediate Game Development course, but moves into the popular Unreal engine as a technical platform instead. Over the course of the semester, students learn all the technical and design fundamentals that are peculiar to the development of contemporary 3D games: geometry, light, materiality, the camera, use of 3D space, and ways of seeing. The focus in this class is on solo work, since it aims to build the specific set of skills that students will need to make 3D games in later classes. Only basic code skills are required, however.

Undergraduate

Nanoelectronic devices and circuits (ECE-UY 4513)

Concepts of nanoelectronic materials, devices, and circuits. Fundamental and practical limits on the performance and energy dissipation of nanoelectronic devices. Physical, electrical and optical properties of semiconductor materials and how they are used in circuits. Relation of the properties of semiconductors to the fundamental limits at various levels of design hierarchy. Connections between the physical design and circuit-level performance of nanoelectronic circuits. | Prerequisites: MA-UY 2114 and PH-UY 2023 and EE-UY 3114

Elect. Engineering – ECE UGRD (Undergraduate)
3 credits – 15 Weeks

Sections (Spring 2019)


ECE-UY 4513-000 (21245)01/28/2019 – 05/13/2019 Mon,Wed9:00 AM – 10:00 AM (Morning)at Brooklyn CampusInstructed by

Introduction to Very Large Scale Integrated Circuits (ECE-UY 3193)

Credits: 3
Duration: 15 Weeks
Dates: Fri
Credits: 3
Duration: 15 Weeks
Dates: Fri,Tue,Thu

The course offers an overview of integrated circuit-design process: planning, design, fabrication and testing; device physics: PN junction, MOSFET and Spice models; inverter static and dynamic behavior and power dissipation; interconnects: cross talk, variation and transistor sizing; logic gates and combinational logic networks; sequential machines and sequential system design; subsystem design: adders, multipliers, static memory (SRAM), dynamic memory (DRAM). Topics include floor planning, clock distribution, power distribution and signal integrity; Input/Output buffers, packaging and testing; IC design methodology and CAD tools; implementations: full custom, application-specific integrated circuit (ASIC), field programmable gate arrays (FPGA). The course provides foundations of VLSI design and custom VLSI design methodology and state-of-the-art CAD tools. | Prerequisites: CS-UY 2204 (C- or better) and EE-UY 3114. ABET competencies: a,c,e,k.

Elect. Engineering – ECE UGRD (Undergraduate)
3 credits – 15 Weeks

Machine Design (ME-UY 3233)

Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed

This course introduces students to fundamentals of machine elements, enabling them to employ this knowledge to design machines for various practical applications. The course begins with a brief review of stress, deformation and failure, followed by friction and wear. Subsequently, loaded columns, pressurized cylinders and shafts are presented. Bearings, gears, screws, springs, brakes, clutches and belts are discussed. The course ends with an introduction to MEMS, Micro-Electro Mechanical Systems. | Prerequisite for Brooklyn Students: ME-UY 3213 | Prerequisite for Abu Dhabi Students: ENGR-UH 3210

Mechanical Engineering (Undergraduate)
3 credits – 15 Weeks

COMPUTER AIDED DESIGN (ME-UY 2112)

The course covers sketching, drawing and computer-aided drafting. Topics: Projection theory—multiview, axonometric, oblique. Auxiliaries, sections, isometrics, dimensions, fasteners, detail and assembly drawings. Introduction to blueprint reading. Overview of CIM and CAD integration with other CIM concepts. A design project incorporates developed skills in visualization, drawing techniques, standards and CAD.

Mechanical Engineering (Undergraduate)
2 credits – 15 Weeks

Sections (Spring 2023)


ME-UY 2112-000 (15822)01/23/2023 – 05/08/2023 Mon9:00 AM – 10:00 AM (Morning)at Brooklyn CampusInstructed by Benbelkacem, Ghania


ME-UY 2112-000 (15906)01/23/2023 – 05/08/2023 Mon11:00 AM – 12:00 AM (Morning)at Brooklyn CampusInstructed by Benbelkacem, Ghania


ME-UY 2112-000 (15823)01/23/2023 – 05/08/2023 Wed10:00 AM – 10:00 AM (Morning)at Brooklyn CampusInstructed by Benbelkacem, Ghania

