Glyceraldehyde example sentences

Related (12): aldehyde, glycerol, ketone, aldose, carbohydrate, triose, sugar, monosaccharide, polysaccharide, glycolysis, gluconeogenesis, glyceraldehyde

"Glyceraldehyde" Example Sentences

1. Glyceraldehyde is an aldose sugar that is a component of the glycolysis metabolic pathway.
2. Glyceraldehyde is a three carbon aldehyde.
3. The oxidation of glyceraldehyde produces glyceric acid.
4. Glyceraldehyde is a common starting point for organic synthesis.
5. Glyceraldehyde is used in the production of polyols.
6. Glyceraldehyde is a key intermediate in the formation of glycerol.
7. Glyceraldehyde can be oxidized to glyceric acid or reduced to glycerol.
8. Glyceraldehyde is the simplest of the aldoses.
9. Glyceraldehyde can be converted to dihydroxyacetone.
10. The reaction of glyceraldehyde with formaldehyde produces glycerol.
11. Glyceraldehyde is a common starting material for organic synthesis.
12. Glyceraldehyde can be converted to glyceraldehyde 3-phosphate.
13. The oxidation of glyceraldehyde produces dihydroxyacetone.
14. Glyceraldehyde is a component of the Calvin cycle.
15. Glyceraldehyde can be reduced to glycerol by hydrogenation.
16. Glyceraldehyde is an aldose sugar found in the glycolysis pathway.
17. The oxidation of glyceraldehyde yields dihydroxyacetone.
18. Glyceraldehyde is an important intermediate in the metabolism of carbohydrates.
19. Glyceraldehyde is a precursor for the synthesis of other aldoses.
20. Glyceraldehyde can be reduced to glycerol by catalytic hydrogenation.
21. The reaction of glyceraldehyde with acetaldehyde yields glycerol.
22. Glyceraldehyde is a three-carbon aldehyde found in the glycolysis pathway.
23. The reduction of glyceraldehyde yields glycerol and other polyols.
24. Glyceraldehyde can be oxidized to glyceric acid or reduced to glycerol and other polyols.
25. Glyceraldehyde is the simplest of the aldoses and is found in the glycolysis pathway.
26. Glyceraldehyde can be oxidized to dihydroxyacetone or reduced to glycerol.
27. The oxidation of glyceraldehyde yields glyceric acid or dihydroxyacetone.
28. Glyceraldehyde is a common starting point for organic synthesis and is found in the glycolysis pathway.
29. The reduction of glyceraldehyde produces glycerol and other polyols.
30. Glyceraldehyde is an aldose sugar found in the glycolysis metabolic pathway and is a component of the Calvin cycle.
31. The reaction of glyceraldehyde with formaldehyde yields glycerol.
32. Glyceraldehyde can be converted to glyceraldehyde 3-phosphate or dihydroxyacetone.
33. Glyceraldehyde can be converted to other aldoses for use in organic synthesis.
34. Glyceraldehyde is a key intermediate in the formation of glycerol and other polyols.
35. The oxidation of glyceraldehyde yields glyceric acid or dihydroxyacetone, which can be used in organic synthesis.
36. Glyceraldehyde is a three-carbon aldehyde that is a component of the glycolysis metabolic pathway.
37. The oxidation of glyceraldehyde can be used to produce glyceric acid or dihydroxyacetone.
38. Glyceraldehyde is a common starting material for organic synthesis and is a key intermediate in the formation of glycerol.
39. The reaction of glyceraldehyde with acetaldehyde produces glycerol, which is used in the production of polyols.
40. Glyceraldehyde is an aldose sugar that can be oxidized to glyceric acid or reduced to glycerol and other polyols.

Common Phases

Glycolysis; Oxidation of Glyceraldehyde; Conversion to Pyruvate; Regeneration of NAD+

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