riversongs Posted January 10, 2024 Report Share Posted January 10, 2024 Free Download Master the Fundamentals of Biology (Part 1 of 4) IGCSELast updated 11/2022Duration: 6h 50m | Video: .MP4, 1920x1080 30 fps | Audio: AAC, 48 kHz, 2ch | Size: 4.56 GBGenre: eLearning | Language: EnglishThis is a Biology Course for Students Preparing for Any High School Biology Exams (iGCSE, GCSE, AP Biology & More)What you'll learnIn this course students will learn exactly what they need to know for their biology exams. Students will learn aboutUNIT 1: The nature and variety of living organisms.The seven characteristics of living organisms.How to describe the common features shown by eukaryotic organisms: plants, animals, fungi, and protoctists.How to describe the common features shown by prokaryotic organisms such as bacteria.The term pathogen and know that pathogens may include fungi, bacteria, protoctists or viruses.UNIT 2: Structure and functions in living organismsHow to describe the levels of organisation in organisms: organelles, cells, tissues, organs and systems.How to describe cell structures, including the nucleus, cytoplasm, cell membrane, cell wall, mitochondria, chloroplasts, ribosomes and vacuole.How to describe the functions of the nucleus, cytoplasm, cell membrane, cell wall, mitochondria, chloroplasts, ribosomes and vacuole.The similarities and differences in the structure of plant and animal cells.How to explain the importance of cell differentiation in the development of specialised cells.The advantages and disadvantages of using stem cells in medicine.How to identify the chemical elements present in carbohydrates, proteins and lipids (fats and oils).How to describe the structure of carbohydrates, proteins and lipids as large molecules made up from smaller basic units: starch, protein, lipidsThe role of enzymes as biological catalysts in metabolic reactions.How temperature changes can affect enzyme function, including changes to the shape of active site.How enzyme function can be affected by changes in pH altering the active site.The processes of diffusion, osmosis and active transport by which substances move into and out of cells.How factors affect the rate of movement of substances into and out of cellsUnderstand the process of photosynthesis and its importance in the conversion of light energy to chemical energyKnow the word equation and the balanced chemical symbol equation for photosynthesisUnderstand how varying carbon dioxide concentration, light intensity and temperature affect the rate of photosynthesisDescribe the structure of the leaf and explain how it is adapted for photosynthesisUnderstand that plants require mineral ions for growth, and that magnesium ions are needed for chlorophyll and nitrate ions are needed for amino acidsUnderstand that a balanced diet should include appropriate proportions of carbohydrate, protein, lipid, vitamins, minerals, water and dietary fibreIdentify the sources and describe the functions of carbohydrate, protein, lipid (fats and oils), vitamins, mineral ions, water and dietary fibreUnderstand how energy requirements vary with activity levels, age and pregnancyDescribe the structure and function of the human alimentary canal, including the mouth, oesophagus, stomach, small intestine, large intestineand pancreasUnderstand how food is moved through the gut by peristalsisUnderstand the role of digestive enzymes, including the digestion of starch, protein and lipidsUnderstand that bile is produced by the liver and stored in the gall bladderUnderstand the role of bile in neutralising stomach acid and emulsifying lipidsUnderstand how the small intestine is adapted for absorption, including the structure of a villusUnderstand how the process of respiration produces ATP in living organismsKnow that ATP provides energy for cellsDescribe the differences between aerobic and anaerobic respirationKnow the word equation and the balanced chemical symbol equation for aerobic respiration in living organismsKnow the word equation for anaerobic respiration in plants and in animalsUnderstand the role of diffusion in gas exchangeUnderstand gas exchange (of carbon dioxide and oxygen) in relation to respiration and photosynthesisUnderstand how the structure of the leaf is adapted for gas exchangeDescribe the role of stomata in gas exchangeUnderstand how respiration continues during the day and night, but that the net exchange of carbon dioxide and oxygen depends on the intensity of lightDescribe the structure of the thorax, including the ribs, intercostal muscles, diaphragm, trachea, bronchi, bronchioles, alveoli and pleural membranesUnderstand the role of the intercostal muscles and the diaphragm in ventilationExplain how alveoli are adapted for gas exchange by diffusion between air in the lungs and blood in capillariesUnderstand the biological consequences of smoking in relation to the lungs and the circulatory system, including coronary heart diseaseUnderstand why simple, unicellular organisms can rely on diffusion for movement of substances in and out of the cellUnderstand the need for a transport system in multicellular organismsDescribe the role of phloem in transporting sucrose and amino acids between the leaves and other parts of the plantDescribe the role of xylem in transporting water and mineral ions from the roots to other parts of the plantUnderstand how water is absorbed by root hair cellsUnderstand that transpiration is the evaporation of water from the surface of a plantUnderstand how the rate of transpiration is affected by changes in humidity, wind speed, temperature and light intensityDescribe the composition of the blood: red blood cells, white blood cells, platelets and plasmaUnderstand the role of plasma in the transport of carbon dioxide, digested food, urea, hormones and heat energyUnderstand how adaptations of red blood cells make them suitable for the transport of oxygen, including shape, no nucleus and the presence of haemoglobinUnderstand how the immune system responds to disease using white blood