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Since November 2021
Instructor since November 2021
Science class for school students with all its branches chemistry, biology, and physics for British and American system
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From 4.83 $ /h
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I do explain science(chemistry, biology, physics) for students in sample way and help them to memorize the information easily.


I teach American and IG system.

We explain the lesson and solve on it from past papers or work book and the next class we have a quick quiz on the last classes we took .
Location
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At student's location :
  • Around Cairo, Egypt
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At teacher's location :
  • الياسمين 5, الحى الاول، Al Hay Al Asher, Nasr City, Egypt
About Me
I am patient with students.
I love teaching which makes it easy for me to deliver information to students in different ways until they completely understand everything.
Education
. My school was Nermine Ismail Britsh school (International General Certificate of Secondary Education).
.My university is the German University in Cairo.
.My Major is pharmacy and biotechnology.
Experience / Qualifications
I have been working as a private tutor for several years.
I always motivate my students to get higher grades.
During my classes, I encourage them to interact so they can understand well.
Age
Children (7-12 years old)
Teenagers (13-17 years old)
Adults (18-64 years old)
Seniors (65+ years old)
Student level
Beginner
Intermediate
Advanced
Duration
90 minutes
120 minutes
The class is taught in
English
Arabic
Reviews
Availability of a typical week
(GMT -04:00)
New York
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At teacher's location
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At student's home
Mon
Tue
Wed
Thu
Fri
Sat
Sun
00-04
04-08
08-12
12-16
16-20
20-24
Chemistry for grade 11 is a very important subject as it introduces students to university curriculum especially for students aiming for medical universities, even students aiming for engineering needs this bases as they are going to study chemistry during their first year.
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Nucleic acids are essential biomolecules that store and transmit genetic information. They play a crucial role in all living organisms’ growth, development, and functioning. The two nucleic acid types are deoxyribonucleic acid (DNA) and ribonucleic acid (RNA), and they both have nucleotides as their building blocks.
What Are Nucleic Acids?
Nucleic acids are complex, naturally occurring biomolecules that hold an organism’s genetic information. They transmit hereditary traits from parents to offspring.
Living organisms also need nucleic acids to direct their growth and development. Nucleic acids enable protein synthesis, which is responsible for overall cell structure and function and entails cells creating protein from amino acids.
What Are the Building Blocks of Nucleic Acids?
They consist of numerous nucleotides chained together. Each nucleotide contains:
A sugar molecule: In DNA, this is deoxyribose, while in RNA, it’s ribose.
A phosphate group: A phosphorus atom bonded to four oxygen atoms.
One of four organic bases: Adenine (A), Thymine(T) in DNA or Uracil(U) in RNA, Guanine (G), and Cytosine(C). All these bases are nitrogenous.
The sequence of these four nitrogenous bases, along with the sugar and phosphate, forms a nucleic acid chain. The chain contains the instructions for an organism’s survival and functioning.
What Are Nucleic Acids Responsible For?
Nucleic acids are crucial for all living organisms as they carry the genetic code necessary for life. Doctors and scientists use nucleic acids to study, diagnose, and treat various genetic disorders. For example, DNA testing can identify inherited diseases or determine paternity.
Nucleic acids also play a significant role in protein synthesis. As mentioned earlier, proteins are essential for cell structure and function. They control nearly all cellular processes, including metabolism, respiration, growth, and immune responses.
Without the instructions provided by nucleic acids, proteins would not be produced, and life as we know it would not exist.
Additionally, nucleic acids have a critical role in cell signaling. They regulate gene expression, which involves turning genes on and off to control cellular functions. It allows cells to respond to their environment and maintain homeostasis.
What’s the Importance of Nucleotide Sequence?
Did you know that the pattern and sequence that nucleotides follow when forming a nucleic acid affects its function? Each combination of the four nitrogenous bases (A, T/U, G, and C) creates a unique genetic code that determines the production of specific proteins.
Even small changes in the sequence can significantly affect an organism’s traits or health. For example, a single mutation in the DNA sequence can lead to genetic disorders like cystic fibrosis or sickle cell anemia.
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DNA (deoxyribonucleic acid) is typically a double-stranded molecule that stores hereditary information in all living organisms. It contains four nitrogenous bases;
Adenine (A).
Guanine (G).
Cytosine (C).
Thymine(T).
You can have one of the four organic bases pairing up and forming the rungs of the DNA ladder. The sequence of these bases determines an organism’s genetic traits.
RNA (ribonucleic acid), on the other hand, is a nucleic acid monomer. It’s generally single-stranded and consists of three main types
Messenger RNA (mRNA) carries genetic information from DNA to ribosomes for protein synthesis.
Ribosomal RNA (rRNA) forms part of the ribosome structure and helps translate mRNA into proteins.
Transfer RNA (tRNA): During protein synthesis, these nucleic acids use their anticodon sequence to match the codon sequence on mRNA and transfer amino acids to the ribosome.
These three RNA types work together to read and translate the genetic code stored in DNA into proteins, a process crucial for an organism’s survival and development.
DNA vs. RNA
While both are composed of nucleotides, DNA entails a double helix structure and two complementary strands, but RNA is a single-stranded monomer.
Another notable difference is the type of sugar present in each molecule. DNA contains deoxyribose sugar, while RNA contains ribose sugar. This slight difference in sugars also affects the stability and longevity of the two types of nucleic acids.
DNA is known for its exceptional stability, which makes it suitable for storing genetic information. On the other hand, RNA is less stable and more prone to mutations, making it better suited for carrying out short-term functions in protein synthesis.
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Genetic engineering involves manipulating an organism’s DNA to express specific traits. Scientists use techniques like gene transfer to introduce foreign genes into an organism’s genome and alter its genetic makeup.
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About me ✨
Hi — I’m Abanoub Ayad 👋. I come from a background in the cosmetics & pharmaceutical industries with 5 years’ experience, and I’m passionate about teaching chemistry. My biggest joy is turning the scary parts of chemistry into something clear, useful, and even fun for my students 🔬💡.

