A | B | C | D | E | F | G | H | I | J | K | L | M | N | O | P | Q | R | S | T | U | V | W | X | Y | Z | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
1 | KA Passage | Content Topic | Notes | |||||||||||||||||||||||
2 | Homocystinuria and its associate treatments (Exercise) | 1A: Amino Acids and Proteins | proteins | |||||||||||||||||||||||
3 | What causes red blood cells to sickle? (Exercise) | 1A: Amino Acids and Proteins | the structure and characteristics of hemoglobin proteins | |||||||||||||||||||||||
4 | Investigating families with hormone deficiencies (Exercise) | 1A: Amino Acids and Proteins | ||||||||||||||||||||||||
5 | Concussions in professional athletes (Exercise) | 4A: Kinematics and Force | acceleration | |||||||||||||||||||||||
6 | The world's fastest mammal (Exercise) | 4A: Kinematics and Force | acceleration | |||||||||||||||||||||||
7 | Understanding the ballistics of gene bombardment (Exercise) | 4A: Kinematics and Force | energy conservation | |||||||||||||||||||||||
8 | How do geckoes stick to surfaces? (Exercise) | 4A: Kinematics and Force | forces | |||||||||||||||||||||||
9 | The Forearm as an Example of a Third-class Lever (Exercise) | 4A: Kinematics and Force | forces and torque | |||||||||||||||||||||||
10 | The Forces and Torques Acting on the Hip Joint (Exercise) | 4A: Kinematics and Force | forces and torque | |||||||||||||||||||||||
11 | Patients in a wheelchair (Exercise) | 4A: Kinematics and Force | forces on an inclined plane | |||||||||||||||||||||||
12 | A ramp in an administrative office (Exercise) | 4A: Kinematics and Force | forces on inclined planes | |||||||||||||||||||||||
13 | Hills, inclement weather, and cars (Exercise) | 4A: Kinematics and Force | forces on inclined planes | |||||||||||||||||||||||
14 | Forces on a kidney stone (Exercise) | 4A: Kinematics and Force | Newton's laws and equilibrium | Biochemistry | 60 | |||||||||||||||||||||
15 | Knee injuries in athletes (Exercise) | 4A: Kinematics and Force | Newton's laws and equilibrium | Biology | 72 | |||||||||||||||||||||
16 | Analyzing electrocardiogram voltage signals (Exercise) | 4A: Kinematics and Force | periodic motion and waves. | Psych Sociology | 92 | |||||||||||||||||||||
17 | The mechanics of standing balance (Exercise) | 4A: Kinematics and Force | simple pendulum | CARS | 35 | |||||||||||||||||||||
18 | The speed of a neural impulse (Exercise) | 4A: Kinematics and Force | speed and velocity | Chemistry | 14 | |||||||||||||||||||||
19 | Blood flow in the arteries (Exercise) | 4A: Kinematics and Force | speed and velocity | Physics | 66 | |||||||||||||||||||||
20 | Elasticity and Kinetics of Vulcanized Rubber (Exercise) | 4A: Kinematics and Force | spring force? | Organic Chemistry | 14 | |||||||||||||||||||||
21 | Tension in the muscles (Exercise) | 4A: Kinematics and Force | the force of tension | |||||||||||||||||||||||
22 | Testing new suture material (Exercise) | 4A: Kinematics and Force | the force of tension | |||||||||||||||||||||||
23 | Frictional forces on mobility walkers (Exercise) | 4A: Kinematics and Force | normal forces | |||||||||||||||||||||||
24 | An elevator in a hospital (Exercise) | 4A: Kinematics and Force | normal forces | |||||||||||||||||||||||
25 | Swine flu in Finland (Exercise) | 4A: Kinematics and Force | vectors and scalars | |||||||||||||||||||||||
26 | Ancient Greek catapults and medical packs (Exercise) | 4A: Kinematics and Force | vectors and scalars | |||||||||||||||||||||||
27 | Basal metabolic rate and energy expenditure (Exercise) | 4A: Kinematics and Force | work and energy | |||||||||||||||||||||||
28 | Rollercoasters are energy at work! (Exercise) | 4A: Kinematics and Force | work and energy | |||||||||||||||||||||||
29 | Force of tension - Passage 1 (Exercise) | 4A: Kinematics and Force | ||||||||||||||||||||||||
30 | The effects of microgravity on muscle tissues (Exercise) | 4A: Kinematics and Force | ||||||||||||||||||||||||
31 | Comparing the stress exerted on the body by different running shoes (Exercise) | 4A: Kinematics and Force | ||||||||||||||||||||||||
32 | A scale under water (Exercise) | 4B: Fluids and Gases | fluids at rest | |||||||||||||||||||||||
