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139 results

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1. Ten simple rules for reading a scientific paper

2. Ten simple rules for developing good reading habits during graduate school and beyond.

3. A quick guide for using Microsoft OneNote as an electronic laboratory notebook.

4. Ten simple rules for measuring the impact of workshops.

5. Ten principles for machine-actionable data management plans.

6. Ten quick tips for sharing open genomic data.

7. Computational Thinking in Life Science Education.

8. Ten Simple Rules for Reproducible Computational Research.

9. Ten simple rules for writing statistical book reviews.

10. Eleven quick tips for finding research data.

11. Ten simple rules for successfully completing a graduate degree in Latin America.

12. Hands-on training about overfitting

13. Ten Simple Rules for Finishing Your PhD.

14. Modelling locust foraging: How and why food affects group formation

15. COVID-19 modeling and non-pharmaceutical interventions in an outpatient dialysis unit

16. Bioinformatics in Sudan: Status and challenges case study: The National University-Sudan

17. Bayes-optimal estimation of overlap between populations of fixed size

18. A numerical approach for a discrete Markov model for progressing drug resistance of cancer

19. Ten simple rules for helping newcomers become contributors to open projects.

20. Twelve quick tips for designing sound dynamical models for bioprocesses.

21. Think: Theory for Africa.

22. Problem-based learning in clinical bioinformatics education: Does it help to create communities of practice?

23. From trainees to trainers to instructors: Sustainably building a national capacity in bioinformatics training.

24. Fostering bioinformatics education through skill development of professors: Big Genomic Data Skills Training for Professors.

25. Establishing a computational biology flipped classroom.

26. Ten quick tips for biocuration.

27. Ten quick tips for using a Raspberry Pi.

28. Ten simple rules for providing a meaningful research experience to high school students.

29. Ten quick tips for creating an effective lesson.

30. Designing and running an advanced Bioinformatics and genome analyses course in Tunisia.

31. Strategies and opportunities for promoting bioinformatics in Zimbabwe.

32. Ten quick tips for getting the most scientific value out of numerical data.

33. Wrangling distributed computing for high-throughput environmental science: An introduction to HTCondor.

34. Hippocampal remapping is constrained by sparseness rather than capacity

35. Sustained Firing of Model Central Auditory Neurons Yields a Discriminative Spectro-temporal Representation for Natural Sounds

36. Education in computational biology today and tomorrow

37. Interactive implementations of thermodynamics-based RNA structure and RNA–RNA interaction prediction approaches for example-driven teaching.

38. Modeling the impact of changes in day-care contact patterns on the dynamics of varicella transmission in France between 1991 and 2015.

39. Cloud computing applications for biomedical science: A perspective.

40. Ten quick tips for teaching programming.

41. Eleven quick tips for running an interdisciplinary short course for new graduate students.

42. Eleven quick tips for architecting biomedical informatics workflows with cloud computing.

43. A FAIR guide for data providers to maximise sharing of human genomic data.

44. Meet-U: Educating through research immersion.

46. Assessing an effective undergraduate module teaching applied bioinformatics to biology students.

47. A cyber-linked undergraduate research experience in computational biomolecular structure prediction and design.

48. Learning infectious disease epidemiology in a modern framework.

49. Unmet needs for analyzing biological big data: A survey of 704 NSF principal investigators.

50. The eBioKit, a stand-alone educational platform for bioinformatics.