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Published by: Massachusetts Institute of Technology | Language: English
Published by: Massachusetts Institute of Technology | Language: English
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The basic objective of Unified Engineering is to give a solid understanding of the fundamental disciplines of aerospace engineering, as well as their interrelationships and applications. These disciplines are Materials and Structures (M); Computers and Programming (C); Fluid Mechanics (F); Thermodynamics (T); Propulsion (P); and Signals and
Author(s):
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Drela, Mark
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Hall, Steven
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Lagace, Paul A.
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Lundqvist, Ingrid Kristina
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Naeser, Gustaf
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Perry, Heidi
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Radovitzky, Raúl
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Waitz, Ian A.
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Young, Peter
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Craig, Jennifer L.
Tag(s):
- aeronautics and astronautics
- unified
- unified engineering
- aerospace
- cdio
- c-d-i-o
- conceive
- design
- implement
- operate
- team
- team-based
- discipline
- materials
- structures
- materials and structures
- computers
- programming
- computers and programming
- fluids
- fluid mechanics
- thermodynamics
- propulsion
- signals
- systems
- signals and systems
- systems problems
- fundamen
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Published by: Massachusetts Institute of Technology | Language: English
Published by: Massachusetts Institute of Technology | Language: English
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This course teaches the art of guessing results and solving problems without doing a proof or an exact calculation. Techniques include extreme-cases reasoning, dimensional analysis, successive approximation, discretization, generalization, and pictorial analysis. Applications include mental calculation, solid geometry, musical intervals, lo
Author(s):
Tag(s):
- mathematics
- extreme-cases reasoning
- dimensional analysis
- discretization
- drag
- fluid mechanics
- pendulum
- pictorial proofs
- analogy
- operators
- summation
- square roots
- logarithms
- musical intervals
- taking out the big part
- integration
- differentiation
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Published by: Massachusetts Institute of Technology | Language: English
Published by: Massachusetts Institute of Technology | Language: English
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This course emphasizes concepts and techniques for solving integral equations from an applied mathematics perspective. Material is selected from the following topics: Volterra and Fredholm equations, Fredholm theory, the Hilbert-Schmidt theorem; Wiener-Hopf Method; Wiener-Hopf Method and partial differential equations; the Hilbert Problem a
Author(s):
Tag(s):
- mathematics
- integral equations
- applied mathematics
- volterra equation
- fredholm equation
- fredholm theory
- hilbert-schmidt theorem
- wiener-hopf method
- partial differential equations
- hilbert problem
- ingular integral equations
- cauchy type
- inverse scattering transform
- group theory
- fluid mechanics
- solid mechanics
- acoustics
- quantum mechanics
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Published by: Massachusetts Institute of Technology | Language: English
Published by: Massachusetts Institute of Technology | Language: English
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This course forms an introduction to a selection of mathematical topics that are not covered in traditional mechanical engineering curricula, such as differential geometry, integral geometry, discrete computational geometry, graph theory, optimization techniques, calculus of variations and linear algebra. The topics covered in any particula
Author(s):
Tag(s):
- mechanical engineering
- calculus of variations
- linear algebra
- solid mechanics
- fluid mechanics
- energy methods
- microstructures of crystalline
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Published by: Massachusetts Institute of Technology | Language: English
Published by: Massachusetts Institute of Technology | Language: English
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This course introduces finite element methods for the analysis of solid, structural, fluid, field, and heat transfer problems. Steady-state, transient, and dynamic conditions are considered. Finite element methods and solution procedures for linear and nonlinear analyses are presented using largely physical arguments. The homework and a ter
Author(s):
Tag(s):
- mechanical engineering
- finite element methods
- solids
- structures
- fluid mechanics
- heat transfer
- equilibrium equations
- direct integration
- mode superposition
- eigensolution techniques
- frequencies
- mode shapes
- statics
- dynamics
- nonlinear systems
- wave propagation
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Published by: Massachusetts Institute of Technology | Language: English
Published by: Massachusetts Institute of Technology | Language: English
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This subject is designed for upper level undergraduates and graduate students as an introduction to politics and the policy process in modern Japan. The semester is divided into two parts. After a two-week general introduction to Japan and to the dominant approaches to the study of Japanese history, politics and society, we will begin explo
Author(s):
Tag(s):
- political science
- finite element methods
- solids
- structures
- fluid mechanics
- heat transfer
- equilibrium equations
- direct integration
- mode superposition
- eigensolution techniques
- frequencies
- mode shapes
- statics
- dynamics
- nonlinear systems
- wave propagation
- japan
- politics
- policy
- contemporary japan
- electoral politics
- interest group politics
- party
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