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{{ParTLPwrapper-en|{{ParTLP|6.02}} And thus we come to numbers: I define | {{ParTLPwrapper-en|{{ParTLP|6.02}} And thus we come to numbers: I define | ||
{{p center|<math>x = \Omega^{0 \prime} x \text{ Def.}</math> and<br> | |||
<math>\Omega^{\prime} \Omega^{ \nu \prime} x = \Omega^{ \nu + 1 \prime} x \text{ Def.}</math> | <math>\Omega^{\prime} \Omega^{ \nu \prime} x = \Omega^{ \nu + 1 \prime} x \text{ Def.}</math>}} | ||
According, then, to these symbolic rules we write the series <math>x, \Omega ' x, \Omega ' \Omega ' x, \Omega ' \Omega ' \Omega ' x, .....</math> | According, then, to these symbolic rules we write the series <math>x, \Omega ' x, \Omega ' \Omega ' x, \Omega ' \Omega ' \Omega ' x, .....</math> | ||
{{p center|as: <math>\Omega^{0 \prime} x, \Omega^{0+1 \prime} x, \Omega^{0 + 1 + 1 \prime} x, \Omega^{0 + 1 + 1 + 1 \prime} x, .....</math>}} | |||
Therefore I write in place of "<math>[ x, \xi, \Omega ' \xi ]</math>", | Therefore I write in place of "<math>[ x, \xi, \Omega ' \xi ]</math>", | ||
{{p center|"<math>[ \Omega^{0 \prime} x, \Omega^{ \nu \prime} x, \Omega^{ \nu + 1 \prime} x ]</math>".}} | |||
And I define: | And I define: |