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Molecular Epidemiology for Beginners: Explore the Distribution of Microbes from a Genetic Perspective
🔰 Unlock the secrets of infectious disease spread with Molecular Epidemiology for Beginners!
🔰 This course simplifies complex genetic concepts, making it easy to explore how microbes evolve and spread within populations.
🔰 You will dive into the molecular tools and techniques scientists use to track pathogens, uncover the drivers of outbreaks, and combat infectious diseases. Whether you are a student, researcher, or curious learner, I will guide you with clear explanations, practical insights, and real-world examples.
Join now and take your first step into the fascinating world of molecular epidemiology!
COURSE CURRICULUM
🟢 Module 1: Introduction to Molecular Epidemiology
◘ Lesson 1.1: What is Molecular Epidemiology?
◘ Lesson 1.2: Importance of Molecular Epidemiology in Public Health
◘ Lesson 1.3: Basics of Microbial Genetics and Evolution
◘ Lesson 1.4: Key Terms and Concepts (e.g., genetic markers, genotypes, SNPs)
🟢 Module 2: Tools and Techniques in Molecular Epidemiology
◘ Lesson 2.1: Molecular Techniques Overview (PCR, sequencing, etc.)
◘ Lesson 2.2: Whole Genome Sequencing (WGS) Basics
◘ Lesson 2.3: Genetic Typing and Fingerprinting (e.g., MLST, PFGE)
◘ Lesson 2.4: Bioinformatics Tools for Data Analysis
🟢 Module 3: Microbial Diversity and Evolutionary Dynamics
◘ Lesson 3.1: Microbial Population Genetics
◘ Lesson 3.2: Horizontal Gene Transfer and its Implications
◘ Lesson 3.3: Pathogen Evolution and Antimicrobial Resistance (AMR)
◘ Lesson 3.4: Case Studies in Microbial Evolution
🟢 Module 4: Applications of Molecular Epidemiology
◘ Lesson 4.1: Investigating Outbreaks Using Molecular Tools
◘ Lesson 4.2: Tracking Pathogen Transmission Pathways
◘ Lesson 4.3: AMR Surveillance and Molecular Epidemiology
◘ Lesson 4.4: Impact of Molecular Epidemiology on Vaccine Development
🟢 Module 5: Data Interpretation and Communication
◘ Lesson 5.1: Interpreting Molecular Data in Epidemiological Context
◘ Lesson 5.2: Statistical Approaches in Molecular Epidemiology
◘ Lesson 5.3: Visualizing Genetic Data (phylogenetic trees, heatmaps)
◘ Lesson 5.4: Communicating Findings to Diverse Audiences
🟢 Module 6: Ethical and Practical Considerations
◘ Lesson 6.1: Ethical Issues in Genomic Data Collection and Sharing
◘ Lesson 6.2: Quality Control in Molecular Studies
◘ Lesson 6.3: Ensuring Reproducibility and Transparency
◘ Lesson 6.4: Future Trends in Molecular Epidemiology
🟢 Module 7: Capstone Project
◘ Lesson 7.1: Designing a Molecular Epidemiology Study
◘ Lesson 7.2: Analyzing a Real-World Dataset
◘ Lesson 7.3: Preparing a Scientific Report
◘ Lesson 7.4: Peer Review and Feedback
🔰 This course simplifies complex genetic concepts, making it easy to explore how microbes evolve and spread within populations.
🔰 You will dive into the molecular tools and techniques scientists use to track pathogens, uncover the drivers of outbreaks, and combat infectious diseases. Whether you are a student, researcher, or curious learner, I will guide you with clear explanations, practical insights, and real-world examples.
Join now and take your first step into the fascinating world of molecular epidemiology!
COURSE CURRICULUM
🟢 Module 1: Introduction to Molecular Epidemiology
◘ Lesson 1.1: What is Molecular Epidemiology?
◘ Lesson 1.2: Importance of Molecular Epidemiology in Public Health
◘ Lesson 1.3: Basics of Microbial Genetics and Evolution
◘ Lesson 1.4: Key Terms and Concepts (e.g., genetic markers, genotypes, SNPs)
🟢 Module 2: Tools and Techniques in Molecular Epidemiology
◘ Lesson 2.1: Molecular Techniques Overview (PCR, sequencing, etc.)
