KnowraHysteresisLinked fromLinked fromThe 28 pages that link to Hysteresis, each with the reason it gives.All 28Related 25Compared with 3Phase transitionRelated: Metastability can make the observed transition depend on whether conditions are being raised or lowered.Negative feedbackRelated: Hysteresis can prevent a feedback controller from rapidly switching near its target.Ecological resilienceRelated: After a regime shift, removing the original disturbance may not restore the former ecosystem.FerromagnetismRelated: A ferromagnet’s magnetization lags behind changing fields, producing a hysteresis loop.Linear systemCompared with: History-dependent response commonly violates the assumptions of simple linear models.ThermostatRelated: Separate turn-on and turn-off temperatures prevent rapid cycling around the setpoint.MagnetizationRelated: Magnetization can lag behind changing fields, producing a history-dependent response.Hooke's lawCompared with: A hysteretic material does not follow one reversible force–deformation line.Path dependenceRelated: It describes persistence after a change in conditions, a possible result of path dependence.MetastabilityRelated: Metastable states can persist as conditions change, producing delayed transitions and hysteresis.Constitutive equationRelated: History-dependent constitutive behavior can produce distinct loading and unloading paths.Positive feedbackRelated: Positive feedback can make the threshold for reversing a change differ from the threshold for starting it.Rolling resistanceRelated: Cyclic deformation in a rolling tire dissipates energy through hysteresis.AgarRelated: Agar gels at a much lower temperature than the temperature at which they melt.Ecological thresholdRelated: It explains why returning conditions below a threshold may not restore the former ecosystem.Nonlinear dynamicsRelated: Nonlinear feedback can make a system respond differently depending on its path.Dielectric lossCompared with: Ferroelectric hysteresis dissipates field energy through switching, distinct from ordinary dielectric relaxation.Metastable stateRelated: Metastability can make transitions depend on the direction and history of changing conditions.Tipping pointRelated: It explains why reversing the original pressure may not restore the earlier state.PhysisorptionRelated: Capillary condensation during pore filling and emptying can make adsorption and desorption paths differ.Piezoelectric actuatorRelated: Piezoelectric displacement can lag behind voltage, complicating precise positioning.Abrupt climate changeRelated: A climate shift may persist even after its initial forcing weakens.Negative resistanceRelated: Some switching devices show hysteresis alongside negative-resistance-like transitions, but the properties are distinct.Rubber bandRelated: A rubber band returns less mechanical energy than was put into stretching it.Spontaneous magnetizationRelated: Magnetic hysteresis governs how spontaneous order persists as fields change.Tipping points in the climate systemRelated: Some climate shifts require much more cooling to reverse than warming to trigger.Mikhail BudykoRelated: Budyko’s model can require different thresholds for entering and leaving an ice-covered state.Set point (physiology)Related: Different response thresholds can make physiological control unlike correction toward one fixed target.
KnowraHysteresisLinked fromLinked fromThe 28 pages that link to Hysteresis, each with the reason it gives.All 28Related 25Compared with 3Phase transitionRelated: Metastability can make the observed transition depend on whether conditions are being raised or lowered.Negative feedbackRelated: Hysteresis can prevent a feedback controller from rapidly switching near its target.Ecological resilienceRelated: After a regime shift, removing the original disturbance may not restore the former ecosystem.FerromagnetismRelated: A ferromagnet’s magnetization lags behind changing fields, producing a hysteresis loop.Linear systemCompared with: History-dependent response commonly violates the assumptions of simple linear models.ThermostatRelated: Separate turn-on and turn-off temperatures prevent rapid cycling around the setpoint.MagnetizationRelated: Magnetization can lag behind changing fields, producing a history-dependent response.Hooke's lawCompared with: A hysteretic material does not follow one reversible force–deformation line.Path dependenceRelated: It describes persistence after a change in conditions, a possible result of path dependence.MetastabilityRelated: Metastable states can persist as conditions change, producing delayed transitions and hysteresis.Constitutive equationRelated: History-dependent constitutive behavior can produce distinct loading and unloading paths.Positive feedbackRelated: Positive feedback can make the threshold for reversing a change differ from the threshold for starting it.Rolling resistanceRelated: Cyclic deformation in a rolling tire dissipates energy through hysteresis.AgarRelated: Agar gels at a much lower temperature than the temperature at which they melt.Ecological thresholdRelated: It explains why returning conditions below a threshold may not restore the former ecosystem.Nonlinear dynamicsRelated: Nonlinear feedback can make a system respond differently depending on its path.Dielectric lossCompared with: Ferroelectric hysteresis dissipates field energy through switching, distinct from ordinary dielectric relaxation.Metastable stateRelated: Metastability can make transitions depend on the direction and history of changing conditions.Tipping pointRelated: It explains why reversing the original pressure may not restore the earlier state.PhysisorptionRelated: Capillary condensation during pore filling and emptying can make adsorption and desorption paths differ.Piezoelectric actuatorRelated: Piezoelectric displacement can lag behind voltage, complicating precise positioning.Abrupt climate changeRelated: A climate shift may persist even after its initial forcing weakens.Negative resistanceRelated: Some switching devices show hysteresis alongside negative-resistance-like transitions, but the properties are distinct.Rubber bandRelated: A rubber band returns less mechanical energy than was put into stretching it.Spontaneous magnetizationRelated: Magnetic hysteresis governs how spontaneous order persists as fields change.Tipping points in the climate systemRelated: Some climate shifts require much more cooling to reverse than warming to trigger.Mikhail BudykoRelated: Budyko’s model can require different thresholds for entering and leaving an ice-covered state.Set point (physiology)Related: Different response thresholds can make physiological control unlike correction toward one fixed target.