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1. Double pole structures of $X_1(2900)$ as the $P$-wave $\bar{D}^*K^*$ resonances

2. Probing the pole origin of $X(3872)$ with the coupled-channel dynamics

3. Identification of the $G(3900)$ as the P-wave $D\bar{D}^*/\bar{D}D^*$ resonance

4. Cut structures and an observable singularity in the three-body threshold dynamics: the $T_{cc}^+$ case

5. Virtual states in the coupled-channel problems with an improved complex scaling method

6. $P_c$ states and their open-charm decays with the complex scaling method

7. $Z_{cs}$, $Z_c$ and $Z_b$ states under the complex scaling method

8. A comparison between the $P_c$ and $P_{cs}$ systems

9. Double-charm and hidden-charm hexaquark states under the complex scaling method

10. $T_{cc}^+$ and $X(3872)$ with the complex scaling method and $DD(\bar{D})\pi$ three-body effect

11. Double-charm tetraquark under the complex scaling method

12. Phase shifts of the light pseudoscalar meson and heavy meson scattering in heavy meson chiral perturbation theory

13. Light pseudoscalar meson and heavy meson scattering lengths to $\mathcal{O}(p^4)$ in heavy meson chiral perturbation theory

19. Identify the new state $Y(3872)$ as the P-wave $D\bar{D}^*/\bar{D}D^*$ resonance

26. Comparison between the <math><msubsup><mi>P</mi><mi>ψ</mi><mi>N</mi></msubsup></math> and <math><msubsup><mi>P</mi><mrow><mi>ψ</mi><mi>s</mi></mrow><mi>Λ</mi></msubsup></math> systems

31. Light pseudoscalar meson and heavy meson scattering lengths to <math><mi>O</mi><mo>(</mo><msup><mi>p</mi><mn>4</mn></msup><mo>)</mo></math> in heavy meson chiral perturbation theory

40. Time-space-resolved origami hierarchical electronics for ultrasensitive detection of physical and chemical stimuli

47. An intermolecular coupling between guest and host in the doped liquid crystal system

49. Facile reflux synthesis of polyethyleneimine‐capped fluorescent carbon dots for sequential bioassays toward Cu2+/H2S and its application for a logic system.

50. Label-free non-invasive fluorescent pattern discrimination of thiols and chiral recognition of cysteine enantiomers in biofluids using a bioinspired copolymer–Cu2+ hybrid sensor array regulated by pH.

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