◘ Lesson 2.2: Whole Genome Sequencing (WGS) Basics
◘ Lesson 2.3: Genetic Typing and Fingerprinting (e.g., MLST, PFGE)
◘ Lesson 2.4: Bioinformatics Tools for Data Analysis
🟢 Module 3: Microbial Diversity and Evolutionary Dynamics
◘ Lesson 3.1: Microbial Population Genetics
◘ Lesson 3.2: Horizontal Gene Transfer and its Implications
◘ Lesson 3.3: Pathogen Evolution and Antimicrobial Resistance (AMR)
◘ Lesson 3.4: Case Studies in Microbial Evolution
🟢 Module 4: Applications of Molecular Epidemiology
◘ Lesson 4.1: Investigating Outbreaks Using Molecular Tools
◘ Lesson 4.2: Tracking Pathogen Transmission Pathways
◘ Lesson 4.3: AMR Surveillance and Molecular Epidemiology
◘ Lesson 4.4: Impact of Molecular Epidemiology on Vaccine Development
🟢 Module 5: Data Interpretation and Communication
◘ Lesson 5.1: Interpreting Molecular Data in Epidemiological Context
◘ Lesson 5.2: Statistical Approaches in Molecular Epidemiology
◘ Lesson 5.3: Visualizing Genetic Data (phylogenetic trees, heatmaps)
◘ Lesson 5.4: Communicating Findings to Diverse Audiences
🟢 Module 6: Ethical and Practical Considerations
◘ Lesson 6.1: Ethical Issues in Genomic Data Collection and Sharing
◘ Lesson 6.2: Quality Control in Molecular Studies
◘ Lesson 6.3: Ensuring Reproducibility and Transparency
◘ Lesson 6.4: Future Trends in Molecular Epidemiology
🟢 Module 7: Capstone Project
◘ Lesson 7.1: Designing a Molecular Epidemiology Study
◘ Lesson 7.2: Analyzing a Real-World Dataset
◘ Lesson 7.3: Preparing a Scientific Report
◘ Lesson 7.4: Peer Review and Feedback
Extra information
Bring your laptop !Location
At student's location: Around Medina Estates, Ghana
Online via webcam






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Use ctrl + wheel to zoom!
General info
Age: | Teenagers (13-17 years old) Adults (18-64 years old) Seniors (65+ years old) |
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Student level: | Beginner Intermediate |
Duration: | 45 minutes 60 minutes |
The class is taught in: | English |
About Me
⭐ I am a passionate and results-driven tutor and scientist with over three years ofexperience. My domains are data science/analytics, bioinformatics, genomics and
microbiology.
⭐ Creating significant change through practical knowledge is a top priority. I teach using
foolproof ways I have devised over the years which transmit knowledge with easy
understanding and simplicity.
Education
⭐ University of GhanaMPhil Medical Microbiology
(2022-2023)
⭐ Kwame Nkrumah University of Science and Technology
BSc Biological Sciences
(2016-2020)
First Class Honors
Experience / Qualifications
WORK⭐ Noguchi Memorial Institute for Medical Research (April 2021 to date)
Research Scientist (Bioinformatician)
✅ Draft manuscripts based on data generated on the project, quantify
DNA, perform library preparations and process DNA for sequencing and perform
bioinformatic analysis of sequencing data using command line and web-based tools, perform statistical analysis
⭐ West African Genetic Medicine Center (September 2020 to August 2021)
Research Assistant
✅ Data management, biorepository, DNA extraction and quality check, and Hb analysis
using Capillarys 2 Serbia Piercing.
⭐ Science Tutor (August 2020 to date)
✅ Simplify concepts for students from the basic to the tertiary level of education.
⭐ Noguchi Memorial Institute for Medical Research (June 2019 to July 2019)
Summer Intern
✅ Electrophoresis, Polymerase Chain Reaction, Antimicrobial Sensitivity Test, bacterial
culturing, biosafety, report writing, participation in journal meetings, and making
presentations.
⭐ A-Zone Network (Non-Governmental Organization) (2018 to date)
Mentor
✅ Providing academic and career advice to students.
⭐ Medi-trust Laboratory and Diagnostic Services (July 2017 to September 2017)
Summer Intern
✅ The front desk clerk, WIDAL test, Rapid Diagnostic Testing, blood film, electrophoresis,
and report writing.
SKILLS
✅ Data Science: Python, R, SPSS, SQL, Redcap, Tableau, PowerBI, GraphPad, Excel etc.