cells, illustrated by phagocytes ingesting pathogens and lymphocytesUnderstand how vaccination results in the manufacture of memory cells, which enable future antibody production to the pathogen to occur soonerUnderstand how platelets are involved in blood clotting, which prevents blood loss and the entry of micro-organismsDescribe the structure of the heart and how it functionsExplain how the heart rate changes during exercise and under the influence of adrenalineUnderstand how factors may increase the risk of developing coronary heart diseaseUnderstand how the structure of arteries, veins and capillaries relate to their functionUnderstand the general structure of the circulation system, including the blood vessels to and from the heart and lungs, liver and kidneysUnderstand the origin of carbon dioxide and oxygen as waste products of metabolism and their loss from the stomata of a leafKnow the excretory products of the lungs, kidneys and skin (organs of excretion)Understand how the kidney carries out its roles of excretion and osmoregulationDescribe the structure of the urinary system, including the kidneys, ureters, bladder and urethraDescribe the structure of a nephron, including the Bowman's capsule and glomerulus, convoluted tubules, loop of Henle and collecting ductDescribe ultrafiltration in the Bowman's capsule and the composition of the glomerular filtrateUnderstand how water is reabsorbed into the blood from the collecting ductUnderstand why selective reabsorption of glucose occurs at the proximal convoluted tubuleDescribe the role of ADH in regulating the water content of the bloodUnderstand that urine contains water, urea and ionsUnderstand how organisms are able to respond to changes in their environmentUnderstand that homeostasis is the maintenance of a constant internal environment, and that body water content and body temperature are both examplesUnderstand that a co-ordinated response requires a stimulus, a receptor and an effectorUnderstand that plants respond to stimuliDescribe the geotropic and phototropic responses of roots and stemsUnderstand the role of auxin in the phototropic response of stemsDescribe how nervous and hormonal communication control responses and understand the differences between the two systemsUnderstand that the central nervous system consists of the brain and spinal cord and is linked to sense organs by nervesUnderstand that stimulation of receptors in the sense organs sends electrical impulses along nerves into and out the CNS results in rapid responsesUnderstand the role of neurotransmitters at synapsesDescribe the structure and functioning of a simple reflex arc illustrated by the withdrawal of a finger from a hot objectDescribe the structure and function of the eye as a receptorUnderstand the function of the eye in focusing on near and distant objects, and in responding to changes in light intensityDescribe the role of the skin in temperature regulation, with reference to sweating, vasoconstriction and vasodilationUnderstand the sources, roles and effects of the following hormones: adrenaline, insulin, testosterone, progesterone and oestrogenUnderstand the sources, roles and effects of the following hormones: ADH, FSH and LHPAST PAPER EXAM QUESTION WALKTHROUGHSRequirementsThis course has no prerequisites.From beginner students to top students, you will be taught everything you need to know.DescriptionIf you or your child are preparing for your Biology exams and want to ensure you achieve top scores, this is the course for you! Designed specifically for international school students, home schoolers, and independent candidates studyingIGCSE Biology, GCSE Biology, Grade 9 & 10 Biology or Year 10 & 11 Biology, this course will provide you with everything you need to know to revise efficiently and effectively.This comprehensive course covers all the key topics of IGCSE Biology, from the structure and function of living organisms to the physiology of plants and animals. You'll learn about the major systems and processes of the body, including digestion, respiration, and circulation, as well as genetics, evolution, and ecology. Our expert instructor will guide you through each topic, providing you with clear explanations, examples, and visual aids to help you understand and remember what you've learned.With this course, you'll be able toReview the entire IGCSE Biology syllabusin a structured and focused manner.Gain a deep understanding of each topic throughclear and concise explanations.Reinforce your knowledge withinteractive quizzes and exercises.Stay motivated and on track withhelpful tips and strategies for success.Getinstant feedback on your progressand identify areas you need to work on.This course includesVideo lessons covering all the key topics of IGCSE Biology.Quizzes and exercises to reinforce your understanding.Downloadable revision notes and a comprehensive course syllabus.Access to our expert instructors for support and guidance.A supportive community of like-minded students to share your journey with.Don't waste another minute feeling overwhelmed and unsure about your IGCSE Biology exams. Invest in your future and enrol in this high-impact revision course today! With our expert guidance, comprehensive coverage, and effective revision strategies, you'll be well on your way to achieving top scores and reaching your full potential.Enroll now and take the first step towards success in your IGCSE Biology exams!This course has two objectivesTo teach all aspects of IGCSE biology & GCSE biology theory: Content is delivered during quick, efficient video lessons that are easy to for students to understand and absorb.To teach IGCSE biology & GCSE biology exam strategy: Exam strategy is one of the most important skills needed in the IGCSE exams. During this masterclass you will learn everything you need to know using full Past Exam Paper Walkthroughs.Do you or your child need help learning high school biology like IGCSE biology, GCSE Biology or AP Biology from home? 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