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The image consists of a WhatsApp chat between a student and MEB team. The student wants helps with her homework and also wants the tutor to explian the steps over Google meet. The MEB team promptly answered the chat and assigned the work to a suitable tutor after payment was made by the student. The student received the services on time and gave 5 star rating to the tutor and the company MEB.

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    MEB Tutor ID #3191

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    I hold a strong academic background in Biology with a specialization in Plant Biotechnology, and I am pas...

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Genetic engineering Online Tutoring & Homework Help

What is Genetic engineering?

1. Genetic engineering is the direct manipulation of an organism’s genes using biotechnology. By inserting, deleting or modifying DNA sequences scientists create Genetically Modified Organisms (GMO) for agriculture, medicine and research. For example, E. coli bacteria engineered to produce human insulin revolutionized diabetes treatment. 2. Popular alternative names include recombinant DNA technology, gene splicing, genome editing and genetic modification. 3. Major topics in genetic engineering cover: • DNA sequencing and synthesis (e.g. reading and writing genetic code) • Polymerase Chain Reaction (PCR – Polymerase Chain Reaction) for amplifying DNA • CRISPR-Cas9 (Clustered Regularly Interspaced Short Palindromic Repeats) genome editing systems • Transgenic organisms and gene therapy (plants like Bt corn or human disease treatments) • Synthetic biology and bioinformatics for designing and analyzing new biological systems • Ethical, legal and regulatory aspects of GMOs. Some labs focus on developing drought-resistant crops, others on personalized medicine. 4. A brief history of genetic engineering In 1972 Paul Berg created the first recombinant DNA molecule by combining viral and bacterial DNA. In 1973 Herbert Boyer and Stanley Cohen transferred antibiotic‐resistance genes between bacteria. The 1975 Asilomar Conference set safety guidelines for recombinant work. By 1980 Monsanto introduced the first commercial GMO crop. The 1990s saw the first human gene therapy trial and the launch of the Human Genome Project. In 2012 Jennifer Doudna and Emmanuelle Charpentier adapted CRISPR-Cas9 for precise genome editing. Since then golden rice and CAR‑T cancer therapies demonstrated real‑world impact, though controversies sometimes flare up.

How can MEB help you with Genetic engineering?

MEB offers one‑on‑one online tutoring in genetic engineering. If you are a school, college or university student and want top grades on assignments, lab reports, tests, projects, essays or dissertations, you can use our 24/7 instant online genetic engineering homework help. We like to chat on WhatsApp. If you don’t use WhatsApp, just send us an email at meb@myengineeringbuddy.com.

Most of our students are in the USA, Canada, the UK, the Gulf, Europe and Australia, but we help students from everywhere.

Students come to us because some subjects are hard, they have too much homework, some questions or ideas take a long time to understand, or they have health, personal or learning challenges. Others work part‑time, miss classes, or find it hard to keep up with their tutor’s pace.

If you are a parent and your ward is finding genetic engineering difficult, contact us today. We’ll help them do their best on exams and homework—they’ll thank you!

MEB also offers tutoring in more than 1,000 other subjects. Our expert tutors are ready to help your student learn confidently and enjoy a stress‑free academic life.

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What is so special about Genetic engineering?

Genetic engineering is special because it lets us directly change the genes inside living cells. This means we can fix bad traits, create new ones, or fight diseases at their source. It combines biology, chemistry, and engineering in one field. No other subject works on the building blocks of life so precisely, making it one of the most unique parts of biomedical engineering.

Compared to other academic subjects or software programs, genetic engineering has clear benefits and unique challenges. Its main advantage is real‑world impact on health, food, and the environment through living systems. On the downside, it faces strict rules, high lab costs, and debates over safety and ethics. No other subject handles living matter so directly, which can be both powerful and risky.

What are the career opportunities in Genetic engineering?

Students who finish a bachelor’s in genetic engineering often move on to a master’s or Ph.D. in areas like molecular genetics, synthetic biology, or bioinformatics. Many universities now offer specialized programs in CRISPR technology and gene therapy. These courses include hands‑on lab work and the latest research, keeping up with trends in precision medicine and agriculture.

Career options in genetic engineering are wide. Graduates can become research scientists, working on gene editing in plants or animals. Bioprocess engineers design systems to produce drugs or vaccines. Genetic counselors help families understand inherited conditions. Some work in regulatory affairs, ensuring new therapies meet safety standards. These roles blend lab experiments, data analysis, and teamwork.

Studying genetic engineering prepares students for these complex tasks. Test preparation builds a strong base in molecular biology, lab techniques, and bioethics. It also readies learners for professional exams and certifications that many employers value, such as those in clinical genetics.

Genetic engineering has real‑world impact. It drives gene therapies to treat diseases like cystic fibrosis, creates drought‑resistant crops, and develops faster vaccine production. Its advantages include precise DNA edits, reduced side effects in treatments, and higher yields in agriculture, making it key to future health and food security.

How to learn Genetic engineering?

Start by building a strong base in biology, chemistry and math. Step 1: Review key concepts in molecular biology and genetics from an intro textbook. Step 2: Enroll in an online course or watch video lectures to see real examples. Step 3: Practice problems on gene structure, CRISPR, cloning techniques and read simple research articles. Step 4: Use virtual lab simulators or basic DIY kits to get hands‑on feel. Step 5: Join study groups or online forums to ask and answer questions.

Genetic engineering can seem tough because it mixes different sciences and lab work. If you focus on one topic at a time and keep practicing, you’ll find patterns and tricks to make it easier. Regular review, problem solving and small project work turn hard ideas into clear steps.

You can learn a lot on your own with books, videos and free courses, but a tutor speeds things up. A tutor helps you stay on track, explains tricky parts in simple terms and gives instant feedback on assignments or lab reports.

MEB offers 24/7 one‑on‑one online tutoring, detailed assignment help and exam prep for genetic engineering. Our tutors guide you through concepts, check your work, set up study plans and share lab tips. All at an affordable fee and on schedules that fit your life.

Time varies by your background and goals. If you study 5–6 hours a week, you can grasp the basics in 3–4 months. To reach an intermediate level, plan for up to 6 months. Hands‑on experience and deeper topics may take 9–12 months or more.

Here are some top resources to get started: YouTube channels like CrashCourse Biology and iBiology, Khan Academy Genetics, MIT OpenCourseWare courses; websites such as NCBI and PubMed; structured courses on Coursera and edX; NCERT Biology textbooks for basics. Core textbooks include Molecular Biology of the Cell (Alberts), Genetics: Analysis and Principles (Brooker), Recombinant DNA: Genes and Genomes (Watson). Join online forums like ResearchGate and Reddit r/biology to ask questions and share notes.

College students, parents, tutors from USA, Canada, UK, Gulf etc: if you need a helping hand—online 1:1 24/7 tutoring or assignment help—our MEB tutors can guide you at an affordable fee.

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