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Hyperbola
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Hyperbolas Notes
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Graphing Hyperbolas
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defining hyperbolas
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lesson on hyperbola
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memorize 7-6.4 hehe
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Electrical Activity of a Membrane
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Untitled
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NEU 201 Precept 7
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Inhibitors NT
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Nervous System - Part 2 Notes
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Lecture 5
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Exam 2 AP study guide-1
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lecture 17
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Action Potentials in Neurons
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Flashcards (42)
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hyperbola parts and definition
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Hyperpolarization and IPSPs
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hyperbola trig functions
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Three types of muscle tissue o Compare and contrast the three basic types of muscle tissue. • List four characteristics of muscle tissue. • List the functions of muscle tissue • Describe the gross structure of a skeletal muscle. o Organization of muscle, fascicle, muscle fiber, myofibril, myofilaments o Connective tissue sheaths of skeletal muscle: ▪ epimysium, perimysium, and endomysium. o Describe what origins and insertions are in a general terms • Describe the microscopic structure and functional roles of the myofibrils, sarcomere, sarcoplasmic reticulum, and T tubules of skeletal muscle fibers. o Myoglobin, glycosomes o M line, Z disc o Triad • Sliding filament model of muscle contraction • Composition of thick and thin filaments o Structure of Actin, Tropomyosin, Troponin, Myosin • AP, hyperpolarization, depolarization • Ion channel function • Refractory period • Explain how muscle fibers are stimulated to contract by describing events that occur at the neuromuscular junction. • Follow the events of excitation-contraction coupling that lead to cross bridge activity. • Describe cross bridge cycling • Define motor unit and muscle twitch, and describe the events occurring during the three phases of a muscle twitch. • Muscle Atrophy • Explain how smooth, graded contractions of a skeletal muscle are produced. o Temporal summation o Multiple motor unit summation (recruitment) ▪ Know the recruitment thresholds • Differentiate between isometric and isotonic contractions. • Describe three ways in which ATP is generated during skeletal muscle contraction. o Be able to compare and contrast the three modes of ATP generation o Know important molecules (i.e. creatine), whether oxygen is necessary, by-products (i.e. lactic acid) • Define EPOC and muscle fatigue. List possible causes of muscle fatigue. • Describe factors that influence the force, velocity, and duration of skeletal muscle contraction. • Describe the three types of skeletal muscle fibers (slow and fast oxidative, fast glycolytic) • Compare and contrast the effects of aerobic and resistance exercise on skeletal muscles • Compare the gross and microscopic anatomy of smooth muscle cells to that of skeletal muscle cells
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lesson on hyperbola
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1 - convexity & hyperplanes
