What do circuits work in ???? .......

Scott ford
www.identityforge.com
from my IPAD

'Infinite wisdom through infinite means'


> On Dec 8, 2013, at 2:07 PM, "David L. Craig" <[email protected]> wrote:
> 
>> On 13Dec08:1352-0500, Scott Ford wrote:
>> 
>> Huh .....maybe you should back to computer basics
>> ...at machine level everything is binary
>> 
>> Scott ford
>> www.identityforge.com
>> from my IPAD
> 
> You, sir, are the one who needs to go back--specifically
> to zPOPs page 9-3:
> 
> : Hexadecimal-Floating-Point (HFP)
> : 
> : Hexadecimal-floating-point (HFP) operands have for-
> : mats which provide for exponents that specify pow-
> : ers of the radix 16 and significands that are
> : hexadecimal numbers. The exponent range is the
> : same for the short, long, and extended formats. The
> : results of most operations on HFP data are truncated
> : to fit into the target format, but there are instructions
> : available to round the result when converting to a
> : narrower format. For HFP operands, the implicit unit
> : digit of the significand is always zero. Since the value
> : of the significand and fraction are the same, HFP
> : operations are described in terms of the fraction, and
> : the term significand is not used.
> : 
> : Either normalized or unnormalized numbers may be
> : used as operands for any HFP or DFP operation,
> : where, for HFP, a normalized number is one having a
> : nonzero leftmost fraction digit, or, for DFP, a normal-
> : ized number is one having a nonzero leftmost signifi-
> : cand digit. Most HFP instructions generate
> : normalized results for greatest precision. HFP add
> : and subtract instructions that generate unnormalized
> : results are also available.
> -- 
> <not cent from sell>
> May the LORD God bless you exceedingly abundantly!
> 
> Dave_Craig______________________________________________
> "So the universe is not quite as you thought it was.
> You'd better rearrange your beliefs, then.
> Because you certainly can't rearrange the universe."
> __--from_Nightfall_by_Asimov/Silverberg_________________
> 
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