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Theme
"Changing the World by Exploring the Emerging Trends in Physical and Theoretical Chemistry"
- Physical Chemistry 2020

About Conference

Physical Chemistry 2020 Conference Series is now proud to announce the “3rd International Conference on Physical and Theoretical Chemistry” during May 18-19, 2020 Budapest, Hungary. 

Organizing Committee was inviting the participants from all over the globe to take part in this annual conference with the theme “changing the World by Exploring the Emerging Trends in Physical and Theoretical Chemistry”. Physical Chemistry 2020 aims at sharing new technologies and new ideas amongst the students, professionals and industrialists from research areas of Physical chemistry, thermochemistry, surface science, geochemistry, astrochemistry to share their recent changes and applications in various fields and indulge in interactive discussions and technical sessions at the event. The Conference was also providing a space for institutions and/or companies to present their research results, services, products and their innovations.

Welcome Message

Physical chemists will involve in discovering a substance's basic physical characteristics, i.e. the substance is a solid, gas or liquid. They are identifying what is going on at the atomic level. Theoretical chemistry is having basic physics laws used in conjunction with methods in math and computational to determine the properties of chemically interesting matter.

Physical Chemistry involves in science managing the physical properties of synthetic substances. It is one of the conventional sub-controls of science and is connected with the utilization of the ideas and speculations of material science to the investigation of the concoction properties and responsive conduct of issue. In contrast to different branches, it manages the standards of material science fundamental every single compound communication (e.g., gas laws), trying to gauge, relate, and clarify the quantitative parts of responses.it manages the standards of material science basic every single concoction collaboration (e.g., gas laws), trying to quantify, associate, and clarify the quantitative parts of response.

From all past conferences Physical Chemistry 2020 increases ideology among scientists to improve the quality of life throughout the world. The result of such collaborations can only bring improvements in technical development and a better quality of life for all people.

All of the members and staff on the Physical Chemistry 2020  Organizing Committee was  spending  many hours for this conference to make it the best possible. We are excited about the outcome and we hope that you will find this conference will be enjoyable and worthwhile.

Target Audience

·         Professors and Associate Professors

·         Graduates and Post graduate students

·         Presidents, CEO’s and Directors from companies

·         Instrumental Companies

·         Lab Technicians

·         Physical Chemists

·         Delegates from various pharma companies

·         Scientist and Researchers

·         Chemistry associations/Societies


                                      Sessions/Tracks

                                      Track 1: Physical Chemistry

                                       

                                      It is the branch of chemistry which studies the application of the techniques and theories of physics to the research of chemical systems. It deals with the relation between physical properties, chemical composition and transformations of substance. Physical chemists have been working closely for the materials by the scientists to investigate and to increase the use of new materials. Physical chemistry has been training the students broadly, and positioning them to work in a variety of scientific careers.

                                      • Inter molecular forces
                                      • Complex compounds
                                      • Electrophoresis
                                      • Chemical thermodynamics
                                      • Environmental protection
                                      • Electrolysis
                                      • Electrochemical cells
                                      • Physical chemistry of plasma
                                      • Electrosynthesis
                                      • Potentiostat and its applications
                                      • Graphene and fullerenes

                                      Related Associations and Societies: World Association of Theoretical and Computational Chemists | European Chemical Society | Royal Society of Chemistry | International Union of Pure and Applied Chemistry | Institute of Chemistry of Ireland | Electrochemical Society | Chinese-American Chemical Society | The Society for Electro analytical Chemistry | Faraday Society | Japan Society of Theoretical Chemistry

                                      Track 2: Physical chemistry: A Molecular Approach

                                         

                                      It employs the unifying principles of physical chemistry of macro molecules is to describe their   structure, and inter molecular properties of macro molecules and their behavior in both solution and bulk states. It gives information about   their structure, optical properties of macro molecules present in solution. This information is used in the experimental techniques, such as light scattering, and the results that are obtained are used to support the current theories. Physical Chemistry of Macro molecules describes where these models and techniques can be used to analyze and predict the properties of new polymeric materials.

