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Rational Design and Synthesis of New Nucleoside Analogues Bearing a Cyclohexane Core Beatriz Dominguez Prey Ph.D. Thesis Ph.D. in Chemistry Supervisors: Dr. Ramon Alias Arius Dr. Fix Bus Sanchez Dr.
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01
Start by identifying the objective of the design or synthesis process. This could be developing a new drug, designing a chemical compound, or creating a new material, among other things. Clearly define what you aim to achieve.
02
Conduct thorough research on the topic or problem at hand. This may involve studying existing literature, reviewing previous studies or experiments, and understanding the current scientific knowledge related to your objective.
03
Define the criteria or parameters that your design or synthesis must fulfill. These could include factors such as cost, scalability, safety, efficiency, or specific performance requirements. Clearly outline the constraints and boundaries within which your design should operate.
04
Brainstorm different approaches or strategies that could be used to achieve the desired outcome. This could involve considering different chemical reactions, exploring various synthesis routes, or experimenting with different materials or components.
05
Evaluate each potential design or synthesis approach based on the defined criteria and constraints. Consider the advantages, disadvantages, and feasibility of each option. This step involves critical thinking and analysis to identify the most promising approach.
06
Once you have selected the most viable approach, create a detailed plan or protocol outlining the step-by-step process to be followed. This plan should include the necessary materials, equipment, and techniques to be used, as well as any precautions or safety considerations.
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Begin implementing the planned design or synthesis process by carefully following the outlined steps. Take accurate measurements, record observations, and make any necessary adjustments or modifications as you progress.
08
Continuously monitor and evaluate the progress of your design or synthesis. Regularly analyze the results and compare them against your initial objectives and criteria. Make necessary adjustments or refinements to the process as needed.
09
Once the design or synthesis process is complete, document the findings, results, and any conclusions or insights gained. This can involve writing a technical report, preparing a presentation, or publishing the work in a scientific journal.

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01
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In summary, rational design and synthesis are valuable tools for scientists, researchers, industries, academic institutions, government agencies, and individuals seeking to develop new compounds, materials, or drugs, optimize processes, or contribute to scientific knowledge and innovation.
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Rational design is the process of designing molecules with specific properties or functions in mind, while synformsis is the synthesis of those molecules in the lab.
Researchers and scientists working on designing and synthesizing new molecules are required to file rational design and synformsis.
Rational design and synformsis forms can be filled out by providing detailed information about the target molecules, design strategy, synthesis method, and expected outcomes.
The purpose of rational design and synformsis is to efficiently design and synthesize molecules with specific properties or functions for various applications such as drug development, materials science, and chemical reactions.
Information such as molecular structure, design rationale, synthetic route, reaction conditions, and characterization data must be reported on rational design and synformsis.
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