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Sampai detik ini, Covid-19 masih mengoyak dan menghantui pertahanan kesehatan. Mendorong orang-orang untuk menetukan pilihan. Terkhusus, bagi kelas ekonomi menengah ke bawah. Mati karena Covid-19 atau karena kelaparan. Sehingga anjuran bekerja dari rumah oleh pemerintah merupakan dilema. Di rumah apa yang harus dikerjakan, padahal pekerjaannya berhubungan dengan orang banyak. Ketika di luar, pasti melanggar anjuran pementah. Oleh karena itu, selagi vaksin Covid-19 belum ditemukan untuk menekan laju penyebaran, maka dengan terpaksa orang-orang akan mejalani kehidupan seperti biasa. Hal itu dilakukan untuk mempertahankan kehidupan
Buku ini tersusun menjadi beberapa bab sebagai berikut: Bab 1 : Pengantar Fisika Terapan Bab 2 : Analisis Vektor Bab 3 : Dinamika Bab 4 : Hidrostatika Bab 5 : Usaha dan Energi Bab 6 : Arus dan Tahanan Bab 7 : Medan Magnet Bab 8 : Fluida Bab 9 : Suhu dan Kalor Bab 10 : Teori Relativitas
This book presents and summarizes the new thoughts, new methods and new achievements that have emerged in the biotechnology of lignocellulose in recent years. It proposes new concepts including the primary refining, fractionation, multi-level utilization and selective structural separation of lignocellulose, etc. By approaching lignocellulose as a multi-level resource, biotechnology could have a significant effect on ecological agriculture, bio-energy, the chemical and paper making industries, etc., ultimately establishing distinctive eco-industrial parks for lignocellulose. Additionally, this book provides systematic research methods for the biotechnology of lignocellulose including investigation methods for the primary refining of lignocellulose, for microbial degradation and enzymatic hydrolysis, for cellulose fermentation and for lignocellulose conversion processes. It offers an excellent reference work and guide for scientists engaging in research on lignocellulose. Dr. Hongzhang Chen is a Professor at the Institute of Process Engineering of the Chinese Academy of Sciences, Beijing, China.
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This book approaches the energy science sub-field carbon capture with an interdisciplinary discussion based upon fundamental chemical concepts ranging from thermodynamics, combustion, kinetics, mass transfer, material properties, and the relationship between the chemistry and process of carbon capture technologies. Energy science itself is a broad field that spans many disciplines -- policy, mathematics, physical chemistry, chemical engineering, geology, materials science and mineralogy -- and the author has selected the material, as well as end-of-chapter problems and policy discussions, that provide the necessary tools to interested students.
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