Question
Match the items given in Column A with those given in Column B:
| Column A | Column B |
| a) Low purine diet | i) Low Carbohydrate Diet ii) Toxic mushroom |
| b) Tetany | |
| c) Hyperglycemia | iii) Cancer |
| d) Underweight | iv) Food Adulteration |
| e) Phalloidine | v) Milk |
| f) Nitrosamines | vi) Gout |
| g) PFA Act | vii) Calcium deficiency |
| h) Pasteurization | viii) High calorie diet |
| i) Aflatoxins | ix) Mercury |
| j) Industrial Pollutant | x) Aspergillus flavus |
| xi) High calorie diet | |
| xii) Genetic Changes |
a) Low purine diet - vi) Gout
b) Tetany _____________ __________ ______ _______ _____________ __________ _________ _____________ _______ _____________ ________ ___.
___________ ________ __ _________ _________ _____ ____ _________ __ ____ ___________ ___________ _______ ___.
____ __ ______ ____ ____________ __ ___ ___________ __________.
__ ___________ ________ ___ ____ __________ ____________ __.
__ _____ ____________ _________ ________ _____________ ____________ __________ ___ __ ______.
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What is buoyant force?
Give the general characters of mycobacterium. How do you stain them in the laboratory? Name four mycobacteria of medical importance and the diseases caused by them.
Describe he defects of vision and how are they corrected. Illustrate your answer with the help of a diagram
Explain the image formation by the eye lens in a normal eye.
The physical quantity of the measurement 1.4 m correspond to:
i. Length
ii. Mass
iii. Time
iv. Pressure
Describe the anomalies associated with carbohydrate metabolism
Match the items given in Column A with those given in Column B:
| Column A | Column A |
| a) Lonization | i) Link different nucleotides in a nucleic acid |
| b) Intersticial fluid | ii) Contain red pigment haemoglobin |
| c) Ketone bodies | iii) Nephrotic Syndrome |
| d) Phosphodiester bonds | iv) Energy ‘currency’ of cell |
| e) Coenzyme A | v) Breakdown of RBCs to release their contents |
| f) Erythrocytes | vi) Fluid in between cells |
| g) Agglutination | vii) Transport of molecules/ions against concentration gradient |
| h) Protein in Urine | viii) Glycosuria |
| i) Adenosine Tri Phosphate (ATP) | ix) Clumping together of RBCs |
| j) Active transport | x) Formation of ions by dissociation of electrolytes |
| xi) Derived lipid | |
| xii) Coenzyme form of pantothenic acid | |
| xiii) Fluid inside cells |
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