Update docs/llm/llm_master_class.md
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- Logical Reasoning: Deductive and inductive logic.
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- Logical Reasoning: Deductive and inductive logic.
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- In-Context Learning: Integrating novel information swiftly.
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- In-Context Learning: Integrating novel information swiftly.
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# 📘 Presentation on LLMs with Focus on NLP and RAG Technologies
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## 🧬 LLMs in Genetic Research and CRISPR Cas9
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### Key Points
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- **Genomic Data Interpretation**: How LLMs help in deciphering complex genetic sequences and contribute to gene editing research.
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- **Personalized Medicine**: The role of LLMs in developing tailored treatment plans based on genetic information.
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- **Ethical and Regulatory Considerations**: Discussing how LLMs can aid in navigating the ethical landscape of genetic manipulation.
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## 💊 LLMs in Pharmaceutical Development
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### Key Points
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- **Drug Discovery**: Utilizing LLMs to predict drug interactions and efficacy, speeding up the discovery process.
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- **Clinical Trial Research**: Analyzing and interpreting vast amounts of clinical data to streamline trial design and patient selection.
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- **Pharmacovigilance**: Using LLMs for monitoring and analyzing drug safety data.
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## 🌾 LLMs in Agriculture
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### Key Points
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- **Crop Improvement**: Leveraging LLMs for genomic selection and breeding of crops with desired traits.
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- **Pest and Disease Prediction**: Using LLMs to predict and manage agricultural pests and diseases.
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- **Sustainable Farming Practices**: Implementing LLM-driven strategies for optimizing resource use and reducing environmental impact.
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## 🌍 LLMs in Environmental Science
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### Key Points
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- **Climate Change Analysis**: How LLMs contribute to climate modeling and predicting environmental changes.
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- **Biodiversity Conservation**: Using LLMs to analyze and preserve ecosystem diversity.
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- **Pollution Control**: LLMs in monitoring, predicting, and managing environmental pollution.
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## 📊 LLMs in Data-Intensive Scientific Research
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### Key Points
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- **Big Data Analysis**: The role of LLMs in managing and interpreting large-scale scientific datasets.
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- **Predictive Modeling**: Using LLMs for predictive analytics in various scientific disciplines.
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- **Collaborative Research**: Facilitating cross-disciplinary research through efficient data sharing and interpretation.
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## Additional Areas Impacted by LLMs
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### 🚀 Aerospace Engineering
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- **Design Optimization**: LLMs in modeling and simulating aerospace components for performance optimization.
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- **Mission Planning and Analysis**: Using LLMs for planning complex space missions and analyzing telemetry data.
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### 🏥 Healthcare and Medical Diagnostics
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- **Diagnostic Assistance**: Leveraging LLMs for interpreting medical imaging and laboratory results.
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- **Healthcare Data Management**: Managing patient records and healthcare data efficiently using LLMs.
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### 🏛️ Law and Legal Research
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- **Legal Document Analysis**: Utilizing LLMs for contract analysis, legal research, and case law summarization.
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- **Compliance Monitoring**: LLMs in tracking regulatory changes and ensuring compliance in various industries.
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### 📚 Education and Training
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- **Personalized Learning**: Using LLMs to develop customized educational content and learning pathways.
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- **Research Assistance**: LLMs as tools for aiding students and researchers in literature review and data analysis.
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