Welcome to Anagrammer Crossword Genius! Keep reading below to see if evanesce is an answer to any crossword puzzle or word game (Scrabble, Words With Friends etc). Scroll down to see all the info we have compiled on evanesce.
evanesce
Searching in Crosswords ...
The answer EVANESCE has 39 possible clue(s) in existing crosswords.
Searching in Word Games ...
The word EVANESCE is VALID in some board games. Check EVANESCE in word games in Scrabble, Words With Friends, see scores, anagrams etc.
Searching in Dictionaries ...
Definitions of evanesce in various dictionaries:
verb - disappear gradually
verb - to fade away
EVANESCE - In electromagnetics, an evanescent field, or evanescent wave, is an oscillating electric and/or magnetic field that does not propagate as an electr...
Word Research / Anagrams and more ...
Keep reading for additional results and analysis below.
Possible Crossword Clues |
---|
Fade away |
Dissolve |
Disappear like vapor |
Dissipate |
Vaporize |
Dissipate like vapor |
Disappear gradually |
Fade from sight |
Slowly fade away |
Slowly disappear |
Possible Dictionary Clues |
---|
To dissipate or disappear like vapor. See Synonyms at disappear. |
pass out of sight, memory, or existence. |
disappear gradually |
to disappear or be forgotten: |
Pass out of sight, memory, or existence. |
Evanesce might refer to |
---|
In electromagnetics, an Evanescent field, or evanescent wave, is an oscillating electric and/or magnetic field that does not propagate as an electromagnetic wave but whose energy is spatially concentrated in the vicinity of the source (oscillating charges and currents). Even when there in fact is an electromagnetic wave produced (e.g., by a transmitting antenna) one can still identify as an evanescent field the component of the electric or magnetic field that cannot be attributed to the propagating wave observed at a distance of many wavelengths (such as the far field of a transmitting antenna). * A hallmark of an evanescent field is that there is no net energy flow in that region. Since the net flow of electromagnetic energy is given by the average Poynting vector, that means that the Poynting vector in these regions, as averaged over a complete oscillation cycle, is zero. |