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<title> BOUNDARIES AND LIMITS FOR REGULATIONS </title>
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<h3>
 BOUNDARIES AND LIMITS FOR REGULATIONS  
</h3>








<p> <div id="legendary" name="legendary" style=" position:relative;  
    top:0; left:0;   "  width="282" height="400" >
    POWER LIMITED CLASSES

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   lethal                        32 to 250 V
     1 kOhm    100 V   100 mA
     0.1 MOhm  10 kV   100 mA
   perception
     DC 5 to 10 mA
     AC 1 to 10 mA  none above 15-20 kHz
   fibrillation  AC 60 mA
                 DC 300 to 500 mA

   AC or DC ?
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<pre>

<p  class="blue" > DC Class II 60 V 100 W 8 A 
</p>
<p  class="green" > DC Class II 60 V 100 W 5 A 250 W  1 kW
</p>
<p  class="cyan" > DC Class III 100 V 150 W 250 W  1 kW
</p>

<p class="red"> AC Class II nameplate  30 V 8 A
</p>
<p class="orange"> AC Class II current  30 V 5 A
</p>
<p class="magenta"> AC Class III power  100 V 150 W  250 W
</p>

<p class="chartreuse"> intrinsic  1.3 W   simple  25 mW
</p>
<p class="olive"> The threshold of hearing is defined as 0 db =
10<sup>-16</sup>  watts / square centimeter.
</p>
<p class="navy"> Batteries: 12 V automobile, two No.6 ignition, AA cell;
the discharging and charging curves for the 12 V battery are shown; it is
assumed that the internal resistance of the charger is the same as the
internal resistance of the battery; higher charging voltages cause the
current curve to approach the characteristic impedance asymoptotically.
The efficiencies of the charging and discharging are shown as straight
lines on the log-log plot with 100% positioned at 1 A on the current scale.
This illustrates the higher efficiencies achieved with larger batteries
and lower currents; the influence of the increasing price of energy and
the limits of solar and wind generation are thus evident.
</p>
<p class="mediumblue"> ...
</p>

<p class="dark"> 15 standard colors for maps
http://en.wikipedia.org/wiki/Wikipedia:WikiProject_Maps#Map_colors
</p>

<p class="teal">
The solar constant is 1366 W/sqm; for the whole earth it is 1.740&#x2219;10<sup>17</sup> W.
One horsepower is 746 watts.  Compressed air at 1 cubic ft per minute at
100 lb per square inch is equivalent to 24/55= 0.43636 horsepower or
325.4 Watts.  100,000 BTU/hr or 1 therm/hr is 29.30 kW and 1 ton of ice
melting in one day is 3.516 kW.
</p>
<!--   10,000 BTU/hr = 2.931 kW     3.413 BTU/hr = 1 W  =1/0.2929
                       2.930        3.412
       12,000 BTU/hr is 1 ton  =  3.516 kW    log(3516.)=3.5460
       therm  = 100,000 BTU
       therm/hr  = 29.30 kW    log(29.30*1000)=4.4669
       calorie = 4.186 Joule
              -->
<p class="mediumblue"> &#169;2008 Wm.C.Corwin  www.ConcurrentInverse.com
</p>

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