Got it!  Thanks.

On Saturday, November 29, 2014 1:23:15 PM UTC-8, Andreas Noack wrote:
>
> almost. g{T<:FloatingPoint}(a::Array{T}) if you want it restricted the 
> elements to subtypes of FloatingPoint.
>
> 2014-11-29 16:19 GMT-05:00 Petr Krysl <[email protected] <javascript:>>:
>
>> You mean like this:
>>
>> function g{T}(a::Array{T})
>>
>>   show(a)
>>
>> end
>>
>> g(A)
>>
>>
>> On Saturday, November 29, 2014 1:04:25 PM UTC-8, Andreas Noack wrote:
>>>
>>> You are welcome. It is explained better than I'm able to do here 
>>> http://julia.readthedocs.org/en/latest/manual/methods/#
>>> parametric-methods
>>>
>>> 2014-11-29 15:59 GMT-05:00 Petr Krysl <[email protected]>:
>>>
>>>> Thanks, I hear you guys.  These are the concepts, and Julia implements 
>>>> them: The two are concrete types, and hence cannot be derived from each 
>>>> other.
>>>>
>>>> But here it is: An array of floating-point numbers is an array of 
>>>> floating-point numbers. 
>>>>
>>>> So how would you write the function so that it is Julia-style and works 
>>>> with any floating-point number?
>>>>
>>>> Thanks a lot,
>>>>
>>>> Petr
>>>>
>>>>>
>>>>>
>>>
>

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