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Summary OCR AS/A Level Biology - Module 2 Foundations in biology

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This comprehensive OCR A-Level Biology A Module 2 PDF provides detailed, exam-focused notes covering all key topics in Foundations in Biology, as per the OCR A specification. Ideal for A-Level students, teachers, and homeschoolers, this resource includes clear explanations, diagrams, and structured summaries to enhance understanding and revision. Why Use This Document? Exam-Aligned – Follows OCR A-Level Biology A Module 2 syllabus Visual Aids – Includes diagrams, tables, and reaction mechanisms Concise & Clear – Breaks complex concepts into easy-to-understand points Free PDF Download – Accessible for quick revision

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‭ .1.3 measuring objects with a light‬
2
‭Module 2 foundation in biology‬ ‭microscope‬
‭Calibrating using graticules‬
‭2.1.1 Microscope‬ ‭1.‬ P ‭ lace a stage graticule on the microscope stage and use the lowest‬
‭magnification to observe the division‬
‭Light microscope‬ ‭2.‬ ‭Align the stage graticule and the eyepiece graticule, check the‬
-‭ ‬ 2‭ D colour image‬ ‭number of eyepiece division correspond to the number of stage‬
‭-‬ ‭Limited magnification and resolution‬ ‭graticule‬
‭-‬ ‭Can see nuclei, but not ribosomes, endoplasmic reticulum lysosomes‬ ‭-> 1 stage graticule (1000µm) corresponds to 40 eyepiece divisions‬
‭3.‬ ‭Calculate each eyepiece division by dividing the number of stage‬
‭Laser scanning confocal microscope‬ ‭graticule division over the number of eyepiece division‬
-‭ ‬ 3‭ D colour image‬ ‭-> each eyepiece division = 1000/40 = 25µm‬
‭-‬ ‭Image is high resolution and high contrast‬ ‭4.‬ ‭Repeat step 1 to 3 to calculate each eyepiece division using different‬
‭-‬ ‭Cells must be stained with fluorescent dyes for observation‬ ‭magnification‬
‭-‬ ‭It has depth selectivity, which can focus on structures at different‬
‭depths‬
‭Calculating magnification (I AM)‬
‭Transmission electron microscope (TEM)‬
-‭ ‬ 2‭ D black and white image‬
‭-‬ ‭Organelles can be observed‬
‭-‬ ‭Cannot observe live specimens‬
‭Scanning electron microscope (SEM)‬
-‭ ‬ 3‭ D black and white image‬
‭-‬ ‭Image is low resolution‬
‭-‬ ‭False colour can be added by computer‬
‭-‬ ‭Surface of specimens can be observed‬

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Written in
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