The function similarity between two protein sequences is quantified by relating the term specificities of the two terms and the specificity of their common ancestor term. Using this function similarity metric, the relationship between sequence similarity and function similarity can be modeled.
To demonstrate the similarities and differences between two protein sequences, they can be compared. In order to reduce the Root Mean Square (RMS) discrepancy between the second protein and the first geometry, the second of the two proteins is rotated and translated. If switching out atom pairs would lower the RMS error, it is done. There are three ways to depict differences. The most straightforward is to create a list of the atoms whose positions differ by the most, however this is only partially useful because some protein components are very flexible, meaning that huge geometric changes may be followed by only very tiny changes in energy. Changes in bond lengths are a more significant form of variation. Considering the high force constants of covalent bonds, any substantial change in bond length.
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Answer:
head of the humerus, Acromial end of the clavicle
Explanation:
The shoulder is made up of three bones: the scapula, the clavicle and the humerus (upper arm bone). Two joints in the shoulder allow it to move: the acromioclavicular joint, where the highest point of the scapula (acromion) meets the clavicle at its acromial end (the sternal end of the clavicle is bounded to the sternon), and the glenohumeral joint. The scapula also bounds to the head of the humerus, it is, the distal superior end.
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5 Paramecium could be accommodated in this FOV.
Explanation:
FOV refers to the field of view of the microscope.
It is the maximum length or area of specimen you can observe in a single view.
If a single paramecium occupies 20 % of the Entire FOV.
Then the number of paramecium that will be accomodate 100% of FOV will be given by ,
Paramecium.
which is equal to 5.
Answer:
Explanation:
A typical leaf has three main layers. ... Some arid-climate plants are able to conserve water because of their reduced leaf size. Less leaf surface area results in reduced water loss through the epidermis. Small leaves have fewer stomata than larger leaves, and that adaptation also reduces water los