Isomorph example sentences
iso·morph
noun biology crystallography
isomorph (noun) · isomorphs (plural noun)
- a substance or organism that exactly corresponds in form with another.
"Isomorph" Example Sentences
1. The newly discovered protein isomorph showed unusual resistance to heat.2. A mathematical isomorph of the problem proved easier to solve.
3. Determining if these two graphs are isomorphs requires careful analysis.
4. The crystal structure revealed an unexpected isomorph of the known enzyme.
5. This isomorph, while structurally similar, functions quite differently.
6. Finding the isomorph in the complex data set was a challenge.
7. Her work on group theory focused on finding isomorphs between abstract structures.
8. The isomorph presented a fascinating case study in comparative biology.
9. Are these two chemical compounds isomorphs, or simply similar?
10. The software identified a potential isomorph within the database.
11. Despite their differences, the two systems are functionally isomorphic.
12. The isomorph exhibited a unique spectral signature.
13. He hypothesized that the two species were isomorphs with divergent adaptations.
14. The research team sought to identify the underlying isomorphic relationships.
15. This isomorph represents a significant breakthrough in the field.
16. An isomorphic mapping between the two spaces was established.
17. The key to the puzzle lay in recognizing the isomorphic structures.
18. Identifying the isomorphs allowed for a more efficient algorithm.
19. The isomorphic properties of the molecules were critical to the reaction.
20. A different isomorph yielded significantly different results.
21. The isomorph's unusual stability intrigued the researchers.
22. This particular isomorph is far more reactive than its counterparts.
23. Understanding the isomorph requires advanced mathematical knowledge.
24. The newly synthesized isomorph displayed enhanced catalytic activity.
25. The program uses an isomorphic transformation to solve the problem.
26. They are isomorphs, but not identical in every aspect.
27. The isomorph was characterized using various analytical techniques.
28. What are the implications of finding this unexpected isomorph?
29. Several isomorphs were found to exist under different conditions.
30. The structural isomorph displayed remarkable functional diversity.
31. The isomorphic representation simplified the complex model.
32. This isomorph has a significantly higher melting point.
33. Finding an isomorphic solution was the crucial step.
34. The isomorph demonstrated superior performance in simulations.
35. The two graphs are isomorphic because a mapping exists.
36. Are these two networks isomorphic, or do they have different topologies?
37. The algorithm efficiently identifies isomorphs within large datasets.
38. This particular isomorph is exceptionally stable in acidic environments.
39. The analysis revealed a surprising isomorphic relationship.
40. The isomorph was synthesized using a novel method.
41. Further research is needed to understand this new isomorph.
42. The isomorphic mapping allows for efficient data transfer.
43. The team successfully characterized the novel isomorph.
44. The isomorph showed significant promise for therapeutic applications.
45. The isomorphic structures shared a common evolutionary ancestor.
46. Identifying all possible isomorphs is computationally expensive.
47. The presence of this isomorph suggests a previously unknown pathway.
48. This new isomorph challenges existing theoretical models.
49. The isomorphic transformation preserves key properties.
50. The discovery of this isomorph opens up new avenues of research.