Computing in Civil Engineering (CE-UY 3013)

Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed

This course aims to introduce the modern computing methods, tools, and best practices for students in civil and urban engineering. The course uses Python as the programming language for solving a series of fundamental computational problems in civil and urban engineering, such as solving linear equations, data interpolation, curve fitting, root finding, numerical differentiation and integration, probability and statistics, linear programming and optimization. The course also introduces a series of generic computation tools and best practices for the students’ future study and research in computing applications in civil and urban engineering, including how to debug a program, visualize data, manage source codes, collaborative programming project management, etc. It aims at laying a solid foundation for civil and urban engineering students to better understand the modern programming workflow and utilize the computing tools. Students are first introduced with the fundamental concepts through the lecture, and then guided step-by-step via the in-class lab session in each weak. There will be multiple homework assignments and in-class quizzes for the evaluating the students’ performances. | Prerequisite: (CS-UY 1113 or CS-UY 1114) and MA-UY 2034 and MA-UY 2224 and Junior or higher standing.

Civil & Urban Engineering (Undergraduate)
3 credits – 15 Weeks

Design Project (CS-UY 4523)

Credits: 3
Duration: 15 Weeks
Dates: Tue,Thu
Credits: 3
Duration: 15 Weeks
Dates: Tue,Thu
Credits: 3
Duration: 15 Weeks
Dates: Tue,Thu

Students or several students work with a faculty member and/or graduate students on a current topic in computer science. Each term, a project course with a particular theme is offered by the Department of Computer and Information Science. A faculty member assigns individual or group projects. The project course is highly structured and supervised closely by faculty. Students are expected to use the design and project-management skills they learned in CS-UY 4513 Software Engineering. Alternatively, students may work with a faculty member on an individual project of mutual interest. A written report and oral presentation are required. | Prerequisite: CS-UY 4513 or CS-UY 3513.

Computer Science (Undergraduate)
3 credits – 15 Weeks

Problem Solving and Programming I (CS-UY 1113)

Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed
Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed
Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed
Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed,Fri
Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed,Fri
Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed,Fri
Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed,Fri
Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed,Fri
Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed,Fri

This course introduces problem solving and computer programming and is for undergraduate engineering students who do not have prior experience in programming in any language. The course covers fundamentals of computer programming and its underlying principles using the Python programming language. Concepts and methods introduced in the course are illustrated by examples from engineering and other disciplines. | Co-requisite: EX-UY 1; Anti-requisite: CS-UY 1114

Computer Science (Undergraduate)
3 credits – 15 Weeks

Numerical Analysis (MATH-UA 252)

In numerical analysis one explores how mathematical problems can be analyzed and solved with a computer. As such, numerical analysis has very broad applications in mathematics, physics, engineering, finance, and the life sciences. This course introduces the subject for mathematics majors. Theory and practical examples using Matlab are combined in the studying of topics ranging from simple root-finding procedures to differential equations and the finite element method.

Math (Undergraduate)
4 credits – 15 Weeks

Sections (Spring 2022)


MATH-UA 252-000 (8390)at Washington SquareInstructed by


MATH-UA 252-000 (8391)at Washington SquareInstructed by


MATH-UA 252-000 (9168)01/24/2022 – 05/09/2022 Tue,Thu9:00 AM – 10:00 AM (Morning)at Washington SquareInstructed by Stadler, Georg


MATH-UA 252-000 (9169)01/24/2022 – 05/09/2022 Fri11:00 AM – 12:00 AM (Morning)at Washington SquareInstructed by Toler, Evan


MATH-UA 252-000 (9405)01/24/2022 – 05/09/2022 Mon,Wed3:00 PM – 4:00 PM (Late afternoon)at Brooklyn CampusInstructed by Potter, Samuel


MATH-UA 252-000 (9406)01/24/2022 – 05/09/2022 Fri2:00 PM – 3:00 PM (Early afternoon)at Brooklyn CampusInstructed by Martinez Aguilar, Mariana

Theory of Numbers (MATH-UA 248)

Divisibility and prime numbers. Linear and quadratic congruences. The classical number-theoretic functions. Continued fractions. Diophantine equations.