✅ Machine learning
✅ Bioinformatics analysis
✅ Microsoft Office
✅ Scientific writing
✅ Mentorship
🔰 This course provides a comprehensive introduction to bacterial bioinformatics, combining both theoretical knowledge and practical skills to analyze microbial genomes.
🔰 Designed for beginners and intermediate learners, it explores the tools and techniques used to study the genetics, evolution, and function of bacteria. Students will gain hands-on experience in using bioinformatics tools for sequence analysis, genome annotation, phylogenetics, and comparative genomics, with an emphasis on real-world applications in research and healthcare.
🔰 By the end of the course, students will be equipped to tackle bioinformatics challenges in bacterial studies and contribute to advancements in microbiology and infectious disease research.
SYLLABUS:
✳️ Module 1: Introduction to Bacterial Bioinformatics
♦️ Overview of bioinformatics and its importance in microbial research
♦️ Basic concepts in molecular biology relevant to bacterial bioinformatics
♦️ Introduction to bacterial genome structure and diversity
♦️ Key databases and resources for bacterial genome information
✳️ Module 2: Introduction to Genomics and Sequence Analysis
♦️ Understanding DNA sequencing technologies (e.g., Illumina, Nanopore, PacBio)
♦️ Introduction to raw sequencing data: FASTQ format and quality control
♦️ Basic sequence alignment techniques (BLAST, Bowtie, etc.)
♦️ Handling genomic data using bioinformatics tools (Galaxy, Biopython, etc.)
✳️ Module 3: Genome Assembly and Annotation
♦️ Overview of genome assembly methods (de novo vs. reference-based)
♦️ Tools for genome assembly (SPAdes, shovill, etc.)
♦️ Genome annotation pipelines (Prokka, RAST)
♦️ Identifying functional genes, operons, and metabolic pathways
✳️ Module 4: Phylogenetics and Comparative Genomics
♦️ Introduction to phylogenetic analysis: tree building methods (e.g., neighbor-joining, maximum likelihood)
♦️ Comparative genomics: identifying conserved and variable regions
♦️ Using multiple genome alignments for strain comparison
♦️ Tools for phylogenetic analysis (MEGA, FastTree, RaxML etc.)
✳️ Module 5: Functional Genomics and Metagenomics
♦️ Analyzing gene expression and functional genomics tools
♦️ Introduction to metagenomics: studying microbial communities through sequencing
♦️ Tools for analyzing metagenomic data (QIIME, MetaPhlAn)
✳️ Module 6: Antibiotic Resistance and Bacterial Pathogenesis
♦️ Bioinformatics tools for studying antimicrobial resistance (AMR)
♦️ Identifying AMR genes in bacterial genomes
♦️ Exploring pathogenicity factors and virulence genes
♦️ Understanding the role of bioinformatics in fighting infectious diseases
✳️ Module 7: Hands-On Project
♦️ Practical exercises in bacterial genome analysis
♦️ Complete a case study: annotation, alignment, and phylogenetic analysis of a bacterial genome
♦️ Explore a real-world application of bacterial bioinformatics in research
✳️ Module 8: Future Trends and Resources
♦️ The role of artificial intelligence in bioinformatics
♦️ Emerging technologies in sequencing and bioinformatics tools
♦️ Key databases and resources for continued learning (e.g., NCBI, EMBL, KEGG)
🔰 SPSS is one of the leading statistical tools used by researchers, data scientists, and students worldwide.
🔰 Whether you are exploring trends in biological research, conducting surveys, or analyzing experimental data, SPSS empowers you to transform raw data into actionable insights.
🔰 In this comprehensive course, you will learn the fundamentals of SPSS in a simple, step-by-step manner, tailored for individuals from any background.
🔰 By the end, you will be equipped with the essential skills to analyze, interpret, and present data confidently, making this course an invaluable tool for your research or professional journey.
COURSE OUTLINE
✳️ Module 1: Introduction to SPSS
◘ Lesson 1.1: What is SPSS and Why Should Biologists Use It?
