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Showing below up to 50 results in range #1,301 to #1,350.

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  1. Problem 1 -- Do I need to know exactly how a device works to use it as an example?
  2. Problem 1 -- What is the value of a?
  3. Problem 1 -- Why don't the units work?
  4. Problem 1 - How do we show that the output is Gaussian?
  5. Problem 1 - What are the values of alpha and beta?
  6. Problem 1 b and c -- Plot step and freq response
  7. Problem 1c - Ziegler-Nichols
  8. Problem 1d correction, hint
  9. Problem 2.c observer state plot
  10. Problem 2 (CDS101) Problem 1 (CDS110)
  11. Problem 2 -- How to deal with "d" term.
  12. Problem 2 -- Missing parameter
  13. Problem 2 -- Parameter values missing
  14. Problem 2 -- Saturation of signal u
  15. Problem 2 -- Use equations in book errata.
  16. Problem 2 -- What's the second element in the state of the system?
  17. Problem 2 -- What does "less negative" mean?
  18. Problem 2 - Actuator block
  19. Problem 2b -- Do I need to include the controller and feedback?
  20. Problem 2b -- Does this mean exactly or at least fifty percent?
  21. Problem 2b -- Value of kp
  22. Problem 3: How to deal with the saturation?
  23. Problem 3 (c) -- Errata
  24. Problem 3 -- Does "output get smaller as k gets larger" mean it gets more negative or more closer to zero?
  25. Problem 3 - Is the A matrix zero?
  26. Problem 3a -- Formula correction
  27. Problem 3d - Pay special attention to low Ti values
  28. Problem 4 -- Do I have to sum n i(t)?
  29. Problem 4 - How do we decompose H(w)?
  30. Problem 4a -- Change gain crossover to bandwith
  31. Problem 4c -- Settling time
  32. Problem 6 -- Missing length in 2nd set of equations
  33. Problems 3c and 4b - Plot Nyquist plots cooresponding to the loop transfer function
  34. Programmable Molecular Technology Initiative
  35. Projects
  36. Proof of concept continuous event logging in living cells
  37. Proportional Derivative (PD) Control on the Euclidean Group
  38. Protein degradation in a TX-TL cell-free expression system using ClpXP protease
  39. Protocols for Implementing an Escherichia coli Based TX-TL Cell-Free Expression System for Synthetic Biology
  40. Prototyping 1,4-butanediol (BDO) biosynthesis pathway in a cell-free transcription-translation (TX-TL) system
  41. Python-control/Developer assignments
  42. Python-control/Download
  43. Python-control/Example: Vertical takeoff and landing aircraft
  44. Quantification and Minimization of Crosstalk Sensitivity in Networks
  45. Quantifying Crosstalk in Biochemical Systems
  46. Quantifying Resource Competition and its Effects in the TX-TL System
  47. Quantitative Modeling of Integrase Dynamics Using a Novel Python Toolbox for Parameter Inference in Synthetic Biology
  48. Quantitative Performance Bounds in Biomolecular Circuits due to Temperature Uncertainty
  49. Quantitative characterization of random partitioning in the evolution of plasmid-encoded traits
  50. Quantized Consensus via Adaptive Stochastic Gossip Algorithm

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