Changes

Jump to navigation Jump to search
4 bytes added ,  19:09, November 1, 2008
no edit summary
Line 3: Line 3:  
In physics, it is often represented in equations by the letter '''c,''' as in
 
In physics, it is often represented in equations by the letter '''c,''' as in
 
:λ = c / f
 
:λ = c / f
(wavelength of an electromagnetic wave in vacuum = the speed of light divided by the wave's frequency).
+
([[wavelength]] of an electromagnetic wave in vacuum = the speed of light divided by the wave's frequency).
    
The speed of light is about one foot per nanosecond. The late computer pioneer Admiral Grace Hopper was fond of keeping foot-long lengths of wire in her purse; she used them as props for her talks, referring to them as "nanoseconds," and using them to explain how the speed of light set limitations on [[computing]] systems (Although the rate of energy propagation in copper wire is significantly lower than the speed of light).<ref>Chiarella, Donald Joseph Gray (2002), ''Life in God's Management Corps,'' [http://books.google.com/books?vid=ISBN0595256430&id=VhM9jDwbywUC&pg=PA14&lpg=PA14&ots=ZXHirs9jQI&dq=grace+hopper+nanosecond&ie=ISO-8859-1&sig=XmbYtV2laxCMIKMLzR1eXHP1Eok p. 14]</ref>
 
The speed of light is about one foot per nanosecond. The late computer pioneer Admiral Grace Hopper was fond of keeping foot-long lengths of wire in her purse; she used them as props for her talks, referring to them as "nanoseconds," and using them to explain how the speed of light set limitations on [[computing]] systems (Although the rate of energy propagation in copper wire is significantly lower than the speed of light).<ref>Chiarella, Donald Joseph Gray (2002), ''Life in God's Management Corps,'' [http://books.google.com/books?vid=ISBN0595256430&id=VhM9jDwbywUC&pg=PA14&lpg=PA14&ots=ZXHirs9jQI&dq=grace+hopper+nanosecond&ie=ISO-8859-1&sig=XmbYtV2laxCMIKMLzR1eXHP1Eok p. 14]</ref>

Navigation menu