Showing posts with label carbon value. Show all posts
Showing posts with label carbon value. Show all posts

Tuesday, 27 December 2022

Internal Carbon of Chemical Molecules Play in Intermolecular Association Favoring Stability| Chapter 6 | Research Aspects in Chemical and Materials Sciences Vol. 5

 Internal element of all bio molecules interactively plays a critical role in friendship and function but little is known in the literature as well. Other parameters like coexistence and so forth needed expected studied thoroughly for continuation and analysis. Best way to handle this new developments wanted to be analyzed being the reason for research where in chemicals maybe crucial in design and endurance where amino acids may have influence in protein research. Additional understanding must be adequate enough to deal with future science development for life of nature. Here we have developed a idea for future technology that can coexist in type. Analysis of minimum component molecular structure is taken here for study and so forth. Analysis proves that ability is sufficient to explain all artificial phenomena of boiling and point at which something melts in chemical structure of interest. Adequacy is the key point to deal with weird values associated with sure compounds and all. Understandably the within one is going to be important for any such change and all. Analysis specifies enough insight into the existence and so forth. Probably dealing can be reached to some system of interest place carbon going to be important player and all. Internal individual is the system of interest for future electronics development and all. Developments wanted to be continued in this place for futuristic incident of robo like structure that will walk away with life of internal matter and all. Arrangements search out be made vacant for such a development and so forth.

Author(s) Details:

Ekambaram Rajasekaran,
V.S.B. Engineering College, Karur – 639111, Tamil Nadu, India.

Rajasekaran Meenal,
Karunya Institute of Technology and Sciences, Karunya Nagar, Coimbatore – 641114, Tamil Nadu, India.

Please see the link here: https://stm.bookpi.org/RACMS-V5/article/view/8899

Friday, 23 December 2022

Contiguous Amino Acids in Diameter of 16Å of Carbon Rule| Chapter 4 | Cutting Edge Research in Biology Vol. 2

 Carbon individual of the most important factors in living being is found out be important in 3D structure. During study at atomic level in biomolecular systems it is labeled as most important determinant of all available sources of biochemical establishment and allied type. Accordingly available beginnings of important functions in protein one is analysed in the former years. In this network it is important to take any added factor of main in determining 3D structure in this place evolution of protein and added biomolecular one. Accordingly it is found out expected the amino acids are organised in some fashion to uphold 3D structure. In this relates it is evaluated to be in dimension of specified dia it is information of 3D structure. It is in agreement at dia of 16Å. Here in this place work of calculation it is further analysed by looking how many of amino acids are continuously sheltered with in this place dia. Indeed evaluations are to be labeling of adjacent amino acids available for composition of 3D structure utilizing carbon network. Identified are 5 to 11 in formation in 3D construction. It is identified expected the crucial one all the while mutational study leading to support and all.

Author(s) Details:

Rajasekaran Ekambaram,
V. S. B. Engineering College, Karur – 639111, TN, India.

Indupriya Rajasekaran,
Andaman & Nicobar Islands Institute of Medical Sciences, Port Blair, Andaman and Nicobar Islands, India.

Please see the link here: https://stm.bookpi.org/CERB-V2/article/view/8886

Tuesday, 6 July 2021

Distribution Statistics on Carbon Value Points out Good and Bad Portions of Proteins: A Viral Sample in Study | Chapter 1 | Challenges in Disease and Health Research Vol. 6

 The structure of viral proteins can be altered by mutation to form different structures. These structural changes are caused by changes in carbon distribution. The carbon distribution statistics in viral protein samples are computed here. The statistical results are useful in identifying carbon-optimized domains and abnormal portions, such as active regions or hydrophobic parts. It clearly shows the portions of the folded protein that are exposed or buried. It is capable of locating the abnormal portion for possible mutational research. Based on this carbon distribution, mutational studies can be more effectively used to improve protein stability, activity, and, ultimately, gene therapy.


Author (s) Details

R. Devprakash
Karunya Institute of Technology and Sciences, Karunya Nagar, Coimbatore–641114, Tamil Nadu, India.

K. Akila
Karunya Institute of Technology and Sciences, Karunya Nagar, Coimbatore–641114, Tamil Nadu, India.

R. Senthil
Karunya Institute of Technology and Sciences, Karunya Nagar, Coimbatore–641114, Tamil Nadu, India.

R. Indupriya
Karunya Institute of Technology and Sciences, Karunya Nagar, Coimbatore–641114, Tamil Nadu, India.

R. Meenal
Karunya Institute of Technology and Sciences, Karunya Nagar, Coimbatore–641114, Tamil Nadu, India.

E. Rajasekaran
Karunya Institute of Technology and Sciences, Karunya Nagar, Coimbatore–641114, Tamil Nadu, India.

View Book :- https://stm.bookpi.org/CDHR-V6/article/view/1661

Friday, 17 July 2020

Nano Level Force in Protein Plays Applications of Maximum Untold Understanding of Life Form | Chapter 10 | Recent Developments in Engineering Research Vol.1


There are many interactive forces between atoms applied to solve the problem of nature of molecules. One would go on applying this to several diseases and sufferings. On doing so, we have discovered that a new dimension of atomic arrangements playing a role in existence of force of interaction at nano level say at 1.6 nm. Arrangements are in such way that it maintains a carbon fraction of 0.3144 in the structure of biologically important molecule called protein. Arrangements are important from maintaining structure and another way of interaction due to the deficiency of this domain formation. All our analysis conclude that there is new kind of force of attraction available for advancing the science here in biology and other field as well as other elements possess this nano level forces of attraction. Our results are validated with crystal availability because of force existence. Otherwise other may have to be studied accordingly. Bond of all atoms involved in domain formation are altered from original value of bond formation but increased or decreased according to the type of bonds. Alteration can be a measure of this newly identified nano level force of interaction. Our analysis can be extended to other problems in our science of untold answer.

Author(s) Details
Rajasekaran Ekambaram
Department of Chemistry, V.S.B. Engineering College, Karur – 639111, Tamil Nadu, India. 

Indupriya Rajasekaran
Institute of Fundamental Medicine and Biology, Kazan Federal University, Kazan - 420012, Tatarstan, Russia.

View Book :- http://bp.bookpi.org/index.php/bpi/catalog/book/205