• Overview of SPSS
• Key features and benefits for biological research
◘ Lesson 1.2: Installing and Navigating SPSS
• Installation guide
• Understanding the SPSS interface
• Data entry basics: How to input data manually
◘ Lesson 1.3: Data Types and Variables
• Understanding variable types (Nominal, Ordinal, Scale)
• Setting up variables in SPSS
✳️ Module 2: Data Management and Organization
◘ Lesson 2.1: Importing and Exporting Data
• Importing Excel, CSV, and other formats into SPSS
• Exporting data and results from SPSS
◘ Lesson 2.2: Data Cleaning and Preparation
• Handling missing values
• Sorting and filtering data
• Recode and compute variables
◘ Lesson 2.3: Data Transformation for Biological Analysis
• Creating new variables based on existing data
• Using conditional statements
✳️ Module 3: Descriptive Statistics
◘ Lesson 3.1: Basic Descriptive Statistics
• Mean, Median, Mode, Range, and Standard Deviation
• Using SPSS to calculate and interpret descriptive statistics
◘ Lesson 3.2: Visualizing Data
• Creating histograms, bar charts, and pie charts
• Using boxplots and scatterplots for biological data
✳️ Module 4: Hypothesis Testing in SPSS
◘ Lesson 4.1: Introduction to Hypothesis Testing
• Understanding p-values, significance, and confidence intervals
◘ Lesson 4.2: T-Tests and ANOVA
• Independent and Paired Sample T-Tests
• One-way and Two-way ANOVA
◘ Lesson 4.3: Non-Parametric Tests
• Mann-Whitney U Test, Kruskal-Wallis Test
• When to use non-parametric tests in biology
✳️ Module 5: Correlation and Regression Analysis
◘ Lesson 5.1: Correlation Analysis
• Pearson’s and Spearman’s correlation
• Interpreting correlation coefficients in biological research
◘ Lesson 5.2: Linear Regression
• Simple linear regression
• Multiple linear regression: When and how to use it
• Assumptions of linear regression
◘ Lesson 5.3: Logistic Regression
• Understanding binary outcomes
• Conducting and interpreting logistic regression
✳️ Module 6: Advanced Statistical Techniques
◘ Lesson 6.1: Factor Analysis
• Overview and applications in biology
• Conducting factor analysis in SPSS
◘ Lesson 6.2: Cluster Analysis
• Hierarchical and K-means clustering
• Applications in biological data sets
◘ Lesson 6.3: Multivariate Analysis of Variance (MANOVA)
• When to use MANOVA in biological research
• Conducting and interpreting MANOVA
✳️ Module 7: Reporting and Interpreting Results
◘ Lesson 7.1: Generating and Interpreting Output
• Understanding SPSS output tables and charts
• Reporting statistical findings in biological research
◘ Lesson 7.2: Writing a Statistical Report
• Structuring a scientific report with statistical results
• Communicating complex data simply and effectively
✳️ Module 8: SPSS for Biological Research Projects
◘ Lesson 8.1: Designing a Research Project Using SPSS
• Setting research objectives and data collection strategies
• Using SPSS for hypothesis testing and analysis
◘ Lesson 8.2: Case Studies in Biology
• Real-world biological examples using SPSS (e.g., population genetics, ecology, microbiology)
• Hands-on project using SPSS to analyze biological data
✳️ Final Project
◘ Lesson 9.1: Capstone Project
• Students will analyze a biological dataset using the techniques learned in the course
• Submission of a final report including data analysis, results, and conclusions
Are you eager to master the foundational principles of research methodology and unlock the tools for solving complex research challenges? This dynamic and practical course is your gateway to becoming a confident and skilled researcher.
Packed with engaging lessons, real-world applications, and hands-on activities, you will acquire essential skills to design, execute, and publish impactful research. Whether you are a beginner or looking to enhance your expertise, this course will empower you to confidently tackle research projects and turn your findings into publications that make a difference.
Join me and take your research capabilities to the next level!
SYLLABUS
Module 1: Foundations of Biological Research
🔵 Lesson 1.1: Understanding the Research Process in Biology
◘ Definition and scope of biological research
◘ Types of biological research (basic, applied, translational)
🔵 Lesson 1.2: Identifying Research Questions in Biology
◘ Characteristics of impactful biological research questions
◘ Refining questions for molecular biology, ecology, genomics, etc.
