you get a mutation which could be good/bad/ or neutral, depends on the location
If the amino acids in an insulin molecule were assembled in a different order, it would result in a different sequence of amino acids. This would change the structure and function of the insulin molecule, potentially rendering it ineffective in regulating blood sugar levels. Incorrect assembly of amino acids could also result in a misfolded protein that may be dysfunctional or unable to perform its specific role in the body.
In genetic testing, a DNA molecule is labeled for identification using a process called DNA sequencing. This involves determining the order of nucleotides in the DNA molecule, which can then be used to uniquely identify it.
The molecule that stores the information about the order of amino acids in a protein is messenger RNA (mRNA). mRNA is transcribed from DNA and carries the genetic code from the nucleus to the ribosomes where protein synthesis occurs.
The order of bases in the second strand of a DNA molecule is complementary to the first strand, following the base pairing rules (A with T, C with G). So, if the first strand has the sequence ATCG, the second strand would have the sequence TAGC.
The correct order according to decreasing size of structures is organism > organ system > organ > tissue > cell > organelle > molecule.
in order for reactants to be changed into products, there needs to be a chemical change.
you would need to put food up your asss
Yes, a molecule with a higher bond order is generally more stable than a molecule with a lower bond order.
Calculating could be confusing and leading to an incorrect answer.
All of the carbons have to be attached to the maximum amount of hydrogens. So there can only be single bonds between the carbons in order for the molecules to be saturated.
You can decrease the bond order of a molecule like F2 or B2 by adding 1 electron to the neutral molecule.
To determine the average bond order in a molecule, you can calculate it by dividing the total number of bonds by the total number of bond sites in the molecule. Bond order represents the strength and length of a bond between two atoms in a molecule.
To determine the bond order of a molecule, you can count the total number of bonds between the atoms and divide by 2. The bond order indicates the strength of the bond between the atoms in the molecule.
Predictive software looks at trends and patterns in order to be able to predict what might happen in particular circumstances. Examples of this might be stocks and shares software.
The bond order in a molecule is related to the number of resonance structures it has. A higher bond order indicates greater stability and a more accurate representation of the molecule's structure. Resonance structures with higher bond orders contribute more to the overall stability of the molecule.
energy
Yes, bond order can be determined for molecules with four or more atoms. Bond order is a measure of the number of chemical bonds between a pair of atoms in a molecule and can help predict the molecule's stability and reactivity. It is calculated by taking the average number of bonds between two atoms in a molecule.