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SageMath
E = EllipticCurve("g1")
E.isogeny_class()
Elliptic curves in class 3136.g
sage: E.isogeny_class().curves
LMFDB label | Cremona label | Weierstrass coefficients | j-invariant | Discriminant | Torsion structure | Modular degree | Faltings height | Optimality |
---|---|---|---|---|---|---|---|---|
3136.g1 | 3136l2 | \([0, 1, 0, -14177, 642655]\) | \(238328\) | \(1322306994176\) | \([2]\) | \(7168\) | \(1.1805\) | |
3136.g2 | 3136l1 | \([0, 1, 0, -457, 19767]\) | \(-64\) | \(-165288374272\) | \([2]\) | \(3584\) | \(0.83391\) | \(\Gamma_0(N)\)-optimal |
Rank
sage: E.rank()
The elliptic curves in class 3136.g have rank \(0\).
Complex multiplication
The elliptic curves in class 3136.g do not have complex multiplication.Modular form 3136.2.a.g
sage: E.q_eigenform(10)
Isogeny matrix
sage: E.isogeny_class().matrix()
The \(i,j\) entry is the smallest degree of a cyclic isogeny between the \(i\)-th and \(j\)-th curve in the isogeny class, in the LMFDB numbering.
\(\left(\begin{array}{rr} 1 & 2 \\ 2 & 1 \end{array}\right)\)
Isogeny graph
sage: E.isogeny_graph().plot(edge_labels=True)
The vertices are labelled with LMFDB labels.