🔵 Lesson 1.3: Conducting a Literature Review in Biology
◘ Identifying relevant biological journals and databases (e.g., PubMed, Web of Science)
◘ Critical analysis of biological papers
Module 2: Designing Your Biological Research
🔵 Lesson 2.1: Research Design for Biologists
◘ Experimental vs. observational studies in biology
◘ Designing robust controls and replicates
🔵 Lesson 2.2: Hypothesis Formulation in Biology
◘ Writing testable biological hypotheses
◘ Defining null and alternative hypotheses
🔵 Lesson 2.3: Sampling in Biological Studies
◘ Strategies for collecting biological samples (field and lab-based)
◘ Addressing sample size in population studies and molecular analyses
Module 3: Biological Data Collection Techniques
🔵 Lesson 3.1: Experimental Techniques in Biology
◘ Common lab methods (e.g., PCR, Western blotting, microscopy)
◘ Good lab practices (GLP) for reproducibility
🔵 Lesson 3.2: Fieldwork for Biologists
◘ Designing ecological surveys and biodiversity studies
◘ Tools for field sampling (e.g., GPS, quadrats, transects)
🔵 Lesson 3.3: Handling Biological Specimens
◘ Sample preservation techniques for DNA, RNA, and proteins
◘ Best practices for labeling and storage
Module 4: Biological Data Analysis and Interpretation
🔵 Lesson 4.1: Introduction to Statistical Analysis for Biologists
◘ Biostatistics fundamentals (e.g., t-tests, ANOVA, regression)
◘ Using R, Python, or SPSS for biological data
🔵 Lesson 4.2: Analyzing Genomic and Proteomic Data
◘ Tools like BLAST, MEGA, and Galaxy for sequence analysis
◘ Basics of bioinformatics workflows
🔵 Lesson 4.3: Interpreting Biological Results
◘ Connecting results to biological hypotheses
◘ Identifying and discussing limitations in biological research
Module 5: Writing and Publishing in Biological Sciences
🔵 Lesson 5.1: Structuring a Biological Research Paper
◘ IMRAD format tailored for biological journals
◘ Writing clear and concise methods and results
🔵 Lesson 5.2: Referencing for Biologists
◘ Citation styles in biological sciences (e.g., Vancouver, APA)
◘ Using referencing tools specific to biology (e.g., EndNote, Zotero)
🔵 Lesson 5.3: Publishing in Biological Journals
◘ Identifying target journals (e.g., Nature, Cell, Microbial Genomics)
◘ Addressing reviewer comments
Module 6: Ethics and Best Practices in Biological Research
🔵 Lesson 6.1: Ethical Considerations in Biology
◘ Handling live organisms and human samples
◘ Regulatory approvals (e.g., IACUC, IRB)
🔵 Lesson 6.2: Managing Biological Data
◘ FAIR principles (Findable, Accessible, Interoperable, Reusable) for biological data
◘ Data repositories for biology (e.g., NCBI, Dryad)
🔵 Lesson 6.3: Collaboration in Biology
◘ Building interdisciplinary teams (ecologists, geneticists, bioinformaticians)
◘ Leveraging platforms like ResearchGate for biologists
Module 7: Practical Toolkit and Case Studies in Biology
🔵 Lesson 7.1: Tools for Efficient Biological Research
◘ Lab-specific tools (e.g., electronic lab notebooks, ELNs like LabArchives)
◘ Visualization tools (e.g., GraphPad Prism, BioRender)
🔵 Lesson 7.2: Case Studies in Biological Research
◘ Genomic studies on antimicrobial resistance pathogens
◘ Population studies in biodiversity hotspots
◘ Analyzing molecular mechanisms in model organisms
🔰 Dive Into the Fascinating World of Microbiology – Made Fun and Accessible for Beginners!
🔰 Have you ever wondered what lies beyond what the naked eye can see? Microbiology unveils the hidden world of microorganisms—tiny yet powerful entities that shape our environment, health, and daily lives.
🔰 In this course, we will embark on an exciting journey to uncover this microscopic universe. Through engaging lessons and interactive activities, I’ve designed a unique approach to make this adventure both fun and easy to follow. You’ll explore the unseen wonders of bacteria, viruses, fungi, and more, with hands-on insights that ignite curiosity and leave you wanting more.
🔰 This course is perfect for beginners eager to understand the basics of microbiology or those seeking a fresh, fun introduction to the science of the unseen. Whether you are starting your scientific journey or simply indulging your curiosity, this class will give you the knowledge and experience you’ve been craving.
Let us unlock the mysteries of the microbial world together—where learning is as fascinating as the creatures we will discover!
SYLLABUS
Module 1: Introduction to Microbiology
✳️ Lesson 1.1: What is Microbiology?
