| Curve name | $X_{95d}$ | 
| Index | $48$ | 
| Level | $16$ | 
| Genus | $0$ | 
| Does the subgroup contain $-I$? | No | 
| Generating matrices | $
\left[ \begin{matrix} 7 & 7 \\ 0 & 1 \end{matrix}\right],
\left[ \begin{matrix} 11 & 0 \\ 0 & 3 \end{matrix}\right],
\left[ \begin{matrix} 5 & 15 \\ 12 & 3 \end{matrix}\right],
\left[ \begin{matrix} 11 & 0 \\ 12 & 3 \end{matrix}\right]$ | 
| Images in lower levels |  | 
| Meaning/Special name |  | 
| Chosen covering | $X_{95}$ | 
| Curves that $X_{95d}$ minimally covers |  | 
| Curves that minimally cover $X_{95d}$ |  | 
| Curves that minimally cover $X_{95d}$ and have infinitely many rational 
points. |  | 
| Model | $\mathbb{P}^{1}$, a universal elliptic curve over an appropriate base is 
given by
\[y^2 = x^3 + A(t)x + B(t), \text{ where}\]
\[A(t) = -108t^{10} + 24192t^{6} - 27648t^{2}\]
\[B(t) = 432t^{15} + 228096t^{11} - 3649536t^{7} - 1769472t^{3}\] | 
| Info about rational points | 
| Comments on finding rational points | None | 
| Elliptic curve whose $2$-adic image is the subgroup | $y^2 + xy = x^3 - x^2 + 40914x + 4239652$, with conductor $6066$ | 
| Generic density of odd order reductions | $9249/57344$ |