Difference between revisions of "File:Hilgercircle,T=hZ.png"

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(The time scale $\mathbb{T}=h\mathbb{Z}$ has constant graininess function $\mu \equiv h$. Hence if $z$ is a regressive constant, then $$1 + hz \neq 0$$ or $$z \neq -\dfrac{1}{h}.$$)
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Revision as of 20:46, 15 July 2014

The time scale $\mathbb{T}=h\mathbb{Z}$ has constant graininess function $\mu \equiv h$. Hence if $z$ is a regressive constant, then $$1 + hz \neq 0$$ or $$z \neq -\dfrac{1}{h}.$$

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current20:46, 15 July 2014Thumbnail for version as of 20:46, 15 July 2014436 × 475 (11 KB)Tom (talk | contribs)The time scale $\mathbb{T}=h\mathbb{Z}$ has constant graininess function $\mu \equiv h$. Hence if $z$ is a regressive constant, then $$1 + hz \neq 0$$ or $$z \neq -\dfrac{1}{h}.$$
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