Lightening up, unwinding, loosening up, kicking back, easing off, and a time out.
English Rules 2: Physics
The relaxation time is related to the mean collision time through the expression: relaxation time = mean collision time / (1 - f), where f is the fraction of collisions that result in thermalization. The mean collision time represents the average time between particle collisions, while the relaxation time is the time it takes for a system to reach thermal equilibrium after a perturbation.
Momentum
average time, an electron spends between two successive collision, is called relaxation time and time spent by electron at point of contact, is called collision time
In Anatomy and Physiology, there is no term for this other than relation or rest.
Contraction and relaxation are two opposites. They work together when the muscles of the body work. A good example is the contraction and relaxation of the heart. The contraction allows blood to be distributed to the parts of the body while the relaxation allows the heart to be oxygenized and therefore fill up blood to be distributed to the whole body.
An abstract word for time for relaxation is "repose." It conveys a sense of rest and tranquility, emphasizing a state of being at ease and free from stress. Repose encompasses both physical and mental relaxation, allowing individuals to rejuvenate and recharge.
Rest and Relaxation or, Rest and Recreation.
Drift velocity refers to a particle's average velocity being influenced by its electric field. Momentum relaxation time is the time required for the inertial momentum of a particle to become negligible.
no idea,help me as well
Leisure means time available for ease and relaxation.
To ensure a smooth transition from work to relaxation, you can implement strategies such as setting boundaries between work and personal time, creating a designated relaxation space, practicing mindfulness or meditation, engaging in physical activity, and establishing a routine that includes time for relaxation activities. These strategies can help you disconnect from work and unwind effectively.
Relaxation time in dielectrics is a critical parameter that characterizes how quickly a material can respond to an external electric field and return to its original state once the field is removed. It is significant because it influences the dielectric properties, such as permittivity and polarization, and affects the performance of dielectric materials in applications like capacitors and insulators. A shorter relaxation time indicates a faster response, which is essential for high-frequency applications, while longer relaxation times may lead to energy losses and decreased efficiency. Understanding relaxation time helps in designing materials for specific electrical and electronic applications.