Linked from
The 51 pages that link to Feedback, each with the reason it gives.
AutomationRelated: Automated systems use feedback to adjust actions as conditions change.
Control theoryRelated: Feedback lets a controller correct deviations using measurements of the system’s output.
EmergenceRelated: Feedback can amplify or dampen local changes, shaping system-level patterns.
PhysiologyRelated: Feedback loops regulate physiological processes, including hormone release and body temperature.
CyberneticsRelated: Feedback is the central mechanism cybernetics uses to explain self-regulation.
HysteresisRelated: Feedback can create or reinforce multiple stable responses and switching thresholds.
RehearsalRelated: Notes and responses help performers revise choices between attempts.
AgencyRelated: Feedback lets agents adjust actions as their effects become apparent.
Signal transductionRelated: Feedback loops tune pathway duration, sensitivity, and stability.
Norbert WienerRelated: Feedback is the control principle Wiener used to connect organisms, machines, and social systems.
Agent-based modelRelated: Agents’ responses can alter conditions that shape later responses, producing reinforcing or balancing loops.
Nonlinear systemRelated: Feedback loops often generate the nonlinear responses modeled by these systems.
Frequency responseRelated: Frequency response helps determine whether feedback improves tracking or causes oscillation.
TeleologyRelated: Negative feedback can correct deviations from a target state and mimic purposive adjustment.
Gene regulatory networkRelated: Feedback among regulators can stabilize expression or generate dynamic responses.
Flow (psychology)Related: Direct signals let people adjust performance while the activity continues.
Systems theoryRelated: Feedback links a system's behavior to the conditions that shape its next state.
Analog signalRelated: Analog circuits use feedback to control gain, stability, and response.
ExpertiseRelated: Accurate feedback helps practitioners correct errors and refine performance.
Phase-locked loopNarrower topic: The loop continually feeds its measured phase error back to the oscillator.
AudienceRelated: Audience reactions can provide immediate feedback to a presenter.
GamificationRelated: Timely signals help participants judge whether their actions are moving them toward a goal.
AutomatonRelated: Feedback lets an automaton adjust its behavior to changing conditions rather than repeat a fixed sequence.
Interactive artRelated: Feedback lets an artwork change in response to the consequences of participants’ actions.
Lee de ForestRelated: De Forest’s Audion circuits could use feedback to produce sustained radio-frequency oscillations.
Nonlinear dynamicsRelated: Feedback can amplify or damp changes, shaping a nonlinear system's evolution.
Nyquist stability criterionNarrower topic: The criterion analyzes stability specifically in a feedback loop.
AutopilotNarrower topic: An autopilot repeatedly compares measured aircraft motion with its selected targets.
Gregory BatesonRelated: Bateson used feedback to describe how organisms and relationships regulate behavior.
Switch-mode power supplyRelated: Output sensing lets the controller correct voltage changes caused by load or input variation.
ElectronicsRelated: Feedback sets gain, stability, and response in many electronic circuits.
Harry NyquistNarrower topic: His stability criterion analyzes systems whose outputs feed back into their inputs.
Systems analysisRelated: Feedback can amplify or damp changes, shaping behavior that component-by-component inspection misses.
Generative artRelated: Feedback allows generated forms to evolve in response to their own previous states.
OrganicismRelated: Feedback loops connect an organism's parts into dynamically regulated wholes.
Complex systemRelated: Feedback loops amplify or dampen changes across interacting components.
Control systemRelated: Feedback lets the system compare actual behavior with its target and correct deviations.
Communication theoryRelated: Feedback makes communication interactive and allows correction or adaptation.
HolismRelated: Feedback shows how relations among parts can sustain or alter a whole's behavior.
MechatronicsRelated: Feedback lets a machine adjust its actions when measured behavior differs from its target.
Management control systemRelated: Managers use performance feedback to adjust plans, behavior, or resource use.
Electronic artRelated: Feedback can make sound, images, or movement evolve within an electronic artwork.
Negative impedance converterNarrower topic: The converter’s impedance transformation depends on a deliberately arranged feedback loop.
Nick LandBroader topic: Positive feedback helps explain how Land imagines technical and economic change intensifying itself.
Electronic circuitRelated: Feedback can stabilize, amplify, or generate circuit behavior.
Jay Wright ForresterNarrower topic: Feedback loops are the central structure in Forrester’s system-dynamics models.
Biological phenomenaRelated: Feedback loops can stabilize biological conditions or amplify change.
Body & organ systemsNarrower topic: Negative feedback lets organ systems correct departures from stable internal conditions.
Home (verb)Related: Feedback lets a homing system correct its course as conditions change.
Old mediaRelated: Letters, calls, and ratings provided slower, narrower responses than digital interaction.