Schrodingers Cat
Well-known member
- Joined
- Oct 31, 2009
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- 161
Ok guys....science class time.....
A diffuser 'diffuses' light......so, yes, if you measure the light with and without a diffuser, the reading will be different....but not because the diffuser is blocking so much light.....
Lets assume a bulb puts out 100 lums of light....if you direct that light to a single point, you will measure 100 lums at a specific distance....(for reference, lums to be accurate must be stated at a given distance). Now measure the lums away from the point of light.
Now, take that same light and put in a diffuser. Measure the light again at the same points.....the measurement at where the original point was will be less....and the light at the off point position will be higher.
Why? Because we are 'diffusing' the light....in other words, spreading it around....you have the same amount of total light, only the intensity at a given point is less....
Unless you have a really crapy diffuser, I would be surprised if more than 5% of the light is being blocked.
Heat....the diffuser is NOT heating up because it is blocking the light....it is heating up because it is in close proximity to the bulb and is preventing heat from escaping....you would get the same result with a clear piece of glass.
Any questions students?
BTW....if your going to tell me I don't know what I'm talking about, then you need to include technical data and references to any rebutal.
exactly
if you integrate the output of a bare bulb and a diffused bulb, the total lumens will be ~the same...the diffuser will 'average out' the level
exactly
the heat is efficiency losses of the bulb, ballast, etc.
NOT the light rays radiating energy onto surfaces (at least in the spectrum we are discussing)
I will add for the spectrum being discussed a bezzled or 'frosty' diffuser is for all intents and purposes will appear 'clear' to our frequency of light...
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