PHYSICS | CHEMISTRY | BIOLOGY | MATHEMATICS |
CHAPTER 1: ELECTRIC CHARGE AND FIELD | CHAPTER 1: Solutions | CHAPTER 1 : Sexual Reproduction in Flowering Plants | CHAPTER 1: Relations and Functions |
CHAPTER 2: Electrostatic Potential and Capacitance | CHAPTER 2: Electrochemistry | CHAPTER 2: Human Reproduction | CHAPTER 2: Inverse Trigonometric Functions |
CHAPTER 3: Current Electricity | CHAPTER 3: Chemical Kinetics | CHAPTER 3 : Reproductive Health | CHAPTER 3: Matrices |
CHAPTER 4: Moving Charges and Magnetism | CHAPTER 4: d -and f -Block Elements | CHAPTER 4 : Principles of Inheritance and Variation | CHAPTER 4: Determinants |
CHAPTER 5: Magnetism and Matter | CHAPTER 5: Coordination Compounds | CHAPTER 5: Molecular Basis of Inheritance | CHAPTER 5: Continuity and Differentiability |
CHAPTER 6: Electromagnetic Induction | CHAPTER 6:Haloalkanes and Haloarenes | CHAPTER 6: Evolution | CHAPTER 6: Application of Derivatives |
CHAPTER 7: Alternating Current | CHAPTER 7: Alcohols, Phenols and Ethers | CHAPTER 7: Human Health and Diseases | CHAPTER 7: Integrals |
CHAPTER 8: Electromagnetic Waves | CHAPTER 8: Aldehydes, Ketones and Carboxylic Acids | CHAPTER 8: Microbes in Human Welfare | CHAPTER 8: Application of Integrals |
CHAPTER 9: Ray Optics and Optical Instruments | CHAPTER 9: Amines | CHAPTER 9: Biotechnology – Principles and Processes | CHAPTER 9: Differential Equations |
CHAPTER 10: Wave Optics | CHAPTER 10: Biomolecules | CHAPTER 10: Biotechnology and its Applications | CHAPTER 10: Vectors |
CHAPTER 11: Dual Nature of Radiation and Matter | | CHAPTER 11: Organisms and Populations | CHAPTER 11: Three Dimensional Geometry |
CHAPTER 12: Atoms | | CHAPTER 12: Ecosystem | CHAPTER 12: Linear Programming |
CHAPTER 13: Nuclei | | CHAPTER 13: Biodiversity and its Conservation | CHAPTER 13: Probability |
CHAPTER 14: Semiconductor Electronics: Materials, Devices, and Simple Circuits | | | |
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