                                      • Applications of physical chemistry on macro molecules
                                      • Synthesis of macro molecular compounds
                                      • Electrostatic interactions in macro molecule solutions
                                      • Macro molecular thermodynamics
                                      • Distribution of molecular weight
                                      • Particle size determination
                                      • Polymers on surface
                                      • Polymers in solution
                                      • High-performance liquid chromatography and  electrophoresis
                                      • Physical chemistry of food

                                      Related Associations and Societies: European Chemical Society | Royal Society of Chemistry | International Union of Pure and Applied Chemistry | Institute of Chemistry of Ireland | Indian Institutes of Technology | Chinese-American Chemical Society | The Society for Electro analytical Chemistry | Faraday Society | Japan Society of Theoretical Chemistry | American Association for Clinical Chemistry

                                      Track 3: Theoretical and Computational Chemistry

                                      It deals with problems of   energies, reaction mechanisms, molecules, surfaces, catalysis, reaction rates involving atoms, and properties. Theoretical chemistry use   classical   mechanics, statistical mechanics, and quantum mechanics to explain their structures. The  Students who are  participating in the theoretical and computational chemistry having the opportunity to learn computational methods such as atomistic/coarse grained molecular modeling, classical molecular dynamics simulations, quantum-mechanics molecular mechanics (QM/MM) simulations, and electronic structure calculations.

                                      • Molecular modeling
                                      • Molecular dynamics
                                      • Theoretical chemical kinetics
                                      • Mathematical chemistry
                                      • Molecular mechanics
                                      • Cheminformatics
                                      • Theoretical chemistry advances and  perspectives
                                      • Theoretical experimental chemistry
                                      • Quantum mechanics
                                      • Chemical dynamics
                                      • Statistical mechanics
                                      • Ab initio and  electronic structure methods
                                      • Monte Carlo simulations

                                      Related Associations and Societies: Royal Society of Chemistry | International Union of Pure and Applied Chemistry | Institute of Chemistry of Ireland | Indian Institutes of Technology | Center for Theoretical and Computational Chemistry | The Society for Electro analytical Chemistry | Faraday Society | Japan Society of Theoretical Chemistry | American Association for Clinical Chemistry | American Institute of Chemists

                                      Track 4: Chemical kinetics

                                        

                                      It deals with direction of process of chemical reaction occurs but it does not tells nothing about its rate. The well-defined properties of one substance can be changed to other substance with distinct properties by chemical reaction mechanism. It involves in the determination of how different experimental conditions can influence the speed of a chemical reaction and which gives the information about mechanism of reaction and their transition states and also about the construction of mathematical models that can determine the characteristics of a chemical reaction.

                                      • Rate of chemical reaction
                                      • Order and  molecularity of reaction
                                      • Integrated rate equation
                                      • Temperature dependence of reaction
                                      • Collision theory
                                      • Catalysts

                                      Related Associations and Societies: International Union of Pure and Applied Chemistry | Institute of Chemistry of Ireland | Indian Institutes of Technology | Center for Theoretical and Computational Chemistry | International Academy of Quantum Molecular Science | Faraday Society | Japan Society of Theoretical Chemistry | American Association for Clinical Chemistry | American Institute of Chemists | Biochemical Society

                                      Track 5: Chemical Physics

                                        

                                      It is the branch of physics that deals with chemical process from point of view of physics. It describes the physicochemical properties of substance with the help of techniques such as condensed matter physics, atomic and molecular physics. It includes information of about heterogeneous structures, statistical and classical mechanics, alignment and their surface phenomena, mathematical physics, quantum theory, laser physics and chemical kinetics. The theoretical chemical physicists create the simulations in the molecular processes probed in the experiments to explain in both of the results and guide the future investigations.

                                      • Quantum mechanics and  symmetry
                                      • Electromagnetism
                                      • Coordination chemistry
                                      • Nuclear and  particle physics
                                      • Waves and  diffraction
                                      • Atomic systems

                                      Related Associations and Societies: Institute of Chemistry of Ireland | Indian Institutes of Technology | Center for Theoretical and Computational Chemistry | International Academy of Quantum Molecular Science | Japan Society of Theoretical Chemistry | American Association for Clinical Chemistry | American Institute of Chemists | Biochemical Society | Chemical Research Society of India

                                      Track 6: Radiation Chemistry

                                       

                                      It is the study of chemical effects during the interaction of ionizing radiation with the substance. It is the sub division of nuclear chemistry and it is very different from radiochemistry .These radiations are used in industries during food preservation, synthesis of ethyl bromide, materials for textile finishing, curing of paints et c... When a medium is irradiated with low LET [linear energy transfer] radiation then the spurs are sparsely distributed across the track and that are unable to interact. When with high LET radiation the spurs can get overlap, allowing for inter-spur reactions, which are leading to different yields of products.

