| Year | Rank | Type | Title / Venue / Authors |
|---|---|---|---|
| 2026 | J | jnl |
CoRR
|
| 2026 | J | jnl |
CoRR
|
| 2026 | J | jnl |
CoRR
|
| 2026 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
Simul. Model. Pract. Theory
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2025 | — | conf |
ML-DE
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
Projective integration methods in the Runge-Kutta framework and the extension to adaptivity in time.
J. Comput. Appl. Math.
|
| 2025 | J | jnl |
CoRR
|
| 2025 | J | jnl |
CoRR
|
| 2024 | J | jnl |
Adv. Comput. Math.
|
| 2024 | J | jnl |
CoRR
|
| 2023 | J | jnl |
J. Sci. Comput.
|
| 2023 | J | jnl |
J. Comput. Phys.
|
| 2023 | J | jnl |
CoRR
|
| 2023 | J | jnl |
CoRR
|
| 2023 | J | jnl |
CoRR
|
| 2023 | J | jnl |
CoRR
|
| 2022 | J | jnl |
CoRR
|
| 2022 | J | jnl |
Projective Integration Methods in the Runge-Kutta Framework and the Extension to Adaptivity in Time.
CoRR
|
| 2022 | J | jnl |
Axioms
|
| 2022 | J | jnl |
Appl. Math. Comput.
|
| 2021 | J | jnl |
Appl. Math. Comput.
|
| 2021 | J | jnl |
CoRR
|
| 2020 | J | jnl |
J. Sci. Comput.
|
| 2020 | J | jnl |
CoRR
|
| 2020 | — | conf |
ICCS (6)
|
| 2020 | J | jnl |
CoRR
|
| 2020 | J | jnl |
CoRR
|
| 2020 | J | jnl |
CoRR
|
| 2018 | J | jnl |
Multiscale Model. Simul.
|