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1. Special relativity and the Lorentz equations. Errors in Einstein’s 1905 paper.

3. 制浆造纸科学的方程范例:含义及其应用.

4. Ageing rate of paper insulation used in power transformers Part 1: Oil/paper system with low oxygen concentration.

5. Anaerobic Biohydrogen Fermentation from Paper Mill Sludge.

6. The mechanics of bending a strip of paper.

7. Paper Folding and Conic Sections.

10. (CMMSE2018 paper) Solving the random Pielou logistic equation with the random variable transformation technique: Theory and applications.

11. A Non-Gaussian Spatial Process Model for Opacity of Flocculated Paper.

12. Remarks on a paper by Gavrilov: Grad–Shafranov equations, steady solutions of the three dimensional incompressible Euler equations with compactly supported velocities, and applications.

13. A note on the paper 'Ultra discrete permanent and the consistency of max plus linear equations'.

14. Aging rate of grade 3 presspaper insulation used in power transformers.

15. Investigation of wax and paper materials for the fabrication of paper-based microfluidic devices.

17. The Influence of Mobility Rate on Spiral Waves in Spatial Rock-Paper-Scissors Games.

18. Mathematical Equation Identification and Solving System.

20. Can we predict citation counts of environmental modelling papers? Fourteen bibliographic and categorical variables predict less than 30% of the variability in citation counts.

21. Charge transport in thermally aged paper impregnated with natural ester oil.

23. Hidrotransporte de pulpa de papel en un canal abierto de sección circular.

24. An approach for economic assessment on oil-paper insulation diagnosis through accelerated aging experiments.

25. Comparing Rates of Probability Discounting Using Paper-Pencil or Online Versions of the Fill-in-the-Blank or Multiple-Choice Methods of Data Collection.

26. Analytical solutions of the space--time fractional Kadomtsev--Petviashvili equation using the (G'/G)-expansion method.

27. Discussion of "A Reformed Empirical Equation for the Discharge Coefficient of Free-Flowing Type-A Piano Key Weirs".

29. Correction to the paper: An energy dissipative spatial discretization for the regularized compressible Navier-Stokes-Cahn-Hilliard system of equations (in Math. Model. Anal., 25(1): 110-129, https://doi.org/10.3846/mma.2020.10577).

30. Diffusion of oxygen through a pulp and paper residue barrier: Discussion.

31. Comments on the paper "A conservative linear difference scheme for the 2D regularized long-wave equation", by Xiaofeng Wang, Weizhong Dai and Shuangbing Guo [Applied Mathematics and Computation, 342 (2019) 55-70].

32. A Remark on a Paper of Luca and Walsh.

33. The Original Michaelis Constant: Translation of the 1913 Michaelis-Menten Paper.

34. The Savage-Hutter theory: A system of partial differential equations for avalanche flows of snow, debris, and mud<FNR></FNR><FN>This paper is based on the second author's general lecture at the GAMM meeting in March 2003 at Padova but it only treats a small portion of that talk and concentrates on dense granular flow down mountain sides, in particular the numerical treatment of the governing equations. The reason is that reviews of avalanching flows have previously appeared [8, 10] and our focus will be the presentation of numerical subtleties and the results implied by them. </FN>

35. Initial value problems for fractional p-Laplacian equations with singularity.

36. Existence of solutions for a non-local equation on the Sierpiński gasket.

37. On the Controllability for the 1D-Heat Equation with Dirichlet Boundary condition, in the Presence of a Scale-Invariant Parameter.

38. Comments on the paper: a critical review of the applicability of Avrami fractional kinetic equation in adsorption-based water treatment studies.

39. The theory of Maxwell-Boltzmann-Helmholtz-Gouy about the double electric layer in disperse systems and its application to soil science (on the 100th anniversary of the paper published by Gouy).

40. A note on a paper by Erik Volz: SIR dynamics in random networks.

42. Exact solutions to the space-time fraction Whitham–Broer–Kaup equation.

43. A note on Nasr's and Wong's papers

44. OSCILLATION CRITERIA FOR SECOND-ORDER NONLINEAR DYNAMIC EQUATIONS ON TIME SCALES[The research described in this paper was supported by NSF grant 0072505.].

45. Binding of cadmium on raw paper pulp. Relationship between temperature and sorption kinetics.