I’ve taught students across different curricula and levels, and I love helping learners build deep understanding and real exam confidence — not just memorization 📚✅.

What I teach 🧪
GCSE / IGCSE | A-Level (AS & A2) | IB | AP | American system (grades 7–12) | University-level General, Organic & Inorganic Chemistry

My lessons include 🎯
• Clear concept explanations — I make complex ideas simple.
• Worked examples + past-paper practice — real exam skills.
• Regular homework for reinforcement.
• Short quizzes at the end of each topic to check progress.
• Personalized study plans based on a diagnostic assessment.

Teaching style 🎓
Interactive, patient, and tailored. I use diagrams, mnemonics, and real-life examples to help memory and intuition. I also bring in data-driven methods (I use statistical tools when helpful) to track improvement and focus on weak spots 📈🧠.

Policies & what I don’t do 🚦
• I won’t complete exams or homework for you — I’ll teach you how to do them.
• I provide clear feedback and practice so you can succeed independently.

Why choose me? 🌟
I care about each student’s goals — whether that’s boosting grades, preparing for admissions, or building real scientific understanding. Book your first lesson and let’s make chemistry a subject you enjoy and succeed at! ☕🧪🙌
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Contact Noura
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Nucleic acids are essential biomolecules that store and transmit genetic information. They play a crucial role in all living organisms’ growth, development, and functioning. The two nucleic acid types are deoxyribonucleic acid (DNA) and ribonucleic acid (RNA), and they both have nucleotides as their building blocks.
What Are Nucleic Acids?
Nucleic acids are complex, naturally occurring biomolecules that hold an organism’s genetic information. They transmit hereditary traits from parents to offspring.
Living organisms also need nucleic acids to direct their growth and development. Nucleic acids enable protein synthesis, which is responsible for overall cell structure and function and entails cells creating protein from amino acids.
What Are the Building Blocks of Nucleic Acids?
They consist of numerous nucleotides chained together. Each nucleotide contains:
A sugar molecule: In DNA, this is deoxyribose, while in RNA, it’s ribose.
A phosphate group: A phosphorus atom bonded to four oxygen atoms.
One of four organic bases: Adenine (A), Thymine(T) in DNA or Uracil(U) in RNA, Guanine (G), and Cytosine(C). All these bases are nitrogenous.
The sequence of these four nitrogenous bases, along with the sugar and phosphate, forms a nucleic acid chain. The chain contains the instructions for an organism’s survival and functioning.
What Are Nucleic Acids Responsible For?
Nucleic acids are crucial for all living organisms as they carry the genetic code necessary for life. Doctors and scientists use nucleic acids to study, diagnose, and treat various genetic disorders. For example, DNA testing can identify inherited diseases or determine paternity.
Nucleic acids also play a significant role in protein synthesis. As mentioned earlier, proteins are essential for cell structure and function. They control nearly all cellular processes, including metabolism, respiration, growth, and immune responses.
Without the instructions provided by nucleic acids, proteins would not be produced, and life as we know it would not exist.
Additionally, nucleic acids have a critical role in cell signaling. They regulate gene expression, which involves turning genes on and off to control cellular functions. It allows cells to respond to their environment and maintain homeostasis.
What’s the Importance of Nucleotide Sequence?
Did you know that the pattern and sequence that nucleotides follow when forming a nucleic acid affects its function? Each combination of the four nitrogenous bases (A, T/U, G, and C) creates a unique genetic code that determines the production of specific proteins.
Even small changes in the sequence can significantly affect an organism’s traits or health. For example, a single mutation in the DNA sequence can lead to genetic disorders like cystic fibrosis or sickle cell anemia.
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For example, Advanced ChemTech specializes in peptide production. We’re behind a treasure trove of novel essentials like shielded amino acids, coupling reagents, fancy linkers, and resins. Our stash also includes rare amino acids and top-notch building blocks!
The principles of nucleotide sequencing inform many of our products, allowing us to create custom peptides for any commercial application. Our team of experts can synthesize, purify, and analyze peptide sequences with precision and efficiency.
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As already mentioned, DNA and RNA are the two nucleic acid types. These two molecules differ in structure and function, but they share a common purpose: to store and transmit genetic information.
DNA (deoxyribonucleic acid) is typically a double-stranded molecule that stores hereditary information in all living organisms. It contains four nitrogenous bases;
Adenine (A).
Guanine (G).
Cytosine (C).
Thymine(T).
You can have one of the four organic bases pairing up and forming the rungs of the DNA ladder. The sequence of these bases determines an organism’s genetic traits.
RNA (ribonucleic acid), on the other hand, is a nucleic acid monomer. It’s generally single-stranded and consists of three main types
Messenger RNA (mRNA) carries genetic information from DNA to ribosomes for protein synthesis.
Ribosomal RNA (rRNA) forms part of the ribosome structure and helps translate mRNA into proteins.
Transfer RNA (tRNA): During protein synthesis, these nucleic acids use their anticodon sequence to match the codon sequence on mRNA and transfer amino acids to the ribosome.
These three RNA types work together to read and translate the genetic code stored in DNA into proteins, a process crucial for an organism’s survival and development.
DNA vs. RNA
While both are composed of nucleotides, DNA entails a double helix structure and two complementary strands, but RNA is a single-stranded monomer.
Another notable difference is the type of sugar present in each molecule. DNA contains deoxyribose sugar, while RNA contains ribose sugar. This slight difference in sugars also affects the stability and longevity of the two types of nucleic acids.
DNA is known for its exceptional stability, which makes it suitable for storing genetic information. On the other hand, RNA is less stable and more prone to mutations, making it better suited for carrying out short-term functions in protein synthesis.
Gene Expression
Gene expression entails coping or transcribing the genetic information in DNA into RNA. It enables organisms to produce essential proteins for growth and development.
Genetic engineering involves manipulating an organism’s DNA to express specific traits. Scientists use techniques like gene transfer to introduce foreign genes into an organism’s genome and alter its genetic makeup.
Final Thoughts on the Structure and Function of Nucleic Acids
In summary, nucleic acids are essential to all living organisms and are responsible for storing and transmitting genetic information. Composed of nucleotides, DNA and RNA have distinct structures and functions in the cell.
DNA serves as the blueprint for making proteins, while RNA plays an active role in protein synthesis. With advancements in genetic engineering, our understanding of these molecules and their functions continues to grow. Studying nucleic acid molecules can help us gain insights into genetic disorders and develop potential treatments. That’s why you need to know the difference between nucleic acids and amino acids.
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Hello, the courses presented here are dedicated for school students, i.e Middle (Preparatory) and High (Secondary) levels, as well as students of higher (University) education who struggle in the following subjects: sciences, biology, and microbiology. The aim of these courses is to help the students master the foundational concepts in the mentioned subjects and eventually improve on an academic level.This is meant to be achieved through a combination of personalised instruction, interactive exercises, and real-world applications.