                                      • Nuclear fuel cycle
                                      • Nuclear power
                                      • Nuclear medicine
                                      • Polymer modification
                                      • Nuclear physics

                                      Related Associations and Societies: Indian Institutes of Technology | Center for Theoretical and Computational Chemistry | International Academy of Quantum Molecular Science | Royal Australian Chemical Institute | Asia-Pacific Association of Theoretical & Computational Chemistry | American Association for Clinical Chemistry | American Institute of Chemists | Biochemical Society | Chemical Research Society of India | Society of Chemical Industry 

                                      Track 7: Femtochemistry

                                       

                                      It is the study of chemical reaction on extremely short time scales i.e. about 10-15 seconds .It explains which chemical reaction takes place and investigates why some reactions does not occur .It is applied in  biological studies to determine the conformational dynamics of stem-loop RNA structures. The steps in some of the reactions may occur in a femtosecond timescale and sometimes in attosecond timescales and in sometimes they may form intermediate products during the chemical reaction. These intermediates which are formed during reaction cannot always be deduced from observing the start and end products.

                                      • Attophysics
                                      • Femtotechnology
                                      • Laser Femtochemistry
                                      • Pump–probe spectroscopy
                                      • Femtosecond spectroscopy
                                      • Atmospheric chemistry
                                      • Electron & proton transfer
                                      • Ultrafast laser spectroscopy

                                      Related Associations and Societies: Center for Theoretical and Computational Chemistry | International Academy of Quantum Molecular Science | Royal Australian Chemical Institute | Asia-Pacific Association of Theoretical & Computational Chemistry | World Association of Theoretical and Computational Chemists | American Institute of Chemists | Biochemical Society | Chemical Research Society of India | Society of Chemical Industry | Electrochemical Society

                                      Track 8: Geochemistry

                                       

                                      It explains about the mechanism involved in geological systems such as oceans and earth’s crust. It studies about structures, physical aspects of earth, composition and procedures. It helps environmental management companies decide how to discard of a toxic or hazardous   substance. The geochemistry  is mainly extending  beyond the Earth, and encompassing the entire Solar System, and has  been made important contributions to describe the number of processes such as the formation planets, mantle convection, and the origins of granite and basalt. The earth s mantle will  get  differentiated by mid ocean ridges  through partial melting in which  more refractory materials are being remained at the base of  lithosphere and while the remaining  arises to form basalt.

                                      • Isotope geochemistry
                                      • Cosmochemistry
                                      • Biogeochemistry
                                      • Photogeochemistry
                                      • Aqueous geochemistry
                                      • Organic geochemistry
                                      • Regional, environmental and  exploration geochemistry

                                      Related Associations and Societies: International Academy of Quantum Molecular Science | Royal Australian Chemical Institute | Asia-Pacific Association of Theoretical & Computational Chemistry | World Association of Theoretical and Computational Chemists | European Chemical Society | Biochemical Society | Chemical Research Society of India | Society of Chemical Industry | Chinese-American Chemical Society | Electrochemical Society

                                      Track 9: Astrochemistry

                                        

                                      It the branch of study of chemical constituents that are found in outer space, generally on large scales such as molecular gas clouds. These are using, space vehicles to collect spectroscopic data, Earth-based telescopes and satellites. They have applied theories that are established on chemical dynamics, mathematical models, mechanics, kinetics and other physical principles.  The word "astrochemistry" can be applied to both the interstellar medium and the solar system. The astrochemists will identify the chemical compositions and processes for planets, stars, comets, and interstellar media.

                                      • Nucleosynthesis of heavier elements
                                      • Astrochemical evolution
                                      • Gas-grain chemistry
                                      • Nuclear physics

                                      Related Associations and Societies: Royal Australian Chemical Institute | Asia-Pacific Association of Theoretical & Computational Chemistry | World Association of Theoretical and Computational Chemists | European Chemical Society | Royal Society of Chemistry | Chemical Research Society of India | Society of Chemical Industry | Electrochemical Society | Chinese-American Chemical Society | The Society for Electro analytical Chemistry

                                      Track 10: Photochemistry

                                      It the study of isomerization , physical behavior and chemical reactions that occur during the influence of visible or UV light is known as Photo chemistry. The energy that is absorbed from light can show effect in photo chemical changes of the absorbing molecule, or in an adjacent molecule. The paths of photo chemical can access the high energy of intermediates that they cannot be generated thermally, thereby overcoming large activation barriers in a short period of time, and they can allow reactions otherwise inaccessible by thermal processes.

