The book Chemistry connections discuss a variety of topics in Chemistry, which of course is a wide field. Among the topics, my interest is based on Organic chemistry that entails the study of the structure, composition, properties, preparations and reactions of carbon-containing compounds (Karukstis & Hecke, 2003). The book presents a highlight of the background of this topic as a branch of chemistry that was originally limited to compounds produced by living organisms. Moreover, connection to organic chemistry presents a discussion on the connection of molecules and explores various existing compounds ( https://books.google.co.ke/books?hl=en&lr=&id=wBaHCFeGvLsC&oi=fnd&pg=PP2&dq=Chemistry+connections&ots=pa_ZubgHqT&sig=wOxW4Sslf2lWqRaEK3fpLtpRlBs&redir_esc=y#v=onepage&q=Chemistry%20connections&f=false ).
Depicted from the publication named above, connection to organic chemistry covers the following chapters. They include structure and bonding, acids and bases, introduction to organic molecules and functional groups, alkanes, understanding organic reactions, different types of alcohols, oxidation and reduction among other chapters (Karukstis & Hecke, 2003). However, my interest is based on oxidation and reduction section presented in the topic, connections to organic chemistry. This section defines various processes that facilitate most of the reactions taking place in the environment. For instance, the oxidation and reduction process facilitates different reactions including decay, rusting and other important reactions applied in the industries.
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Organic chemistry has numerous benefits in the society through its ability to facilitate different processes. For instance, in the agricultural sector, it is responsible for organic manure and in the industrial sector it facilitates different processes including the Solvay process in Sulphur manufacturing. However, organic chemistry has drawbacks when mishandled or when individuals have limited knowledge of its operations. For instance, it attracts rusting and other reactions that might be explosive hence dangerous. Although other topics in chemistry are important, more concentration should be focused on connections to organic chemistry since it is highly applicable in real life. Apart from my topic of interest, which topic do you think should be highly concentrated in Chemistry as a field? What are the impacts of the chosen topic in real life applications? What is your view on focusing on organic chemistry as the main topic in chemistry?
Reference
Karukstis, K. K., & Van Hecke, G. R. (2003). Chemistry Connections: The chemical basis of everyday phenomena . Elsevier.