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DiffusioN is passive that is it does not require
DiffusioN is much slower in h2o
DiffusioN is a net particle flow caused by
DiffusioN is below zero
DiffusioN is a time
DiffusioN is the transport of a material or chemical by molecular motion
DiffusioN is described by the rate constant m
DiffusioN is the mixing
DiffusioN is very strong even at room temperature because of the high molecular velocities associated with the thermal energy of the
DiffusioN is the key to understanding how the lungs and blood system work
DiffusioN is called "arnold DiffusioN" because it was vi arnold who first realized that such DiffusioN was possible
DiffusioN is a physical property of molecules referring to their ability to move randomly in relation to their thermal energy
DiffusioN is passive that is it does not require cellular energy
DiffusioN is used to introduce dopants in controlled amounts into the semiconductor substrate
DiffusioN is not saturable; facilitated DiffusioN rates are limited by the number of functional membrane proteins and can be saturated
DiffusioN is not saturable; facilitated DiffusioN rates are limited by the number of functional membrane proteins and can be saturated*
DiffusioN is substantially more difficult than analysis of binding
DiffusioN is a net particle flow caused by nonuniform particle concentration and thermal motion
DiffusioN is readily seen by a change in concentration with time
DiffusioN is the movement of molecules from a region of high concentration to a region of low concentration by means of random molecular motion
DiffusioN is dependent on the cross section's area of the chosen vessel
DiffusioN is random movement of molecules but has a net direction toward regions of lower concentration in order to reach an equillibrium
DiffusioN is a spontanous process
DiffusioN is a general methodology of distributed deduction
DiffusioN is not affected by variations in the magnitude of the b field when e and b are parallel
DiffusioN is much faster in one direction
DiffusioN is primarily planar
DiffusioN is constructed such that it preserves certain fiducial mappings during the DiffusioN
DiffusioN is essential when solving the hydrodynamic equations
DiffusioN is a reflection of the fact that molecules
DiffusioN is the term used to describe the mixing of gases
DiffusioN is manfred schroeder
DiffusioN is important in many life processes
DiffusioN is about 2
DiffusioN is not a reasonable model
DiffusioN is heat
DiffusioN is
DiffusioN is high in the direction parallel to the boundary and negative in the
DiffusioN is an odorless haze that hangs in the air for extended periods of time
DiffusioN is simulated by successive displacements each of one
DiffusioN is significantly reduced and forward DiffusioN is enhanced
DiffusioN is the spread of rumors or gossip
DiffusioN is one
DiffusioN is that it tends to equalize concentrations of solute when there is a
DiffusioN is the process by which an innovation is communicated through certain channels over time among the members of a social system
DiffusioN is one limiting factor for the resolution of the detector
DiffusioN is a means of passive transport
DiffusioN is a process in which two or more chemicals diffuse over a surface and react with one another to produce stable patterns
DiffusioN is one of the fundamental processes by which material moves
DiffusioN is the process of making light diffuse
DiffusioN is a process by where solutes are transported under a concentration gradient
DiffusioN is greater; toward
DiffusioN is the movement of molecules from a region of high concentration into a region of lower concentration
DiffusioN is enhanced when the sn
DiffusioN is the term given to that class of spread where the spreading phenomena has a source and diffuses outwards into new areas
DiffusioN is the movement of molecules from a region of higher concentration to one of lower concentration
DiffusioN is applied in regions of large gradient
DiffusioN is an immediately
DiffusioN is fast for short distances and slow for
DiffusioN is modeled in three main areas by the doe
DiffusioN is described by a
DiffusioN is the transfer of mass via the motion of individual atoms or molecules
DiffusioN is important in these recombination lifetime studies
DiffusioN is negligible
DiffusioN is very efficient over
DiffusioN is important in the
DiffusioN is caused by particle interactions
DiffusioN is always down a concentration gradient
DiffusioN is detrimental to the quality of the machining
DiffusioN is indeed working
DiffusioN is a result of the fact that the
DiffusioN is the net movement down the concentration gradient
DiffusioN is also affected by
DiffusioN is involved
DiffusioN is a special type of communication in which the messages are about a new idea
DiffusioN is measured with DiffusioN gradients along certain directions in space
DiffusioN is an important phenomenon
DiffusioN is caused by random molecular motions and it is responsible for many dynamics observed in nature
DiffusioN is as follows
DiffusioN is used for temperature and moisture equations with DiffusioN coefficients visct and viscq
DiffusioN is exactly the opposite of rapid DiffusioN
DiffusioN is used to process the image
DiffusioN is the spreading out of one substance through another substance
DiffusioN is carried out at 900 o c in an oxygen ambient
DiffusioN is called upon to move co 2 from 100 meters
DiffusioN is the tendency for certain quantity of a medium to spread out evenly
DiffusioN is an unregulated process
DiffusioN is net movement of molecules from an area of higher concentration to one of lower concentration
DiffusioN is faster for smaller molecules and slower for larger molecules
DiffusioN is the all

Nickname DiffusioN


  • DiffusioN (Points: 1)
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