Experience reading like never before
Sign in to continue reading.
Discover and read thousands of books from independent authors across India
Visit the bookstore"It was a wonderful experience interacting with you and appreciate the way you have planned and executed the whole publication process within the agreed timelines.”
Subrat SaurabhAuthor of Kuch Woh Pal
Physical pharmacy is the branch of pharmacy that concentrates on the application of physics and chemistry to the study of pharmacy. In other words, it is the study of the effects dosage forms have on their environment by addressing issues at the molecular level.[1] It emphasis on the physical characteristics and actions of the drug delivery system before the same is given to the patient.[1] It forms the basis for design, manufacture, and distribution o
Physical pharmacy is the branch of pharmacy that concentrates on the application of physics and chemistry to the study of pharmacy. In other words, it is the study of the effects dosage forms have on their environment by addressing issues at the molecular level.[1] It emphasis on the physical characteristics and actions of the drug delivery system before the same is given to the patient.[1] It forms the basis for design, manufacture, and distribution of drug products and serves as the foundation for the stable and proper use of medical drugs.[2] It covers areas such as solubility, pharmacokinetics and drug delivery.
Physical pharmacy serves as principles that guide the pharmaceutical developments.[2] It also serves as a basis for the understanding of drug absorptions, distributions, metabolism, and eliminations that happen during the course of drug treatment
Pharmacognosy is the study of plants or other natural sources as a possible source of drugs. The American Society of Pharmacognosy defines pharmacognosy as "the study of the physical, chemical, biochemical and biological properties of drugs, drug substances or potential drugs or drug substances of natural origin as well as the search for new drugs from natural sourcesthe term "pharmacognosy" was used for the first time by the Austrian physician Schmidt in 1811
Pharmacognosy is the study of plants or other natural sources as a possible source of drugs. The American Society of Pharmacognosy defines pharmacognosy as "the study of the physical, chemical, biochemical and biological properties of drugs, drug substances or potential drugs or drug substances of natural origin as well as the search for new drugs from natural sourcesthe term "pharmacognosy" was used for the first time by the Austrian physician Schmidt in 1811 and 1815 by Crr. Anotheus Seydler in work titled Analecta Pharmacognostica.Originally—during the 19th century and the beginning of the 20th century—"pharmacognosy" was used to define the branch of medicine or commodity sciences (Warenkunde in German) which deals with drugs in their crude, or unprepared, form. Crude drugs are the dried, unprepared material of plant, animal or mineral origin, used for medicine. The study of these materials under the name pharmakognosie was first developed in German-speaking areas of Europe, while other language areas often used the older term materia medica taken from the works of Galen and Dioscorides. In German the term drogenkunde ("science of crude drugs") is also used synonymously.
Biochemistry, sometimes called biological chemistry, is the study of chemical processes within and relating to living organisms. Biochemical processes give rise to the complexity of life.
A sub-discipline of both biology and chemistry, biochemistry can be divided into three fields; structural biology, enzymology, and metabolism. Over the last decades of the 20th century, biochemistry has become successful at explaining living p
Biochemistry, sometimes called biological chemistry, is the study of chemical processes within and relating to living organisms. Biochemical processes give rise to the complexity of life.
A sub-discipline of both biology and chemistry, biochemistry can be divided into three fields; structural biology, enzymology, and metabolism. Over the last decades of the 20th century, biochemistry has become successful at explaining living processes through these three disciplines. Almost all areas of the life sciences are being uncovered and developed by biochemical methodology and research. Biochemistry focuses on understanding the chemical basis which allows biological molecules to give rise to the processes that occur within living cells and between cells.which in turn relates greatly to the study and understanding of tissues and organs, as well as organism structure and function.Biochemistry is closely related to molecular biology, the study of the molecular mechanisms of biological phenomena.
Instrumental analysis is a field of analytical chemistry that investigates analytes using scientific instruments.Spectroscopy measures the interaction of the molecules with electromagnetic radiation. Spectroscopy consists of many different applications such as atomic absorption spectroscopy, atomic emission spectroscopy, ultraviolet-visible spectroscopy, x-ray fluorescence spectroscopy, infrared spectroscopy, Raman spectroscopy, nuclear magnetic resona
Instrumental analysis is a field of analytical chemistry that investigates analytes using scientific instruments.Spectroscopy measures the interaction of the molecules with electromagnetic radiation. Spectroscopy consists of many different applications such as atomic absorption spectroscopy, atomic emission spectroscopy, ultraviolet-visible spectroscopy, x-ray fluorescence spectroscopy, infrared spectroscopy, Raman spectroscopy, nuclear magnetic resonance spectroscopy, photoemission spectroscopy, Mössbauer spectroscopy, Circular dichroism spectroscopy, and so on.Methods of nuclear spectroscopy use properties of a nucleus to probe material's properties, especially the materials local structure. Common methods are e.g.: Nuclear magnetic resonance spectroscopy (NMR), Mössbauer spectroscopy (MBS), Perturbed angular correlation (PAC), and so on
Pharmacology is the branch of pharmaceutical sciences which is concerned with the study of drug or medication action,[1] where a drug can be broadly or narrowly defined as any man-made, natural, or endogenous (from within the body) molecule which exerts a biochemical or physiological effect on the cell, tissue, organ, or organism (sometimes the word pharmacon is used as a term to encompass these endogenous and exogenous bioactive species). More specifically, i
Pharmacology is the branch of pharmaceutical sciences which is concerned with the study of drug or medication action,[1] where a drug can be broadly or narrowly defined as any man-made, natural, or endogenous (from within the body) molecule which exerts a biochemical or physiological effect on the cell, tissue, organ, or organism (sometimes the word pharmacon is used as a term to encompass these endogenous and exogenous bioactive species). More specifically, it is the study of the interactions that occur between a living organism and chemicals that affect normal or abnormal biochemical function. If substances have medicinal properties, they are considered pharmaceuticals.
