Stages of M-Phase (BIOS 041)
Peer Learning at Lehigh
Stages of M-Phase (BIOS 041)
2:26
Why Cancer is Most Often a Disease of Old Age? (BIOS 041)
Peer Learning at Lehigh
Why Cancer is Most Often a Disease of Old Age? (BIOS 041)
5:53
Therapy Effect on Cancer Cell Cycle Regulation (BIOS 041)
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Therapy Effect on Cancer Cell Cycle Regulation (BIOS 041)
3:50
Comparing Cancer Cells and Normal Cells (BIOS 041)
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Comparing Cancer Cells and Normal Cells (BIOS 041)
4:01
The Giant Squid Axon (BIOS 041)
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The Giant Squid Axon (BIOS 041)
2:21
Actin Filaments and Treadmilling (BIOS 041)
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Actin Filaments and Treadmilling (BIOS 041)
3:23
Chiasma (BIOS 041)
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Chiasma (BIOS 041)
2:29
Subunits of the Three Main Cytoskeletal Structures (BIOS 041)
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Subunits of the Three Main Cytoskeletal Structures (BIOS 041)
4:18
Microtubule Organizing Centers (BIOS 041)
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Microtubule Organizing Centers (BIOS 041)
2:30
Glycolysis and Gluconeogenesis (BIOS 041)
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Glycolysis and Gluconeogenesis (BIOS 041)
4:34
Extracellular Signals (BIOS 041)
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Extracellular Signals (BIOS 041)
2:46
Metaphase in Mitosis and Meiosis (BIOS 041)
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Metaphase in Mitosis and Meiosis (BIOS 041)
3:26
How Yeast Can Give Insights Into Human Cancers? (BIOS 041)
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How Yeast Can Give Insights Into Human Cancers? (BIOS 041)
3:29
Meiosis (BIOS 041)
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Meiosis (BIOS 041)
2:14
Chiasmata and Genetic Crossover (BIOS 041)
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Chiasmata and Genetic Crossover (BIOS 041)
2:01
Cytoskeleton and Microtubules in Medicine (BIOS 041)
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Cytoskeleton and Microtubules in Medicine (BIOS 041)
8:11
Signal Transduction Pathways (BIOS 041)
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Signal Transduction Pathways (BIOS 041)
3:37
What Happens When DNA Damage is Too Extensive?  (BIOS 041)
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What Happens When DNA Damage is Too Extensive? (BIOS 041)
3:54
Understanding the Electron Transport Chain (BIOS 041)
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Understanding the Electron Transport Chain (BIOS 041)
3:36
Electrochemical Gradients and Membrane Transport (BIOS 041)
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Electrochemical Gradients and Membrane Transport (BIOS 041)
4:34
Comparing Stage 1 of Photosynthesis and Oxidative Phosphorylation  (BIOS 041)
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Comparing Stage 1 of Photosynthesis and Oxidative Phosphorylation (BIOS 041)
5:07
Glycogen Synthesis (BIOS 041)
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Glycogen Synthesis (BIOS 041)
4:52
Brown Fat Cells Oxidize Fats to Produce Heat (BIOS 041)
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Brown Fat Cells Oxidize Fats to Produce Heat (BIOS 041)
2:04
Main Components of the Mitochondria (BIOS 041)
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Main Components of the Mitochondria (BIOS 041)
4:02
Ratio of ATP and ADP, and How Cyanide Upsets this Balance (BIOS 041)
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Ratio of ATP and ADP, and How Cyanide Upsets this Balance (BIOS 041)
1:59
Where Does Our Oxygen Come From? (BIOS 041)
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Where Does Our Oxygen Come From? (BIOS 041)
2:41
Energy Storage: Short Term vs. Long Term (BIOS 041)
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Energy Storage: Short Term vs. Long Term (BIOS 041)
2:57
Locations of Mitochondria (BIOS 041)
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Locations of Mitochondria (BIOS 041)
1:36
Products that Build Up Without Fermentation (BIOS 041)
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Products that Build Up Without Fermentation (BIOS 041)
8:04
Ramifications of Metabolites being Substrates for Different Enzymes (BIOS 041)
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Ramifications of Metabolites being Substrates for Different Enzymes (BIOS 041)
2:44
ATP Production Location by Oxidative Phosphorylation in Different Cell Types (BIOS 041)
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ATP Production Location by Oxidative Phosphorylation in Different Cell Types (BIOS 041)