◘ Definition and scope
◘ Why microbiology matters in everyday life
✳️ Lesson 1.2: Historical Perspectives
◘ Pioneers in microbiology: Antonie van Leeuwenhoek, Louis Pasteur, and Robert Koch
◘ Key discoveries that shaped the field
✳️ Lesson 1.3: Tools of the Trade
◘ Microscopes: Light vs. electron microscopy
◘ Techniques for observing microorganisms
Module 2: The Microbial World
✳️ Lesson 2.1: Classification of Microorganisms
◘ Bacteria, viruses, fungi, protozoa, and algae
◘ The three domains of life: Bacteria, Archaea, and Eukarya
✳️ Lesson 2.2: Bacteria: The Good, the Bad, and the Ugly
◘ Structure, shapes, and functions
◘ Beneficial vs. harmful bacteria
✳️ Lesson 2.3: Viruses: Not Quite Alive
◘ Basic structure and life cycle
◘ Common viral infections
✳️ Lesson 2.4: Fungi, Protozoa, and Algae
◘ Key features and roles in ecosystems
◘ Applications in food, medicine, and biotechnology
Module 3: Microbial Habitats and Diversity
✳️ Lesson 3.1: Where Microbes Live
◘ Soil, water, air, and extreme environments
✳️ Lesson 3.2: Microbes in the Human Body
◘ The microbiome and its importance
◘ Microbes in health and disease
✳️ Lesson 3.3: Microbes in Ecosystems
◘ Roles in nutrient cycling and energy flow
◘ Symbiotic relationships (e.g., lichens, mycorrhizae)
Module 4: Microbes in Everyday Life
✳️ Lesson 4.1: Microbes in Food
◘ Fermentation: Yogurt, cheese, bread, and beverages
◘ Spoilage and food safety
✳️ Lesson 4.2: Microbes in Medicine
◘ Antibiotics and vaccines
◘ Emerging therapies: Phage therapy and probiotics
✳️ Lesson 4.3: Microbes in Industry and the Environment
◘ Bioremediation and biofuels
◘ Production of enzymes and other bio-products
Module 5: Methods in Microbiology
✳️ Lesson 5.1: Culturing Microbes
◘ Growth media and aseptic techniques
✳️ Lesson 5.2: Identifying Microorganisms
◘ Staining techniques (e.g., Gram staining)
◘ Biochemical and molecular identification methods
✳️ Lesson 5.3: Controlling Microbial Growth
◘ Sterilization, disinfection, and antibiotics
Module 6: Careers and Innovations in Microbiology
✳️ Lesson 6.1: Career Paths in Microbiology
◘ Academia, healthcare, industry, and research
✳️ Lesson 6.2: Innovations and Trends
◘ CRISPR, synthetic biology, and metagenomics
✳️ Lesson 6.3: Fun Microbiology Projects
◘ Home experiments to explore microbial life
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from 169.42 CNYOnline via webcam
100% Satisfaction Guarantee
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If you are not satisfied after your first lesson, Apprentus will find you another instructor or will refund your first lesson.
Online reputation
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from 169.42 CNYOnline via webcam
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If you are not satisfied after your first lesson, Apprentus will find you another instructor or will refund your first lesson.
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I am a qualified, experienced, and certified international tutor with a strong familiarity with the Cambridge IGCSE/A-Levels/O-Levels & IB Diploma curricula. I offer both ONLINE and IN-PERSON lessons in CHEMISTRY, and BIOLOGY, following the British, American, and Indian curricula.
My classes are available at affordable rates and can be conducted in-person or online. I adopt a student-oriented teaching style, striving to provide the best private lessons for my students.
With 6 years of professional experience in science (Chemistry, and biology), I am well-versed in both the British and American curricula and I possess a high level of competency. I have taught students from various countries, including Belgium, Spain, Switzerland, Japan, the USA, the Caribbean, the UK, India, China, Singapore, Malaysia, Turkey, the Netherlands, Luxembourg, Germany, France, Italy, and South Africa.
Book a lesson with me, and we can start at the time that suits you.
Extra information
•Currently, I am teaching:
1. GCSE students
2. IGCSE students
3. IB students
4. European School students
5. AS/A level students
6. American curriculum
•Boost your understanding: Clear explanations, engaging activities, and practice exercises to solidify your knowledge.
Master exam prep: Conquer past papers, tackle tricky concepts, and build confidence for upcoming tests.
Individualized approach: Personalized curriculum and learning pace to fit your needs and goals.
