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  1. Temporal Logic Specifications for Control System Design in Automotive Systems‏‎ (3 categories)
  2. VeHICaL: Verified Human Interfaces, Control, and Learning for Semi-Autonomous Systems‏‎ (3 categories)
  3. Genetic Circuits for Multi-Cellular Machines‏‎ (3 categories)
  4. Robust Multi-Layer Control Systems for Cooperative Cellular Behaviors‏‎ (3 categories)
  5. How do I create a FAQ for CDS 101/110?‏‎ (3 categories)
  6. Can you make the graphics bigger so that we can see them?‏‎ (3 categories)
  7. Safety-Critical Autonomy and Verification for Space Missions‏‎ (3 categories)
  8. Field-Programmable, Recombinase-Based Biomolecular Circuits‏‎ (3 categories)
  9. What should we do with unsused Mud Cards?‏‎ (2 categories)
  10. The additional material and schedule of cds210.‏‎ (2 categories)
  11. In slide 12, what is special about the red cycle as opposed to the blue curves?‏‎ (2 categories)
  12. Phaseplot‏‎ (2 categories)
  13. I keep getting mixed up on whether the diagonalized form of A is T^(-1)AT or TAT^(-1). Is there an easy way to remember the correct form?‏‎ (2 categories)
  14. In Problem 2b what does Mp mean?‏‎ (2 categories)
  15. Problem 2 (CDS101) Problem 1 (CDS110)‏‎ (2 categories)
  16. CDS 273, Spring 2006‏‎ (2 categories)
  17. .world file‏‎ (2 categories)
  18. Why does instability imply poor performance?‏‎ (2 categories)
  19. It's a bit unclear to me when you talk about "error" in PID control‏‎ (2 categories)
  20. What is a finite state machine and how does it relate to the traffic example?‏‎ (2 categories)
  21. HW4 Prob 4a Formula Correction‏‎ (2 categories)
  22. Engineering Durable Cell-Free Biological Capabilities for Advanced Sensing and Prototyping‏‎ (2 categories)
  23. Can you explain the axes of the Bode plot better?‏‎ (2 categories)
  24. What is the Nyquist contour for discrete systems?‏‎ (2 categories)
  25. HW 7 Prob 1 Comments‏‎ (2 categories)
  26. HW8 Problem 3‏‎ (2 categories)
  27. Is a high gain good in the speed control example?‏‎ (2 categories)
  28. In problem 1 (CDS 110)/problem 2 (CDS 101), download cruise-ctrl.mdl, NOT cruisedyn.m‏‎ (2 categories)
  29. Can a Lyapunov function be used to show/prove a system is unstable at an equilibrium point similar to the way it can be used to show asymp stability?‏‎ (2 categories)
  30. Do we have to consider complex states when trying to find equilibrium points analytically?‏‎ (2 categories)
  31. What is bandwidth? What is meant by 'not giving too much bandwidth if there is a RHP zero'?‏‎ (2 categories)
  32. HYCON-EECI, Spring 2009‏‎ (2 categories)
  33. How are stability, performance, and robustness different? They seem very similar‏‎ (2 categories)
  34. Molecular Programming Architectures, Abstractions, Algorithms, and Applications‏‎ (2 categories)
  35. MVWTfest January 2007‏‎ (2 categories)
  36. .cfg file‏‎ (2 categories)
  37. I did not understand robustness‏‎ (2 categories)
  38. Can the environment be considered a system state?‏‎ (2 categories)
  39. Where can I find a theoretical definition of dynamical system?‏‎ (2 categories)
  40. Was the equation for V(q) for the spring mass example missing a transpose?‏‎ (2 categories)
  41. HW4 Prob 4c Correction‏‎ (2 categories)
  42. Enabling Technologies for Cell-Silicon Interfacing‏‎ (2 categories)
  43. "HW6 Question 3"‏‎ (2 categories)
  44. HW 7 Problem 2‏‎ (2 categories)
  45. CDS 110b, Winter 2008‏‎ (2 categories)
  46. Is it true that feedback systems are in closed loop by definition?‏‎ (2 categories)
  47. How does feedback help the X-29 experimental aircraft?‏‎ (2 categories)
  48. What is the significance of having eigenvalues that are 0? I think I heard you say "in that case you don't know anything". Does that mean you cannot determine if the system is stable or asymptotically stable?‏‎ (2 categories)
  49. What is a plant in the context of this class?‏‎ (2 categories)
  50. What do kr and r represent?‏‎ (2 categories)

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