                                      • Photoelectrochemistry
                                      • Inorganic and Organometallic Photochemistry
                                      • Photogeochemistry
                                      • Photoelectrochemical cell
                                      • Fluorescence and  phosphorescence
                                      • Magnetochemistry
                                      • Organic Photochemistry

                                      Related Associations and Societies: Asia-Pacific Association of Theoretical & Computational Chemistry | World Association of Theoretical and Computational Chemists | European Chemical Society | Royal Society of Chemistry | International Union of Pure and Applied Chemistry | Society of Chemical Industry | Electrochemical Society | Chinese-American Chemical Society | The Society for Electro analytical Chemistry | Faraday Society

                                      Track 11: Solid State Chemistry

                                      It is the study of the structure, properties of solid phase materials and synthesis. It has a   strong overlap with solid state physics, crystallography, mineralogy ceramics, metallurgy, thermodynamics materials. Solids may be dividing in to crystalline and amorphous depending on their nature. While solid-state materials have been historically developed through high temperature solid-state reactions, generally affording the most thermodynamically stable phases , a variety of techniques have been developed to master the limitations inherent in this traditional approach.

                                      • Energy  technologies
                                      • Nanomaterials and  Nanocomposites
                                      • Structural chemistry
                                      • Magnetism
                                      • Catalysis
                                      • Conducting solids
                                      • Diffraction techniques
                                      • Atomistic simulation
                                      • Solid state synthesis
                                      • Surfactants
                                      • Colloids
                                      • Optical and  Photovoltaic materials
                                      • Theoretical approaches to solid-state chemistry

                                      Related Associations and Societies: World Association of Theoretical and Computational Chemists | European Chemical Society | Royal Society of Chemistry | International Union of Pure and Applied Chemistry | Institute of Chemistry of Ireland | Electrochemical Society | Chinese-American Chemical Society | The Society for Electro analytical Chemistry | Faraday Society | Japan Society of Theoretical Chemistry

                                      Track 12: Spectroscopy

                                         

                                      It is defined as the study of interaction between matter and electromagnetic radiation. The Spectroscopy is also used in astronomy and remote sensing on Earth. In Most of scientific research works, telescopes are having spectrographs. The measured spectra can be used to determine the chemical composition and physical properties of astronomical objects . It plays a major role in the electromagnetic spectrum, which is a fundamental exploratory tool in the fields of chemistry, astronomy and physics allowing the electronic structure, composition and physical structure of matter to get investigate at molecular scale, macro scale, atomic scale, and over astronomical distances.

                                      • Mass spectrometry
                                      • Ultraviolet-visible spectroscopy
                                      • Nuclear magnetic resonance spectroscopy
                                      • X-ray spectroscopy
                                      • Radio-frequency spectroscopy
                                      • Microwave spectroscopy
                                      • Particle Spectroscopy
                                      • Infrared spectroscopy
                                      • Atomic spectroscopy
                                      • Molecular spectroscopy
                                      • Raman spectroscopy 

                                      Related Associations and Societies: European Chemical Society | Royal Society of Chemistry | International Union of Pure and Applied Chemistry | Institute of Chemistry of Ireland | Indian Institutes of Technology | Chinese-American Chemical Society | The Society for Electro analytical Chemistry | Faraday Society | Japan Society of Theoretical Chemistry | American Association for Clinical Chemistry

                                      Track 13: Surface Science

                                       

                                      It is defined as the study of chemical and physical phenomenon that occur at the two  interface phases, including solid–vacuum interfaces, liquid–gas interfaces, solid–liquid interfaces, and solid–gas interfaces. It includes the fields of surface physics  and surface chemistry. The surface science consists of concepts such as fuel cells, heterogeneous catalysis, adhesives, and semiconductor devices. Surface science is closely related to colloid and interface science. But these methods are different. In addition, to the interface and colloid science studies macroscopic phenomena can occur in heterogeneous systems due to the peculiarities of interfaces.