•Flexible scheduling: Online or in-person lessons to suit your busy schedule.
I also provide homework help for school students. The progress of students can be assessed through periodic tests conducted as per the requirements of parents or the students themselves."
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Biology for all levels - Molecular Biology/Chemistry/Biology
Biology is a fascinating field and I don't think it's that difficult either. Regardless of whether you wish to advance your knowledge or fill in the gaps - I am ready to assist you.
I have a background in Molecular Biology and I've been tutoring biology and chemistry students throughout my whole bachelor's.
Don't hesitate to contact or recommend me.
Microbiology, Virology and Molecular Biology Courses
PhD in Veterinary Medicine, specializing in Microbiology and Virology. Experience in teaching and explaining veterinary medicine curricula.
Expertise in life sciences, virology, microbiology and molecular biology.
I can help you better understand your curriculum in easy and simple ways and follow up periodically.
Together we can simplify science and achieve your goal of excellence.
University-Level Private Biology Classes with Focus on Exam Preparation and Critical Thinking
I have over 5 years of experience teaching university-level biology courses both in Greece and abroad, with an emphasis on active student participation, deep understanding of the material, and the development of critical thinking. I offer support for students with learning difficulties and oral examination preparation, as well as specialized preparation in Biology, Biochemistry, Physiology, Anatomy, Botany, Zoology, Cell & Molecular Biology, Immunology, and Nursing. I provide personalized material (theory and exercises) for addressing gaps in knowledge, review, and further advancement. My services include preparation for entrance exams to private and model schools, support for school exams, and the option of lessons in English. I also offer intensive summer courses for the following academic year.
Tutoring in statistics, biochemistry and pharmacology for high school, bachelor, pre-masters students.
As a scientist with a PhD in Nuclear Medicine and extensive research experience in molecular biology and pharmacokinetics, I bring a structured yet flexible approach to teaching. My sessions are tailored to each student’s needs, combining conceptual clarity with problem-solving practice. A typical lesson begins with a brief review of previous concepts, followed by focused teaching of new material using real-world examples from biology, chemistry, or data science. I incorporate visual aids, analogies, and active recall to ensure long-term understanding. Sessions end with practice questions and discussion. I specialize in teaching high school (pre-university), bachelor's, and master's students in subjects like biology, chemistry, biotechnology, and pharmacology. I also help with thesis writing, experimental design, and understanding research papers.
My teaching suits students preparing for university entrance, science diplomas, or those looking to deepen their understanding for research-oriented careers.
Private lessons in Life and Earth Sciences
Life and Earth Sciences
I give you well-structured, well-organized courses and, above all, course summaries. I help you assimilate the course and I give you summary exercises, revision for exams and for international competitions.
Master Biology: Support Courses in General, Cellular and Molecular Biology 🔬
With a Master's degree in biomedical sciences, I offer biology tutoring courses adapted to all ages and levels. Passionate about teaching, I cover various areas of biology, including general biology, cell biology and molecular biology. Whether you are in high school, university, or wish to deepen your knowledge, I adapt to the needs and pace of each student to ensure a solid understanding of the concepts.
With a Master's degree in Biomedical Sciences, I offer biology tutoring for all ages and levels. Passionate about teaching, I cover various areas of biology, including general biology, cellular biology, and molecular biology. Whether you are in high school, university, or simply looking to deepen your understanding, I adapt to the needs and pace of each student to ensure a solid grasp of the concepts.
Food microbiology laboratory ( you can easily learn how to be expert )
Food microbiology laboratory with Mahta.
I am a food science engineer and work in a food factory as a technical officer and laboratory manager.
I can teach you how to be successful in a laboratory and preparing your sample for tests.
Do not hesitate to book your class.
I am looking forward to see you.
Cancer Biology Fundamentals for Medical and Research Students
Unlock the Frontiers of Cancer Biology with an Expert Guide
Are you ready to deepen your understanding of cancer biology and accelerate your journey in medical or research fields? Join my comprehensive online course, meticulously designed for medical and research students who aspire to make a real impact in oncology.
With over 20 years of hands-on experience in cancer research and teaching, and holding both a Master’s and a PhD degree, I bring you a unique blend of academic excellence and practical insights. My career has spanned leading research projects, publishing in top-tier journals, and mentoring hundreds of students who have gone on to successful careers in medicine and biomedical research.
