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Modular Units

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Modular Units
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28 628,00 JPY
Typical price4 173,43 PLN
Lowest (90 days)179,99 PLN
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Last updated6 zile în urmă
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2026-08-08 2026-08-15
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2026-08-08179,99
2026-08-15207,99
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SP SpringerNatureLink Shop INT 28 599,00 JPY 29,00 JPY 28 628,00 JPY Disponibil 2 ore în urmă View offer
SP Springer Nature Author 28 599,00 JPY free 28 599,00 JPY Disponibil 6 zile în urmă View offer
SP SpringerNatureLink Shop INT 199,99 USD 15,00 USD 214,99 USD Disponibil 4 ore în urmă View offer
SP SpringerNatureLink Shop INT 219,99 USD free 219,99 USD Disponibil 3 ore în urmă View offer
SP SpringerNatureLink Shop INT 219,99 USD 25,00 USD 244,99 USD Disponibil 3 ore în urmă View offer
SP SpringerNatureLink Shop INT 236,00 EUR free 236,00 EUR Disponibil 3 ore în urmă View offer

Prețurile și disponibilitatea se pot modifica. Ultima actualizare: 08.08.2026 23:38.

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In the present book, we have put together the basic theory of the units and cuspidal divisor class group in the modular function fields, developed over the past few years. Let i) be the upper half plane, and N a positive integer. Let r(N) be the subgroup of SL (Z) consisting of those matrices == 1 mod N. Then r(N)\i) 2 is complex analytic isomorphic to an affine curve YeN), whose compactifi­ cation is called the modular curve X(N). The affine ring of regular functions on yeN) over C is the integral closure of C[j] in the function field of X(N) over C. Here j is the classical modular function. However, for arithmetic applications, one considers the curve as defined over the cyclotomic field Q(JlN) of N-th roots of unity, and one takes the integral closure either of Q[j] or Z[j], depending on how much arithmetic one wants to throw in. The units in these rings consist of those modular functions which have no zeros or poles in the upper half plane. The points of X(N) which lie at infinity,that is which do not correspond to points on the above affine set, are called the cusps, because of the way they look in a fundamental domain in the upper half plane. They generate a subgroup of the divisor class group, which turns out to be finite, and is called the cuspidal divisor class group.

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