Iron ions in Haemoglobin (aka Hemoglobin) ensure the cell is capable of carrying Oxygen around the body.
Well, the high concentration of hemoglobin is what gives our blood its red color. More specifically, the porphyrin functional group in the hemoglobin structure is what gives hemoglobin (and oxy-hemoglobin) its red hue.DO NOT LET ANYONE TELL YOU THAT HEMOGLOBIN IS RED BECAUSE OF THE IRON IN THE CENTER OF ITS STRUCTURE. THEY WOULD BE LYING TO YOU.
Llama hemoglobin has a higher affinity for oxygen because it has a unique structure that allows it to bind more tightly to oxygen molecules, enabling llamas to efficiently extract oxygen from the thin air at high altitudes where they live.
Hemoglobin in the red blood cells or erythrocrytes carry oxygen throughout the body.
because
Hemoglobin is important because it carries oxygen from the lungs to the rest of the body's tissues and organs. This process is crucial for energy production and overall health.
Because of the lattice structure of the cystal's molecules.
The change is important because there is no need for the effieciency of a fetal haemoglobin in a healthy adult.
Aromaticity in tetraphenylporphyrin is significant because it stabilizes the molecule's structure, making it more rigid and planar. This stability is important for its role in various chemical reactions and biological processes, such as in the function of hemoglobin and chlorophyll.
250 million X 4 = < 1 billion4- is how many o2 molecules a single HBn carries assuming they are full saturated(which they almost never are)Actually, one hemoglobin molecule can carry 4 molecules of oxygen. There are ~1 billion molecules of oxygen in each RED BLOOD CELL.
Resonance structures are important in understanding the electronic structure of molecules because they show different ways that electrons can be distributed within a molecule. This helps us understand the stability and reactivity of the molecule, as well as predict its properties and behavior.
no, because it their structure is same everywhere
it can form four covalent bondsit forms very strong bonds