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As a tutor with clinical and academic experience in the field, my goal is to make complex gynecology topics clear, structured, and exam-ready—ideal for students in pre-clinical or early clinical years.

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Reproductive endocrinology: PCOS, infertility, hormonal regulation

Contraception and family planning

Menopause and hormone replacement therapy

Cervical screening programs and prevention of gynecological cancers

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A deep understanding of core gynecology concepts

Ability to approach clinical vignettes with confidence

Preparedness for written exams, OSCEs, and clinical discussions

Support in integrating basic science with clinical relevance

Each session is tailored to your level, whether you're just starting gynecology or reviewing for exams. My approach is interactive and student-centered, focusing on clinical relevance, exam technique, and logical understanding rather than memorization.
verified badge
About me ✨
Hi — I’m Abanoub Ayad 👋. I come from a background in the cosmetics & pharmaceutical industries with 5 years’ experience, and I’m passionate about teaching chemistry. My biggest joy is turning the scary parts of chemistry into something clear, useful, and even fun for my students 🔬💡.

I’ve taught students across different curricula and levels, and I love helping learners build deep understanding and real exam confidence — not just memorization 📚✅.

What I teach 🧪
GCSE / IGCSE | A-Level (AS & A2) | IB | AP | American system (grades 7–12) | University-level General, Organic & Inorganic Chemistry

My lessons include 🎯
• Clear concept explanations — I make complex ideas simple.
• Worked examples + past-paper practice — real exam skills.
• Regular homework for reinforcement.
• Short quizzes at the end of each topic to check progress.
• Personalized study plans based on a diagnostic assessment.

Teaching style 🎓
Interactive, patient, and tailored. I use diagrams, mnemonics, and real-life examples to help memory and intuition. I also bring in data-driven methods (I use statistical tools when helpful) to track improvement and focus on weak spots 📈🧠.

Policies & what I don’t do 🚦
• I won’t complete exams or homework for you — I’ll teach you how to do them.
• I provide clear feedback and practice so you can succeed independently.

Why choose me? 🌟
I care about each student’s goals — whether that’s boosting grades, preparing for admissions, or building real scientific understanding. Book your first lesson and let’s make chemistry a subject you enjoy and succeed at! ☕🧪🙌
Good-fit Instructor Guarantee
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Contact Noura