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Showing below up to 50 results in range #1,301 to #1,350.
- Problem 1 -- Do I need to know exactly how a device works to use it as an example?
- Problem 1 -- What is the value of a?
- Problem 1 -- Why don't the units work?
- Problem 1 - How do we show that the output is Gaussian?
- Problem 1 - What are the values of alpha and beta?
- Problem 1 b and c -- Plot step and freq response
- Problem 1c - Ziegler-Nichols
- Problem 1d correction, hint
- Problem 2.c observer state plot
- Problem 2 (CDS101) Problem 1 (CDS110)
- Problem 2 -- How to deal with "d" term.
- Problem 2 -- Missing parameter
- Problem 2 -- Parameter values missing
- Problem 2 -- Saturation of signal u
- Problem 2 -- Use equations in book errata.
- Problem 2 -- What's the second element in the state of the system?
- Problem 2 -- What does "less negative" mean?
- Problem 2 - Actuator block
- Problem 2b -- Do I need to include the controller and feedback?
- Problem 2b -- Does this mean exactly or at least fifty percent?
- Problem 2b -- Value of kp
- Problem 3: How to deal with the saturation?
- Problem 3 (c) -- Errata
- Problem 3 -- Does "output get smaller as k gets larger" mean it gets more negative or more closer to zero?
- Problem 3 - Is the A matrix zero?
- Problem 3a -- Formula correction
- Problem 3d - Pay special attention to low Ti values
- Problem 4 -- Do I have to sum n i(t)?
- Problem 4 - How do we decompose H(w)?
- Problem 4a -- Change gain crossover to bandwith
- Problem 4c -- Settling time
- Problem 6 -- Missing length in 2nd set of equations
- Problems 3c and 4b - Plot Nyquist plots cooresponding to the loop transfer function
- Programmable Molecular Technology Initiative
- Projects
- Proof of concept continuous event logging in living cells
- Proportional Derivative (PD) Control on the Euclidean Group
- Protein degradation in a TX-TL cell-free expression system using ClpXP protease
- Protocols for Implementing an Escherichia coli Based TX-TL Cell-Free Expression System for Synthetic Biology
- Prototyping 1,4-butanediol (BDO) biosynthesis pathway in a cell-free transcription-translation (TX-TL) system
- Python-control/Developer assignments
- Python-control/Download
- Python-control/Example: Vertical takeoff and landing aircraft
- Quantification and Minimization of Crosstalk Sensitivity in Networks
- Quantifying Crosstalk in Biochemical Systems
- Quantifying Resource Competition and its Effects in the TX-TL System
- Quantitative Modeling of Integrase Dynamics Using a Novel Python Toolbox for Parameter Inference in Synthetic Biology
- Quantitative Performance Bounds in Biomolecular Circuits due to Temperature Uncertainty
- Quantitative characterization of random partitioning in the evolution of plasmid-encoded traits
- Quantized Consensus via Adaptive Stochastic Gossip Algorithm