                                      • Surface integrity
                                      • Surface Characterisation and  Metrology
                                      • Lubrication and  lubricants
                                      • Nanoscale tribology
                                      • Coatings and  Surface treatments
                                      • Surface imaging & Depth profiling
                                      • Interface temperatures of sliding surfaces

                                      Related Associations and Societies: Royal Society of Chemistry | International Union of Pure and Applied Chemistry | Institute of Chemistry of Ireland | Indian Institutes of Technology | Center for Theoretical and Computational Chemistry | The Society for Electro analytical Chemistry | Faraday Society | Japan Society of Theoretical Chemistry | American Association for Clinical Chemistry | American Institute of Chemists

                                      Track 14: Quantum Chemistry

                                      It is defined as the application of quantum mechanics in experiments of chemical systems and the physical models. It can also be known as molecular quantum mechanics. It is the application of equations to the study of molecules and quantum mechanical theories equations to the study of molecules.Quantum chemical theories will allowing us to identify the structure of the periodic table, and the  quantum chemical calculations will allow us to calculate accurately and to  predict the structures of molecules and the spectroscopic behavior of molecules and atoms.

                                      • Quantum meachanics
                                      • Density functional theory
                                      • Electron scattering
                                      • Reaction mechanisms and  Rates
                                      • Structure and  dynamics of  Biomolecules
                                      • Molecular spectroscopy
                                      • Quantum Monte-Carlo
                                      • QM/MM calculations and  Solvation models
                                      • Electronic structure calculations
                                      • Photonics and  non-linear optics

                                      Related Associations and Societies: International Union of Pure and Applied Chemistry | Institute of Chemistry of Ireland | Indian Institutes of Technology | Center for Theoretical and Computational Chemistry | International Academy of Quantum Molecular Science | Faraday Society | Japan Society of Theoretical Chemistry | American Association for Clinical Chemistry | American Institute of Chemists | Biochemical Society

                                      Track 15: Thermochemistry

                                      It is the study of the heat absorbed or liberated as a result of chemical reactions takes place. Chemical reactions involve the set of substances collectively referred to as products and conversion of a set of substances inclusively referred to as reactant. The reaction may release or absorb energy, and a phase change can do the same, such as in boiling and melting. Thermochemistry mainly focuses on these energy changes, mainly on the system's energy exchange with their   surroundings. Thermochemistry mainly involves the calculations  of such quantities as heat of formation,  heat capacity,   enthalpyfree energy, heat of combustion,  and calories.

                                      • Kinetic molecular theory of gases
                                      • Energy
                                      • Thermodynamics
                                      • Enthalpy
                                      • Calorimetry
                                      • Energy use and the environment
                                      • Batteries
                                      • Thermochemical sensors

                                      Related Associations and Societies: Institute of Chemistry of Ireland | Indian Institutes of Technology | Center for Theoretical and Computational Chemistry | International Academy of Quantum Molecular Science | Japan Society of Theoretical Chemistry | American Association for Clinical Chemistry | American Institute of Chemists | Biochemical Society | Chemical Research Society of India

                                      Track 16:  Biophysical Chemistry

                                      It is a physical science that uses the concepts of physical chemistry for the study of biological systems and physics. These techniques will include spectroscopic methods such as x-ray diffraction and nuclear magnetic resonance (NMR).  The biophysical chemists involve in some of the areas themselves are functional structure of cell membranes and protein structure. Similarly the structure and function of the bio membranes can be studied through the study of model supra molecular structures as phospholipid vesicles of different compositions and sizes or liposomes.

                                      • Cell biophysics
                                      • Computational biophysics
                                      • Nucleic acid structure
                                      • Biomaterials
                                      • Photosynthesis
                                      • Molecular imaging
                                      • Membrane potentials, transporters, and channels
                                      • Physical chemistry with applications to the life sciences
                                      • Biomolecular modeling
                                      • Genomic biophysics
                                      • Nanoscale biophysics

                                      Related Associations and Societies: Indian Institutes of Technology | Center for Theoretical and Computational Chemistry | International Academy of Quantum Molecular Science | Royal Australian Chemical Institute | Asia-Pacific Association of Theoretical & Computational Chemistry | American Association for Clinical Chemistry | American Institute of Chemists | Biochemical Society | Chemical Research Society of India | Society of Chemical Industry 

                                      Track 17: Physical Organic Chemistry

                                       

                                      It is the study of the link between reactivity of organic molecules and their structures. It is the study of the structure of organic molecules and provides a theoretical framework that involved in the structure influences each rate of organic reactions and mechanisms. It will be thought of as a subfield that involves the organic chemistry with physical chemistry. The physical organic chemists will use each theoretical and experimental discipline like spectrum analysis, natural philosophy, process chemistry, chemical analysis and scientific theory to check each of the rates of organic reactions and also their relative chemical stability of the transition states, product and the beginning materials.