Math (Undergraduate)
4 credits – 15 Weeks

Sections (Spring 2022)


MATH-UA 248-000 (10470)01/24/2022 – 05/09/2022 Mon,Wed2:00 PM – 3:00 PM (Early afternoon)at Brooklyn CampusInstructed by Staccone, Matteo


MATH-UA 248-000 (10471)01/24/2022 – 05/09/2022 Fri2:00 PM – 3:00 PM (Early afternoon)at Brooklyn CampusInstructed by Feuer, Benjamin

Theory of Probability (MATH-UA 233)

Introduction to the mathematical techniques of random phenomena occurring in the natural, physical, and social sciences. Axioms of mathematical probability, combinatorial analysis, binomial distribution, Poisson and normal approximation, random variables and probability distributions, generating functions, Markov chains, applications.

Math (Undergraduate)
4 credits – 15 Weeks

Sections (Spring 2022)


MATH-UA 233-000 (8695)01/24/2022 – 05/09/2022 Tue,Thu3:00 PM – 4:00 PM (Late afternoon)at Washington SquareInstructed by Tanzi, Matteo


MATH-UA 233-000 (8696)01/24/2022 – 05/09/2022 Fri3:00 PM – 4:00 PM (Late afternoon)at Washington SquareInstructed by Zhang, Linfeng


MATH-UA 233-000 (8885)01/24/2022 – 05/09/2022 Mon,Wed2:00 PM – 3:00 PM (Early afternoon)at Washington SquareInstructed by Leibovich, Matan


MATH-UA 233-000 (9078)01/24/2022 – 05/09/2022 Fri2:00 PM – 3:00 PM (Early afternoon)at Washington SquareInstructed by Wang, Liudeng


MATH-UA 233-000 (10636)01/24/2022 – 05/09/2022 Tue,Thu12:00 AM – 1:00 PM (Early afternoon)at Washington SquareInstructed by Dunlap, Alexander


MATH-UA 233-000 (10638)01/24/2022 – 05/09/2022 Fri9:00 AM – 10:00 AM (Morning)at Washington SquareInstructed by Wang, Liudeng


MATH-UA 233-000 (19808)01/24/2022 – 05/09/2022 Tue,Thu8:00 AM – 9:00 AM (Morning)at Brooklyn CampusInstructed by Stepp, Elizabeth


MATH-UA 233-000 (19809)01/24/2022 – 05/09/2022 Fri9:00 AM – 10:00 AM (Morning)at Brooklyn CampusInstructed by Zhang, Linfeng


MATH-UA 233-000 (26180)01/24/2022 – 05/09/2022 Fri2:00 PM – 3:00 PM (Early afternoon)at Washington SquareInstructed by Doshi, Jash Tejaskumar

Linear Algebra (MATH-UA 140)

Systems of linear equations. Gaussian elimination, matrices, determinants, and Cramer?s rule. Vectors, vector spaces, basis and dimension, linear transformations. Eigenvalues, eigenvectors, quadratic forms.

Math (Undergraduate)
4 credits – 15 Weeks

Sections (Spring 2022)


MATH-UA 140-000 (8381)01/24/2022 – 05/09/2022 Tue,Thu8:00 AM – 9:00 AM (Morning)at Washington SquareInstructed by Hammoud, Naima


MATH-UA 140-000 (10125)01/24/2022 – 05/09/2022 Fri9:00 AM – 10:00 AM (Morning)at Washington SquareInstructed by Qi, Sihan


MATH-UA 140-000 (10126)01/24/2022 – 05/09/2022 Fri8:00 AM – 9:00 AM (Morning)at Washington SquareInstructed by Qi, Sihan


MATH-UA 140-000 (10127)01/24/2022 – 05/09/2022 Fri3:00 PM – 4:00 PM (Late afternoon)at Washington SquareInstructed by Li, Jiarui


MATH-UA 140-000 (10128)01/24/2022 – 05/09/2022 Fri8:00 AM – 9:00 AM (Morning)at Washington SquareInstructed by Li, Jiarui


MATH-UA 140-000 (8986)01/24/2022 – 05/09/2022 Tue,Thu2:00 PM – 3:00 PM (Early afternoon)at Washington SquareInstructed by Sia, Charmaine


MATH-UA 140-000 (10129)01/24/2022 – 05/09/2022 Fri11:00 AM – 12:00 AM (Morning)at Washington SquareInstructed by Li, Xuenan