3:56
Glucose Transporters in Membrane (BIOS 041)
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Glucose Transporters in Membrane (BIOS 041)
3:06
Movement of Membrane Proteins (BIOS 041)
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Movement of Membrane Proteins (BIOS 041)
4:09
Excitatory vs. Inhibitory Neurotransmitters (BIOS 041)
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Excitatory vs. Inhibitory Neurotransmitters (BIOS 041)
3:28
Membrane Depolarization and Action Potential along the Membrane (BIOS 041)
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Membrane Depolarization and Action Potential along the Membrane (BIOS 041)
3:04
Assembly of the Lipid Bilayer, and Formation of Closed Vesicles, Organelles, and Cells (BIOS 041)
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Assembly of the Lipid Bilayer, and Formation of Closed Vesicles, Organelles, and Cells (BIOS 041)
2:58
Structure and Function of the Bacteriorhodopsin (BIOS 041)
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Structure and Function of the Bacteriorhodopsin (BIOS 041)
2:47
How Malonate Helped to Reveal the Citric Acid Cycle (BIOS 041)
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How Malonate Helped to Reveal the Citric Acid Cycle (BIOS 041)
2:51
Alpha Helices Across Lipid Bilayer (BIOS 041)
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Alpha Helices Across Lipid Bilayer (BIOS 041)
1:18
How Cells Control the Lifetime of an mRNA Molecule? (BIOS 041)
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How Cells Control the Lifetime of an mRNA Molecule? (BIOS 041)
2:29
Cell Cortex in Plant and Animal Cells (BIOS 041)
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Cell Cortex in Plant and Animal Cells (BIOS 041)
2:22
Length and Saturation of Lipids' Hydrophobic Tails Affect the Fluidity of a Cell Membrane (BIOS 041)
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Length and Saturation of Lipids' Hydrophobic Tails Affect the Fluidity of a Cell Membrane (BIOS 041)
4:01
How do you get different cell types with same genome? (BIOS 041)
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How do you get different cell types with same genome? (BIOS 041)
1:34
Junk DNA (BIOS 041)
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Junk DNA (BIOS 041)
2:48
Controlling Quality of RNAs Exported from Nucleus (BIOS 041)
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Controlling Quality of RNAs Exported from Nucleus (BIOS 041)
1:54
Comparison of the Eukaryotic and Prokaryotic Cell (BIOS 041)
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Comparison of the Eukaryotic and Prokaryotic Cell (BIOS 041)
4:35
Enzymes and Equilibrium (BIOS 041)
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Enzymes and Equilibrium (BIOS 041)
0:50
Phosphoanhydride, Phosphodiester, and Hydrogen Bonds (BIOS 041)
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Phosphoanhydride, Phosphodiester, and Hydrogen Bonds (BIOS 041)
2:43
Photosynthesis versus Cellular Respiration (BIOS 041)
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Photosynthesis versus Cellular Respiration (BIOS 041)
1:48
Meselson-Stahl Experiment (BIOS 041)
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Meselson-Stahl Experiment (BIOS 041)
3:19
Comparing mRNA Transcription Processes of Eukaryotes and Bacteria (BIOS 041)
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Comparing mRNA Transcription Processes of Eukaryotes and Bacteria (BIOS 041)
3:16
Feedback Inhibition (BIOS 041)
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Feedback Inhibition (BIOS 041)
2:06
How the structure of DNA suggests a copying mechanism (BIOS 041)
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How the structure of DNA suggests a copying mechanism (BIOS 041)
2:45
Evaluating How Noncovalent Bonds Influence Protein Structure (BIOS 041)
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Evaluating How Noncovalent Bonds Influence Protein Structure (BIOS 041)
3:22
How Enzymes Increase Reaction Rates (BIOS 041)
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How Enzymes Increase Reaction Rates (BIOS 041)
1:18
Why Did Biologists Thinks Proteins Carried Genetic Information? (BIOS 041)
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Why Did Biologists Thinks Proteins Carried Genetic Information? (BIOS 041)
3:27
Damages that Can Alter DNA (BIOS 041)
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Damages that Can Alter DNA (BIOS 041)
3:37
How Nucleoside Triphosphates Provide Energy for DNA Replication (BIOS 041)
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How Nucleoside Triphosphates Provide Energy for DNA Replication (BIOS 041)
2:35
How Enzymes Catalyze Chemical Reactions (BIOS 041)