                                      • Crystallography
                                      • Solvent effects
                                      • Applications of physical organic chemistry
                                      • Homogeneous mixture
                                      • Solid - phase of matter

                                      Related Associations and Societies: Center for Theoretical and Computational Chemistry | International Academy of Quantum Molecular Science | Royal Australian Chemical Institute | Asia-Pacific Association of Theoretical & Computational Chemistry | World Association of Theoretical and Computational Chemists | American Institute of Chemists | Biochemical Society | Chemical Research Society of India | Society of Chemical Industry | Electrochemical Society

                                                                                                            
                                       

                                      Market Analysis

                                      Physical Chemistry's chemical generation in the European Union is relied upon to scarcely become quicker than in 2016. By and large, the expansion underway will stay unobtrusive against the background of a languid residential market. We expect focused weight on fare markets to stay exceptional, despite the fact that the naphtha-based European compound industry benefits more from low oil costs than the gas-based creation in the United States.

                                      In the United States, we expect to some degree quicker development in substance creation, at just shy of 2%, as new generation limit, which will likewise be utilized for fare, comes on-stream. In general concoction development is probably going to decelerate fairly in the developing markets of Asia, for the most part because of the log jam in China, which will influence the other creating nations in the area. In Japan, we assume a frail by and large monetary condition and negligible development in concoction generation. In South America, the foreseen end of the retreat in Argentina and Brazil will result in slight development in concoction creation in the area.



                                      Global Advanced CBRN Market:

                                      The global chemical, biological, radiological, and nuclear (CBRN) security market is rising at a steady pace globally as demand for effective CBRN protection measures to combat terrorist attacks is at an all-time high. The threats of use of weapons of mass destruction by terrorist organizations have raised alarms to prevent possible attacks with CBRN systems. CBRN security is a rising market to address concerns related to protecting civilian lives and maintenance of economic stability.

                                      In addition, CBRN systems are used for accidental incidents. These include events caused by human or technological errors such as accidental leaks or factory spillage of poisonous gas or liquids. Intentional CBRN incidents occur when CBRN materials are released into the environment with the intention of terrorism or war or when hazardous material is discharged into the environment deliberately.

                                      One of the key factors driving the CBRN security market is increasing demand for CBRN security in developing countries such as India, China, and Brazil among others. In addition, African nations are expected to continue spending incessantly on CBRN surveillance systems to mitigate rising CBRN threats such as Ebola in the regain. With continual technological advancements and increasing research initiatives worldwide, new-age CBRN security equipment are launched that primarily focus on government organizations, military, and law enforcement agencies.

                                      Transparency Market Research estimates the global CBRN security market to be worth US$15074.8 mn by 2025 increasing from US$9890.0 mn in 2016, expanding at a CAGR of 4.8% between 2017 and 2025.



                                      Organizing Committee
                                      OCM Member
                                      Lukasz Andrzej Glinka
                                      Editor-in-chief
                                      Independent Researcher
                                      Warsaw, Poland
                                      OCM Member
                                      Abdeen Mustafa Omer
                                      Associate Researcher
                                      Energy Research Institute
                                      London, United Kingdom
                                      OCM Member
                                      Valentyn Alexeevich Nastasenko
                                      Professor, Transport Technologies
                                      Kherson state maritime academia
                                      Odessa, Ukraine
                                      OCM Member
                                      Sorush Niknamian
                                      Chartered Scientist, Cancer Biology
                                      Liberty University, USA
                                      Virginia, USA
                                      OCM Member
                                      Keshab Kumar Adhikary
                                      Professor, Department of Chemistry
                                      Inha University
                                      Incheon, South Korea
                                      OCM Member
                                      Dr.Yacob Mathai
                                      Chief Physician, Department of Health
                                      Marma Heatth Centre,Kochi ,Kerala,India
                                      Trivandrum, India
                                      OCM Member
                                      Gerald C. Hsu
                                      Medical Research Scientist, Healthcare
                                      EclaireMD Foundation
                                      Indiana, USA
                                      OCM Member
                                      Christo Boyadjiev
                                      Professor, Department of Chemistry
                                      Bulgarian Academy of Sciences
                                      Sofia, Bulgaria
                                      OCM Member
                                      Miros?aw Kwiatkowski
                                      Professor, Department of chemistry
                                      AGH University of Science and Technology
                                      Warsaw, Poland

                                      To Collaborate Scientific Professionals around the World

                                      Conference Date May 18-19, 2020
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