Dr. Anas Syed

University of Health Sciences, Lahore
STEM Student

Biography

I’m an Undergraduate Medical Doctor. I’ve experience in teaching biological, anatomical, physiological, pathological and biochemical sciences. I am highly motivated to bring interesting stuff for my virtual students.

Education

BS Medicine
University of Health Sciences, Lahore

Educator Statistics

Numerade tutor for 4 years
596 Students Helped

Topics Covered

Discover the Power of the Cell: Unleash Your Potential with Our Products
The Importance of Understanding the Cell Cycle for Cellular Reproduction
Discover the Fascinating World of Vertebrates: A Comprehensive Guide
Defending Against Viruses: Tips and Strategies | Your Ultimate Guide
Discover the Differences Between Bacteria and Archaea
The Incredible Power of the Nervous System: Understanding its Functions
Circulation and Gas Exchange: Vital Processes for Optimal Health
The Central Dogma: Understanding Gene Expression
Osmoregulation and Excretion: Maintaining Balance and Eliminating Waste
The Fascinating Chemistry of Life: Discovering the Building Blocks
Carbohydrates, proteins, and lipids
Unlocking the Secrets of Cell Signaling: Understanding the Intricacies
Unlocking the Secrets of Photosynthesis: A Comprehensive Guide
Mastering Metabolism 101: A Beginner's Guide
Cellular Respiration and Fermentation: Understanding the Basics
Advancements in Genomics and Biotechnology: Revolutionizing Science
Mendelian Genetics: Understanding Inheritance Patterns
Survival of the Fittest: Life Through a Darwinian Approach
Discover the Fascinating World of Fungi: Unleash the Magic!

Dr. Anas's Textbook Answer Videos

04:14
Biology: How Life Works

In the early 1900 s, Ernest Rutherford produced a beam of very small positive particles and directed it at a thin piece of gold foil just a few atoms thick. Most of the particles passed through the foil without changing their path; very rarely, a particle was deflected. What conclusions can you draw from this experiment about the structure of an atom?

Chapter 2: The Molecules of Life
Dr. Anas Syed
04:15
Biology: How Life Works

What are atoms made up of? Describe each component.

Chapter 2: The Molecules of Life
Dr. Anas Syed
04:10
Biology: How Life Works

From their positions in the periodic table (see Fig. 2.3 ), can you predict how many lithium atoms and hydrogen atoms can combine to form a molecule?

Chapter 2: The Molecules of Life
Dr. Anas Syed
12:56
Biology: How Life Works

What are the differences between covalent bonds and polar covalent, hydrogen, and ionic bonds?

Chapter 2: The Molecules of Life
Dr. Anas Syed
06:47
Biology: How Life Works

Why do containers of water, milk, soda, or other liquids sometimes burst when frozen?

Chapter 2: The Molecules of Life
Dr. Anas Syed
1 2 3 4 5 ... 29

Dr. Anas's Quick Ask Videos

01:26
Biology

Which of the following could be used as a source of DNA to
produce a clone?
Select one:
a. The nucleus of a sperm
b. Two nuclei, one from a sperm cell, and one from an egg
cell
c. The nucleus of an unfertilized egg
d. The nucleus of a skin cell

Dr. Anas Syed
03:23
Biology

An autotriploid plant has 66 chromosomes (3n = 66). Which of the following could be observed in meiosis 1? (Choose multiple)
a) 33 bivalents
b) 22 trivalents
c) 20 bivalents and 2 trivalents
d) 66 bivalents
e) 22 bivalents and 22 univalents

Dr. Anas Syed
05:29
Biology

When comparing head and pubic lice: It is possible that these two "types" of lice are two different species or are two different phenotypes within the same species. Define the terms "species" and discuss how you might go about figuring out if these two types of lice are the same species or different species (if this was not already known)? Please explain in a few sentences that are easy to understand.

Dr. Anas Syed
01:45
Biology

True or False, Plant Physiology class.
Aquaporin is only the protein to transport water molecules
across membranes.

Dr. Anas Syed
04:19
Biology

compare and contrast the internal and external
structures of prokaryotes and eukaryotes.

Dr. Anas Syed
10:03
Biology

Conceptually, how can thousands of different sequences can be
generated from the DNA double helix, leading to the diversity of
life forms, even though DNA consists of only adenine, guanine,
thymine, and cytosine?
What is the number of possible DNA sequences that can be
generated from a DNA molecule that is 100 base pairs in length?
Show work.

Dr. Anas Syed
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