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answers for Chapters 5, 6, and 7 based on your study guide: ⸻ ✅ Chapter 5 – Skeletal System 1. Functions of the Skeletal System • Support • Protection • Movement (with muscles) • Mineral storage (calcium, phosphorus) • Blood cell production (hematopoiesis) • Fat storage (yellow marrow) ⸻ 2. Axial vs Appendicular Skeleton Axial (80 bones) • Skull • Vertebral column • Ribs • Sternum • Hyoid Appendicular (126 bones) • Pectoral girdle (clavicle, scapula) • Upper limbs • Pelvic girdle • Lower limbs ⸻ 3. Bone Components • Compact (cortical) bone • Spongy (trabecular) bone • Periosteum • Endosteum • Bone marrow (red & yellow) • Articular cartilage ⸻ 4. Cortical vs Trabecular Bone • Cortical (compact): Dense, outer layer, strength • Trabecular (spongy): Porous, inside bone, reduces weight, houses marrow ⸻ 5. Bone Classification by Shape • Long (femur) • Short (carpals) • Flat (sternum) • Irregular (vertebrae) • Sesamoid (patella) ⸻ 6. Structure of a Long Bone • Diaphysis (shaft) • Epiphysis (ends) • Medullary cavity • Periosteum • Compact bone • Spongy bone ⸻ 7. Microscopic Bone Structure • Osteon (Haversian system) • Central canal • Lacunae (contain osteocytes) • Canaliculi (nutrient pathways) ⸻ 8. Osteoblast vs Osteoclast • Osteoblast: Builds bone • Osteoclast: Breaks down bone ⸻ 9. Three Types of Joints • Fibrous: Immovable (skull sutures) • Cartilaginous: Slight movement (intervertebral discs) • Synovial: Freely movable (knee) ⸻ 10. Osteoporosis & Arthritis • Osteoporosis: Bone thinning • Arthritis: Joint inflammation ⸻ ✅ Chapter 6 – Muscular System 1. Three Muscle Types • Skeletal: Voluntary, striated, attached to bones • Cardiac: Involuntary, heart only • Smooth: Involuntary, organs ⸻ 2. Connective Tissue Coverings • Endomysium → around muscle fiber • Perimysium → around fascicle • Epimysium → around whole muscle ⸻ 3. Fascicle Bundle of muscle fibers (covered by perimysium) ⸻ 4. Sarcomere Functional unit of muscle Boundaries: Z discs ⸻ 5. Bands • I band → thin only • A band → thick (and overlap) ⸻ 6. Filaments • Thick → Myosin • Thin → Actin, Troponin, Tropomyosin ⸻ 7. During Contraction • Sarcomere shortens • Z discs move closer • I band shortens • A band stays same ⸻ 8. Role of Calcium & ATP • Calcium: Exposes binding sites • ATP: Powers contraction & releases myosin ⸻ 9. Cross Bridge Myosin head binding to actin ⸻ 10. Neuromuscular Junction • Nerve releases acetylcholine (ACh) • ACh binds receptors • Muscle action potential starts ⸻ 11. Steps of Skeletal Muscle Contraction 1. Nerve impulse 2. ACh release 3. Muscle action potential 4. Ca²⁺ released from SR 5. Cross bridge formation 6. Power stroke 7. ATP binds & detaches 8. Relaxation when Ca²⁺ removed ⸻ 12. Three Ways Muscles Produce ATP • Direct phosphorylation (creatine phosphate) • Anaerobic glycolysis • Aerobic respiration ⸻ 13. Oxygen & Lactic Acid • Aerobic: Requires oxygen • Anaerobic glycolysis: Produces lactic acid ⸻ 14. Fastest Energy System Direct phosphorylation ⸻ 15. Isotonic vs Isometric • Isotonic: Muscle shortens (lifting weight) • Isometric: Tension, no movement (holding weight) ⸻ ✅ Chapter 7 – Nervous System 1. CNS Brain + spinal cord Function: control center ⸻ 2. PNS Cranial nerves + spinal nerves ⸻ 3. Afferent vs Efferent • Afferent: Sensory → to CNS • Efferent: Motor → from CNS ⸻ 4. Three Parts of Neuron • Dendrites (receive) • Cell body • Axon (send signal) ⸻ 5. Synapse Junction between neurons Synaptic cleft = gap between them ⸻ 6. Neurotransmitters Chemical messengers between neurons ⸻ 7. Three Neuron Types • Sensory • Motor • Interneurons ⸻ 8. CNS Neuroglia • Astrocytes • Oligodendrocytes • Microglia • Ependymal cells ⸻ 9. Action Potential Phases • Resting (-70mV) • Depolarization (Na⁺ in) • Repolarization (K⁺ out) • Hyperpolarization ⸻ 10. Myelinated Axons Faster Because Saltatory conduction (jumps between nodes) ⸻ 11. Reflex & Components Automatic response 5 parts: 1. Receptor 2. Sensory neuron 3. Integration center 4. Motor neuron 5. Effector ⸻ 12. Four Lobes of Cerebrum • Frontal → movement • Parietal → sensation • Temporal → hearing • Occipital → vision ⸻ 13. Thalamus, Hypothalamus, Epithalamus • Thalamus → sensory relay • Hypothalamus → homeostasis • Epithalamus → melatonin ⸻ 14. Brainstem Parts • Midbrain → reflexes • Pons → breathing control • Medulla → heart rate ⸻ 15. Cerebellum Balance & coordination ⸻ 16. Meninges • Dura mater • Arachnoid mater • Pia mater Protect CNS ⸻ 17. CSF Cerebrospinal fluid Found in ventricles & around brain/spinal cord ⸻ 18. Spinal Cord Structure: gray center, white outside Function: reflexes & signal pathway ⸻ 19. Sympathetic vs Parasympathetic • Sympathetic → fight or flight • Parasympathetic → rest and digest ⸻ 20. Effects on Organs Sympathetic: • ↑ heart rate • Dilates pupils • Stops digestion Parasympathetic: • ↓ heart rate • Constricts pupils • Stimulates digestion ⸻ 21
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8.3 Hyperbolas
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