LEADER 02069nam 2200421 450 001 9910688336403321 005 20230628065213.0 035 $a(CKB)5400000000043230 035 $a(NjHacI)995400000000043230 035 $a(EXLCZ)995400000000043230 100 $a20230628d2020 uy 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aComputational Biology and Chemistry /$fedited by Payam Behzadi and Nicola Bernabo? 210 1$aLondon, England :$cIntechOpen,$d2020. 215 $a1 online resource (150 pages) 311 $a1-78985-692-2 330 $aThe use of computers and software tools in biochemistry (biology) has led to a deep revolution in basic sciences and medicine. Bioinformatics and systems biology are the direct results of this revolution. With the involvement of computers, software tools, and internet services in scientific disciplines comprising biology and chemistry, new terms, technologies, and methodologies appeared and established. Bioinformatic software tools, versatile databases, and easy internet access resulted in the occurrence of computational biology and chemistry. Today, we have new types of surveys and laboratories including "in silico studies" and "dry labs" in which bioinformaticians conduct their investigations to gain invaluable outcomes. These features have led to 3-dimensioned illustrations of different molecules and complexes to get a better understanding of nature. 606 $aComputational biology 606 $aCheminformatics 606 $aBioinformatics 606 $aComputational chemistry 615 0$aComputational biology. 615 0$aCheminformatics. 615 0$aBioinformatics. 615 0$aComputational chemistry. 676 $a542 702 $aBernabo?$b Nicola 702 $aBehzadi$b Payam 801 0$bNjHacI 801 1$bNjHacl 906 $aBOOK 912 $a9910688336403321 996 $aComputational biology and chemistry$91893983 997 $aUNINA