Chemisemiddle example sentences

Related (5): chemistry, intermediate, median, halfway, midway.

"Chemisemiddle" Example Sentences

1. Chemistry is the study of matter and its properties, and it lies smack dab in the chemisemiddle of science.
2. In the middle of the periodic table, elements with similar properties are grouped together in the chemisemiddle.
3. The chemisemiddle of a molecule is often the site of the strongest chemical bonds.
4. Understanding the behaviour of atoms and molecules in the chemisemiddle of a reaction is key to developing new drugs.
5. The chemisemiddle of a protein is where its function is determined.
6. Carbon is one of the most important elements to life because it sits in the chemisemiddle of many important biomolecules.
7. The chemisemiddle of neurotransmitters, which carry signals between neurons, is where drugs that treat depression and anxiety often target.
8. Glycogen, a carbohydrate used to store energy in the body, has branching structures that occur in the chemisemiddle of the molecule.
9. Some chemical reactions can occur spontaneously if the reactants are placed together in the chemisemiddle of the reaction pathway.
10. The pH scale, which measures acidity, has 7 as its neutral point right in the chemisemiddle.
11. Understanding the chemisemiddle of metabolism can help people make better dietary choices.
12. In cellular respiration, which converts glucose into ATP, the chemisemiddle of the pathway involves the electron transport chain.
13. Chemistry teachers often focus on the chemisemiddle of a reaction, where the most interesting things occur.
14. Scientists interested in photosynthesis study the chemisemiddle of the process, where light energy is transformed into chemical energy.
15. The chemisemiddle of a battery involves the flow of ions between electrodes.
16. Lithium sits in the chemisemiddle of the periodic table, making it a useful element in batteries.
17. The chemisemiddle of a protein folding pathway can sometimes be bypassed by mutations, leading to diseases like Alzheimer's and Parkinson's.
18. In nucleophilic substitution reactions, the chemisemiddle of the reaction involves the attack of a nucleophile on a substrate.
19. The chemisemiddle of atmospheric ozone is important for protecting the planet from harmful UV radiation from the sun.
20. In electrochemical cells, the chemisemiddle of the process involves the exchange of electrons between electrodes.
21. There are many types of noncovalent interactions that can occur in the chemisemiddle of a biomolecule, like hydrogen bonding and van der Waals forces.
22. Chemical equilibria are often set up at the chemisemiddle of a reaction, where the rates of the forward and backward reactions become equal.
23. Polymer scientists study the chemisemiddle of polymerization reactions, where many small molecules combine to form long chains.
24. Understanding the chemisemiddle of color is important for developing dyes and pigments.
25. Medics who work with radiation therapy need to understand the chemisemiddle of chemical reactions involving free radicals.
26. In recombinant DNA technology, scientists use restriction enzymes in the chemisemiddle of DNA strands to create cuts that can be pasted back together in new configurations.
27. The chemisemiddle of a metal's reactivity series determines how easily it can be oxidized and reduced.
28. The permittivity of a material, or how easily it can be polarized by electric fields, is determined by the chemisemiddle of its molecular structure.
29. The chemisemiddle of phase transitions, like melting and boiling, is where energy is absorbed or released to change the state of matter.
30. Superacids, which have stronger acid strength than concentrated sulfuric acid, are in the chemisemiddle of scientific curiosity due to their extreme reactivity.

Common Phases

1. Heating the mixture until it boils;
2. Adding the reagents slowly;
3. Filtering the solution to remove impurities;
4. Measuring the pH of the solution;
5. Decanting the liquid carefully;
6. Allowing the reaction to reach equilibrium;
7. Distilling the product to obtain a purified compound;
8. Testing the solubility of the substance in various solvents;
9. Observing the color change of the mixture;
10. Adjusting the reaction conditions to achieve a desired outcome;
11. Separating the layers using a separating funnel;
12. Measuring the temperature of the reaction using a thermometer;
13. Adding a catalyst to speed up the reaction;
14. Stirring the mixture to ensure even distribution;
15. Calculating the yield of the product.

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