In this course, you will:
Explore the latest advances in cancer biology, from molecular mechanisms to cutting-edge therapies.
Develop critical thinking and research skills essential for your academic and professional growth.
Benefit from personalized feedback and mentorship based on decades of experience
Whether you are preparing for exams, planning your thesis, or aiming to contribute to the fight against cancer, this course will empower you with the knowledge and confidence you need.
Professional tutor offers online and in-person classes on Biology, Biochemistry and Genetic for all levels. English or Spanish.
Biology and natural sciences tutoring with a practical and fun approach. Taught by someone passionate about science!
I cover general topics of the natural sciences and more specific of the biological sciences, including genetics, biochemistry, botany, zoology, ecology, etc.
The classes are ideal for people studying professions whose profile requires basic knowledge of these biological topics to achieve a solid foundation, (medicine, psychology, physiotherapy, agronomy, etc.) but also for other levels of education (Spanish ESO and Bachiller, IB, GSCE, IGSCE, A-Level, AS-Level)
Classes can be in both English and Spanish :)
Courses in engineering microbiology, pharmacology, enzymology, structural and metabolic biochemistry,
This course includes very important scientific concepts for any student who is pursuing a scientific university career or who wishes to integrate the following fields: medicine, pharmacy, SVT, biochemistry, nutrition, pharmacology and cosmetology, engineering in biology, genetic engineering, etc.
Through this, I offer individualized courses, which are based on the following scientific subjects:
- microbiology engineering
-pharmacology
-enzymology
-structural biochemistry
-metabolic biochemistry,
Be sure that you will be very well prepared for your evaluation/project/competition... Since, I will provide you with documents and sheets which summarize the entire course, practice exercises (mqs, complex tasks, articles analytical scientists and others depending on the course and its content).
Finally, together, we will form a team that will exchange information, questions, explanations, good instructions in order to excel in the exam or the competition. Your success will also be mine and I think there is nothing more beautiful and satisfying than seeing the reward of all our efforts put together!
So are you ready to start together?
Biology IGCSE (Cambridge); ( updated code : 0610 )
Are you ready to embark on an exciting journey into the world of biology? Look no further! Join us for the IGCSE Biology Grade 10 Cambridge International Course, led by Dr. Hisham, an experienced Biology Teacher with a passion for nurturing young minds.
Dr. Hisham has a successful track record in teaching biology and has designed this course specifically for IGCSE Biology Grade 10 students. With his hands-on approach and extensive experience, you can expect an enriching learning experience. Dr. Hisham is dedicated to helping every student reach their full potential and creating a supportive and inclusive learning environment.
Having taught over 6,000 hours, Dr. Hisham is skilled in utilizing Learning Management Systems to deliver interactive biology courses. Prepare for captivating lessons, engaging discussions, and interactive activities that will deepen your understanding of the subject.
What sets Dr. Hisham apart is his international training and expertise in collaborating on technology transfer programs. He has successfully fostered collaboration between prestigious institutions across the globe, facilitating knowledge exchange and innovation. By joining this course, you'll not only gain knowledge but also be exposed to a global perspective in the field of biology.
Dr. Hisham's educational background is equally impressive. He holds a bachelor's degree in clinical Pharmaceutical Sciences and specialized training in industrial fermentation technology. This unique combination of education and practical experience allows him to contribute to global advancements in education and research.
Don't miss out on this incredible opportunity to excel in IGCSE Biology with an exceptional teacher and an internationally recognized curriculum. Enroll today and unlock your full potential in the fascinating world of biology!
Course Content:
This course will cover all the major topics that you need to know for your IGCSE Biology Grade 10 exams. Specifically, we will cover:
1. Cells and Organisms
2. Biological Molecules
3. Genetics
4. Ecology
5. Human Physiology and Health
In-depth explanations of these topics will be provided, and examples will be used to demonstrate how these topics are applied in the real world.
Past Paper Solving:
We will go through past papers and analyze questions and answers to gain a better understanding of how the exam questions are structured and how to answer them effectively. We will also discuss different approaches to solving questions and strategies to use in the exam.
Exam Preparation:
In the last part of the course, we will focus on strategies and tips for exam preparation. I will provide guidance on how to use resources to support your learning and advice on how to approach the exam efficiently and effectively.
By the end of this online course, you will have a deep understanding of all the topics covered in the IGCSE Biology Grade 10 exam, and you will be well-prepared to succeed in the exam.