MATH-UA 140-000 (10130)01/24/2022 – 05/09/2022 Fri12:00 AM – 1:00 PM (Early afternoon)at Washington SquareInstructed by Li, Xuenan


MATH-UA 140-000 (10131)01/24/2022 – 05/09/2022 Fri8:00 AM – 9:00 AM (Morning)at Washington SquareInstructed by Kotwal, Adit


MATH-UA 140-000 (10132)01/24/2022 – 05/09/2022 Fri3:00 PM – 4:00 PM (Late afternoon)at Washington SquareInstructed by Kotwal, Adit


MATH-UA 140-000 (10120)01/24/2022 – 05/09/2022 Mon,Wed8:00 AM – 9:00 AM (Morning)at Washington SquareInstructed by Liu, Shizhu


MATH-UA 140-000 (10121)01/24/2022 – 05/09/2022 Fri9:00 AM – 10:00 AM (Morning)at Washington SquareInstructed by Yap, Ted


MATH-UA 140-000 (10122)01/24/2022 – 05/09/2022 Fri8:00 AM – 9:00 AM (Morning)at Washington SquareInstructed by Yap, Ted


MATH-UA 140-000 (10123)01/24/2022 – 05/09/2022 Fri3:00 PM – 4:00 PM (Late afternoon)at Washington SquareInstructed by Stempel, Jordan


MATH-UA 140-000 (10124)01/24/2022 – 05/09/2022 Fri11:00 AM – 12:00 AM (Morning)at Washington SquareInstructed by Frank, Natalie


MATH-UA 140-000 (9777)01/24/2022 – 05/09/2022 Mon,Wed9:00 AM – 10:00 AM (Morning)at Brooklyn CampusInstructed by Hammoud, Naima


MATH-UA 140-000 (10469)01/24/2022 – 05/09/2022 Fri9:00 AM – 10:00 AM (Morning)at Washington SquareInstructed by Denis, Evan


MATH-UA 140-000 (10468)01/24/2022 – 05/09/2022 Fri2:00 PM – 3:00 PM (Early afternoon)at Washington SquareInstructed by Harrington, Jeremiah

Financial Accounting (MG-UY 2204)

Credits: 4
Duration: 15 Weeks
Dates: Mon,Wed

This course provides a solid foundation in constructing and interpreting financial statements. Topics include: accounting terminology, financial-statement preparation and analysis, liquidity and credit-risk ratios, depreciation calculations, revenue recognition, accrued liabilities and asset valuation. Also covered are the effects of equity transactions, cash flows and various accounting methods on financial statements. |Anti-Requisite: FIN-UY 2103

Management (Undergraduate)
4 credits – 15 Weeks

Thermodynamics (ME-UY 3333)

Credits: 3
Duration: 15 Weeks
Dates: Mon,Wed

The course centers on properties of pure substances; concepts of work and heat; closed and open systems. Topics: Fundamental laws of thermodynamics. Carnot and Clasius statements of the 2nd law; entropy and entropy production; heat engines, refrigerators, heat pumps; efficiencies, coefficients of performance.| Prerequisite for Brooklyn Students: MA-UY 1124 | Prerequisite for Abu Dhabi Students: MATH-UH 1020

Mechanical Engineering (Undergraduate)
3 credits – 15 Weeks

Dynamics (ME-UY 3223)

The course explores three-dimensional treatment of the kinematics of particles and rigid bodies using various coordinate systems, Newton’s laws, work, energy, impulse, momentum, conservative force fields, impact and rotation and plane motion of rigid bodies. | Prerequisite for Brooklyn Students: ME-UY 2213 | Prerequisite for Abu Dhabi Students: ENGR-UH 2011

Mechanical Engineering (Undergraduate)
3 credits – 14 Weeks

Sections (Fall 2023)


ME-UY 3223-000 (14918)09/05/2023 – 12/15/2023 Tue,Thu9:00 AM – 10:00 AM (Morning)at Brooklyn CampusInstructed by


ME-UY 3223-000 (15064)09/05/2023 – 12/15/2023 Mon,Wed3:00 PM – 4:00 PM (Late afternoon)at Brooklyn CampusInstructed by