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How Enzymes Catalyze Chemical Reactions (BIOS 041)
4:01
Bonds that Link Together DNA (BIOS 041)
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Bonds that Link Together DNA (BIOS 041)
1:46
Phospholipid Bilayer and Saturated vs Unsaturated Fatty Acid Tails
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Phospholipid Bilayer and Saturated vs Unsaturated Fatty Acid Tails
3:21
Carbon, Hydrogen, Oxygen, and Nitrogen in Organic Molecules (BIOS 041)
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Carbon, Hydrogen, Oxygen, and Nitrogen in Organic Molecules (BIOS 041)
4:01
Structural Differences of Prokaryotes v. Eukaryotes (BIOS 041)
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Structural Differences of Prokaryotes v. Eukaryotes (BIOS 041)
2:40
Describing the End Replication Problem (BIOS 041)
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Describing the End Replication Problem (BIOS 041)
3:43
Mitochondria and Chloroplasts Work Together to Drive Reactions (BIOS 041)
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Mitochondria and Chloroplasts Work Together to Drive Reactions (BIOS 041)
3:47
The Role of Unstructured Protein Sequences (BIOS 041)
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The Role of Unstructured Protein Sequences (BIOS 041)
4:21
Issue with the Moving Replication Fork (BIOS 041)
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Issue with the Moving Replication Fork (BIOS 041)
1:50
Structure/Function of The Mitochondria (BIOS 041)
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Structure/Function of The Mitochondria (BIOS 041)
2:54
ATP Hydrolysis Drives Energetically Unfavorable Reactions (BIOS 041)
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ATP Hydrolysis Drives Energetically Unfavorable Reactions (BIOS 041)
4:31
Three Major Filaments of the Cytoskeleton (BIOS 041)
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Three Major Filaments of the Cytoskeleton (BIOS 041)
2:49
Central Dogma of DNA (BIOS 041)
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Central Dogma of DNA (BIOS 041)
2:24
Electrostatic Attractions, H-bonding, and Hydrophobic Forces (BIOS 041)
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Electrostatic Attractions, H-bonding, and Hydrophobic Forces (BIOS 041)
2:02
Differences Between Elements, Atoms, Ions, Isotope, Molecules and Salts (BIOS 041)
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Differences Between Elements, Atoms, Ions, Isotope, Molecules and Salts (BIOS 041)
2:06
Comparing Eukaryotic and Prokaryotic Chromosomes (BIOS 041)
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Comparing Eukaryotic and Prokaryotic Chromosomes (BIOS 041)
3:27
Relate Atom's Behavior to Position in Periodic Table (BIOS 041)
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Relate Atom's Behavior to Position in Periodic Table (BIOS 041)
2:24
Evolution of Mitochondria and Chloroplast (BIOS 041)
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Evolution of Mitochondria and Chloroplast (BIOS 041)
3:46
Compare RNA and DNA and Roles in Cells (BIOS 041)
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Compare RNA and DNA and Roles in Cells (BIOS 041)
2:36
Lac Operon (BIOS 115)
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Lac Operon (BIOS 115)
13:29
Reverse Fischer Mechanism Problem (CHM 112)
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Reverse Fischer Mechanism Problem (CHM 112)
6:23
Determining Whether a Cyclic Compound is Aromatic, Anti-Aromatic or Non-Aromatic
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Determining Whether a Cyclic Compound is Aromatic, Anti-Aromatic or Non-Aromatic
5:57
Example SN1 Mechanism Problem (CHM 110)
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Example SN1 Mechanism Problem (CHM 110)
3:05
Walkthrough a Synthesis Problem (CHM 110)
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Walkthrough a Synthesis Problem (CHM 110)
1:37
Synthesis Problem Using Grignards (CHM 110)
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Synthesis Problem Using Grignards (CHM 110)
2:25
When Should I Use a Grignard? (CHM 110)
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When Should I Use a Grignard? (CHM 110)
3:45
Using a Grignard Reagent in a Mechanism (CHM 110)
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Using a Grignard Reagent in a Mechanism (CHM 110)
3:51
Drawing a Chair Molecule and Finding Most Stable Conformation (CHM 110)
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Drawing a Chair Molecule and Finding Most Stable Conformation (CHM 110)
6:01
Converting A Newman Projection to Wedge and Dash (CHM 110)
Peer Learning at Lehigh
Converting A Newman Projection to Wedge and Dash (CHM 110)
3:22