33 | Coronary heart disease and blood pressure (Exercise) | 4B: Fluids and Gases | fluids at rest | |||||||||||||||||||||||
34 | The tubular system in an aquarium (Exercise) | 4B: Fluids and Gases | fluids in motion | |||||||||||||||||||||||
35 | Hydrotherapy and full body immersion (Exercise) | 4B: Fluids and Gases | fluids in motion | |||||||||||||||||||||||
36 | A fluid flowing through a tube (Exercise) | 4B: Fluids and Gases | Passages that test your knowledge on fluids in motion | |||||||||||||||||||||||
37 | Water flowing out of a tank (Exercise) | 4B: Fluids and Gases | Passages that test your knowledge on fluids in motion | |||||||||||||||||||||||
38 | What conditions influence lyophilisation? (Exercise) | 4B: Fluids and Gases | phase changes | |||||||||||||||||||||||
39 | Your heart does work: A relationship of pressure and volume (Exercise) | 4B: Fluids and Gases | PV diagrams | |||||||||||||||||||||||
40 | Leukocytes roll on blood vessel walls (Exercise) | 4B: Fluids and Gases | the circulatory system | |||||||||||||||||||||||
41 | Chlorofluorocarbons and the environment (Exercise) | 4B: Fluids and Gases | the gas phase of molecules | |||||||||||||||||||||||
42 | Charles' law and gas in a piston (Exercise) | 4B: Fluids and Gases | the gas phase of molecules | |||||||||||||||||||||||
43 | Biological adaptations in response to physical constraints: the case of Atlantic salmon (Exercise) | 4B: Fluids and Gases | the importance of fluids for the circulation of blood, gas movement, and gas exchange | |||||||||||||||||||||||
44 | Heat engines and work (Exercise) | 4B: Fluids and Gases | the kinetic molecular theory of gases | |||||||||||||||||||||||
45 | Ideal gases in medicine (Exercise) | 4B: Fluids and Gases | the kinetic molecular theory of gases | |||||||||||||||||||||||
46 | Preventing barotrauma in deep-sea divers (Exercise) | 4B: Fluids and Gases | ||||||||||||||||||||||||
47 | Pressure regulation and fluid dynamics of the respiratory system (Exercise) | 4B: Fluids and Gases | ||||||||||||||||||||||||
48 | Capacitors in electrocardiography monitors (Exercise) | 4C: Electrostatics and Circuits | capacitors | |||||||||||||||||||||||
49 | Cardiac dysrhythmia and defibrillators (Exercise) | 4C: Electrostatics and Circuits | capacitors | |||||||||||||||||||||||
50 | The circuit elements of a simple defibrillator (Exercise) | 4C: Electrostatics and Circuits | circuit elements | |||||||||||||||||||||||
51 | Neuronal Membranes: Nature's Capacitors (Exercise) | 4C: Electrostatics and Circuits | Circuits and capacitors | |||||||||||||||||||||||
52 | Electrostatics, medicine, and metal spheres (Exercise) | 4C: Electrostatics and Circuits | electrostatics | |||||||||||||||||||||||
53 | Electric Field Treatments and electroporation (Exercise) | 4C: Electrostatics and Circuits | electrostatics | |||||||||||||||||||||||
54 | Mass spectrometry in the operating room (Exercise) | 4C: Electrostatics and Circuits | magnetism | |||||||||||||||||||||||
55 | The effect of contrast agents on MRI signals (Exercise) | 4C: Electrostatics and Circuits | magnetism. | |||||||||||||||||||||||
56 | Using Ultrasounds to Measure Blood Flow Velocity (Exercise) | 4D: Light and Sound | doppler effect | |||||||||||||||||||||||
57 | Hyperopia and convex lenses (Exercise) | 4D: Light and Sound | lenses | |||||||||||||||||||||||
58 | Converging and diverging lenses in a lab (Exercise) | 4D: Light and Sound | lenses | |||||||||||||||||||||||
59 | Analysis of Image Production by the Human Eye (Exercise) | 4D: Light and Sound | lenses | |||||||||||||||||||||||
60 | The Refraction of Light Through The Human Eye (Exercise) | 4D: Light and Sound | Questions reflated to refractions of light | |||||||||||||||||||||||
61 | Eye disease and contact lenses (Exercise) | 4D: Light and Sound | reflection and refraction | |||||||||||||||||||||||
62 | An experiment with light rays and a prism (Exercise) | 4D: Light and Sound | reflection and refraction | |||||||||||||||||||||||
63 | Doppler effect in living tissue (Exercise) | 4D: Light and Sound | sound | |||||||||||||||||||||||
64 | Pure Tone Audiometry in Diagnosing Hearing Loss (Exercise) | 4D: Light and Sound | sound | |||||||||||||||||||||||
