University Of Maryland - College Park
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All courses for University Of Maryland - College Park
- ENGL MISC 1
- ENME 361 vibration, controls and optimization ENME361 1
- ENME 382 Introduction to Materials Engineering ENME382 7
- ENME 400 Machine Design ENME400 2
- ENME 462 Vibrations, Controls and Optimization 2 ENME462 2
- ENME 462 Vibrations, Controls, and Optimization II ENME462 4
- ENME392: Statistical Methods for Product and Processes Development ENME392 1
- ENME445 Reliability Engineering ENME445 1
- ENME472 Integrated Product and Process Development ENME472 1
Latest notes & summaries University Of Maryland - College Park
Covers the following (all in AP style): 
- Business titles 
- Company name abbreviations 
- Second references 
- Numbers 
- Months 
- States 
- Percentages
Covers the following 
- Pronoun Disagreement 
- False Series 
- Lack of Parallelism 
- Subject-Verb Disagreement 
- Who versus Whom 
- Dangling Participles 
- Dangling Modifiers 
- That versus Which 
- I versus Me
These notes outline 61 punctuation rules and provides a brief refresher on types of clauses -- all of these punctuation rules are AP Style-friendly
This is an old homework/assignment from the course; Vibrations, Controls and Optimization 2. The topics covered in this homework include; transfer functions, close loop control system, block diagram, plant, controller, sensor, Laplace transformation, Laplace domain, differential equations, inverse Laplace transformation, Final Value theorem, system linearity, and time-varying system.
This is an old homework/assignment from the course; Vibrations, Controls and Optimization 2. The topics covered in this homework include; controller gain, percent overshoot, unit step input, steady-state value, block diagram reduction, unity feedback, settling time, steady-state error, damping ratio, and natural frequency,
This is an old homework/assignment from the course; Vibrations, Controls and Optimization 2. The topics covered in this homework include; negative feedback, unity feedback, close loop transfer function, control gain, system damping, settling time, damped frequency, percent overshoot, s plane, second-order system poles, peak response, system response, unit step input, damping ratio, natural frequency, and second-order pair of poles.
This is an old homework/assignment from the course; Vibrations, Controls and Optimization 2. The topics covered in this homework include; transfer functions, signal input, block diagram, reference input, control gain, disturbance, output function, close loop cruise control, and transfer function in the Laplace domain
This is an old homework/assignment from the course; Vibrations, Controls and Optimization 2. The topics covered in this homework include; close loop system, asymptotes, real axis intercepts, real axis intercepts, break-in points, break out points, root locus, stability, K value, zeroth row, unity feedback, control functions, Laplace domain, complex roots, RH method, compensator, control gain, characteristic equation, root locus standard form, transfer function, percent overshoot, settling time, ...
This is an old homework/assignment from the course; Vibrations, Controls and Optimization 2. The topics covered in this homework include; unity feedback, equivalent unity feedback, position error constant, velocity error constant, acceleration error constant, steady-state error, system type number, close loop stability, the value of the gain K, proportional integral compensator, step error, controller gain K, zeroth law, lead compensator, and Routh Hurwitz Criterion Method
This is an old written homework assignment from 2018 for the class, intro to materials engineering. The topics covered in this assignment are; mechanical properties, elongation, load elongation. initial diameter, gage length, tensile strength, percent elongation at failure, modulus of toughness, yield strength, modulus of resilience, modulus of elasticity, Poisson's ratio, shear modulus, shear stress, tensile stress, strain, plastic deformation, and stress versus strain curve