Handbook of Medicinal Chemistry practical book provide basic knowldge to chemistry students how to synthesized compounds,now a days the basic conceptual books gave a rock solid practical knowledge to each and every asspects of synthetic chemistry hope students utilized this book to build there basic strength solid
Handbook of Medicinal Chemistry practical book provide basic knowldge to chemistry students how to synthesized compounds,now a days the basic conceptual books gave a rock solid practical knowledge to each and every asspects of synthetic chemistry hope students utilized this book to build there basic strength solid
Preparation Of Power Point Presentation Based On Research, Insertion Of Graphs, Charts & figures In Presentation ENTITLE BOOK GAVE DETAIL BASIC INFORMATION HOW TO PREPERE PPT WHICH IS USEFULL TOOL FOR THE PERFORMING RESECH AND OTHER ACTIVITY GRAPHICAL AND DIGRAMETICAL OPERATION EASY TO UNDERSTAND AND PERFORM
Preparation Of Power Point Presentation Based On Research, Insertion Of Graphs, Charts & figures In Presentation ENTITLE BOOK GAVE DETAIL BASIC INFORMATION HOW TO PREPERE PPT WHICH IS USEFULL TOOL FOR THE PERFORMING RESECH AND OTHER ACTIVITY GRAPHICAL AND DIGRAMETICAL OPERATION EASY TO UNDERSTAND AND PERFORM
HANDBOOK OF PHARMACEUTICAL ORGENIC CHEMISTRY BOOK IS A POWEFULL TOOL FOR NOT ONLY TO UNDERSTAND ORGANIC CHEMISTRY BUT WITH THE HELP OF THESE BOOK STUDENT USED AS A TOOL FOR NOTE DOWN AND PERFORM AND READING THE EXPERIMENTAL MINOR AND MAJOR EXPECTS DIRECT;Y ON BOOK
HANDBOOK OF PHARMACEUTICAL ORGENIC CHEMISTRY BOOK IS A POWEFULL TOOL FOR NOT ONLY TO UNDERSTAND ORGANIC CHEMISTRY BUT WITH THE HELP OF THESE BOOK STUDENT USED AS A TOOL FOR NOTE DOWN AND PERFORM AND READING THE EXPERIMENTAL MINOR AND MAJOR EXPECTS DIRECT;Y ON BOOK
INTRODUCTION TO DATA AND DATA ANALYSIS BOOK GIVES DETAIL INFORMATION ABOT HOW WHY AND WHAT KIND OF DATA COLLECTED AND WHICH METHOD TO ADOPTED TO PERFORM SIMPLE OR COMPLX TYPE OF RESERCH OPERATION PERFORM TO ACHIVE ETHICAL RESULTS THIS BOOK ALSO PERFORM TO PROCEED SIMPLE WAY TO ACHIVE HIGHEST RESULTS
INTRODUCTION TO DATA AND DATA ANALYSIS BOOK GIVES DETAIL INFORMATION ABOT HOW WHY AND WHAT KIND OF DATA COLLECTED AND WHICH METHOD TO ADOPTED TO PERFORM SIMPLE OR COMPLX TYPE OF RESERCH OPERATION PERFORM TO ACHIVE ETHICAL RESULTS THIS BOOK ALSO PERFORM TO PROCEED SIMPLE WAY TO ACHIVE HIGHEST RESULTS
Computer-aided drug design uses computational chemistry to discover, enhance, or study drugs and related biologically active molecules. The most fundamental goal is to predict whether a given molecule will bind to a target and if so how strongly. Molecular mechanics or molecular dynamics are most often used to predict the conformation of the small molecule and to model conformational changes in the biological target that may occur when the small molecule binds
Computer-aided drug design uses computational chemistry to discover, enhance, or study drugs and related biologically active molecules. The most fundamental goal is to predict whether a given molecule will bind to a target and if so how strongly. Molecular mechanics or molecular dynamics are most often used to predict the conformation of the small molecule and to model conformational changes in the biological target that may occur when the small molecule binds to it. Semi-empirical, ab initio quantum chemistry methods, or density functional theory are often used to provide optimized parameters for the molecular mechanics calculations and also provide an estimate of the electronic properties (electrostatic potential, polarizability, etc.) of the drug candidate which will influence binding affinity
Are you sure you want to close this?
You might lose all unsaved changes.
The items in your Cart will be deleted, click ok to proceed.