65 | How movements influence an ultrasound (Exercise) | 4D: Light and Sound | sound and audition | |||||||||||||||||||||||
66 | Resonance in a tube (Exercise) | 4D: Light and Sound | sound and audition | |||||||||||||||||||||||
67 | A mirror in an operating room (Exercise) | 4D: Light and Sound | spherical mirrors | |||||||||||||||||||||||
68 | Using scallops to correct vision (Exercise) | 4D: Light and Sound | spherical mirrors | |||||||||||||||||||||||
69 | The effects of ear canal acoustics on hearing ability (Exercise) | 4D: Light and Sound | the acoustics of human hearing. | |||||||||||||||||||||||
70 | The effects of ultrasound on different tissue types (Exercise) | 4D: Light and Sound | ultrasound and acoustics | |||||||||||||||||||||||
71 | Technetium decay and its cardiac application | 4E: Atomic Structure and Stoichiometry | Biotech | |||||||||||||||||||||||
72 | Imaging tissue structures using muon tomography (Exercise) | 4E: Atomic Structure and Stoichiometry | particle scattering and microscopy. | |||||||||||||||||||||||
73 | The Radioactivity of Iodine-131 (Exercise) | 4E: Atomic Structure and Stoichiometry | ||||||||||||||||||||||||
74 | Characteristics of Various Therapeutic Radioisotopes (Exercise) | 4E: Atomic Structure and Stoichiometry | ||||||||||||||||||||||||
75 | Understanding the properties of radioactive tracers (Exercise) | 4E: Atomic Structure and Stoichiometry | ||||||||||||||||||||||||
76 | Biochemistry changes that occur after death (Exercise) | 5A: Water | acid-base chemistry | |||||||||||||||||||||||
77 | How do organisms maintain a constant pH range? (Exercise) | 5A: Water | acids and bases | |||||||||||||||||||||||
78 | Using a Freezing Point Depression Osmometer to Measure Serum Osmolality (Exercise) | 5A: Water | osmolality and colligative properties | |||||||||||||||||||||||
79 | Qualitative analysis of contaminated water supply (Exercise) | 5A: Water | qualitative analysis | |||||||||||||||||||||||
80 | The bicarbonate buffering system and titration curves (Exercise) | 5A: Water | the unique nature of water and its solutions | |||||||||||||||||||||||
81 | Applications of Hard-Soft Acid-Base theory (Exercise) | 5A: Water | ||||||||||||||||||||||||
82 | Separating enantiomers in a prescription drug (Exercise) | 5B: Bonding and Isomers | stereochemistry , also separations? | |||||||||||||||||||||||
83 | Melting Point and Thermodynamics of Double-Stranded DNA (Exercise) | 5B: Bonding and Isomers | ||||||||||||||||||||||||
84 | Creating and separating acetone (Exercise) | 5C: Separations and Purifications | distillation | |||||||||||||||||||||||
85 | Purification of caffeine (Exercise) | 5C: Separations and Purifications | purification techniques and chemical reactivity. | |||||||||||||||||||||||
86 | Separations and purifications - Passage 2 (Exercise) | 5C: Separations and Purifications | ||||||||||||||||||||||||
87 | Creating Fuel from Algae (Exercise) | 5C: Separations and Purifications | ||||||||||||||||||||||||
88 | Synthesis of anti-tumor drug Combretastatin and its derivatives (Exercise) | 5D: Biological and Organic Molecules | ||||||||||||||||||||||||
89 | The Chemical Structure Consequences of Beta-lactams (Exercise) | 5D: Biological and Organic Molecules | ||||||||||||||||||||||||
90 | Aldehydes and ketones (Exercise) | 5D: Biological and Organic Molecules | ||||||||||||||||||||||||
91 | Alcohol production and absorption (Exercise) | 5D: Biological and Organic Molecules | ||||||||||||||||||||||||
92 | The structure and function of glycogen. (Exercise) | 5D: Biological and Organic Molecules | ||||||||||||||||||||||||
93 | The influence of histones on genetic inheritance (Exercise) | 5E: Kinetics and Bioenergetics | enzymes | |||||||||||||||||||||||
94 | Thermodynamics of Gallium Arsenide Formation (Exercise) | 5E: Kinetics and Bioenergetics | ||||||||||||||||||||||||
95 | Lactate dehydrogenase and exhausted athletes (Exercise) | 5E: Kinetics and Bioenergetics | ||||||||||||||||||||||||
96 | ||||||||||||||||||||||||||
97 | ||||||||||||||||||||||||||
98 | ||||||||||||||||||||||||||
99 | ||||||||||||||||||||||||||
100 |