For latest videos, click on the following link: https://whatsapp.com/channel/0029VaGr... Chapter 10: Heat Capacity & Modes of Heat Transfer • CH10: Heat Capacity & Modes Of Heat Transfer Chapter 11: Thermal Transformations • CH11: Thermal Transformations Chapter 12: Waves • CH12: Waves Chapter 13: Sound • CH13: Sound Chapter 14: Optics • CH14: Optics Chapter 15: Electrostatics • CH15: Electrostatics Chapter 16: Current Electricity • CH16: Current Electricity Chapter 17: Electric Circuits • CH17: Electric Circuits Chapter 18 Electronics • Chapter 18 Electronics Chapter 19 Electromagnetism • CH19: Electromagnetism Chapter 20 Electromagnetic Waves • CH20: Electromagnetic Waves Chapter 21 Nuclear Physics 1. Complete the following nuclear decay equations: (a) Lead-210 converts into Bismuth (Bi): (_82^210)𝑃𝑏→(_83^210)𝐵𝑖+ (b) Radon-222 emits an alpha particle and transforms into polonium (Po): (_86^222)𝑅𝑛→ + (_2^4)𝐻𝑒 (c) Radium-224 transforms into Radon (Rn): (_86^220)𝑅𝑛→(_84^216)𝑃𝑜+ (d) Neptunium-239 releases beta particle converts into plutonium (Pu): (_93^239)𝑁𝑝→ +(_−1^0)𝛽 (e) Iodine-131 emits a gamma particle: (_53^131)𝐼→ +𝛾 2. Which isotope X is needed to complete: (a) The fission reaction (_0^1)𝑛+(_92^235)𝑈→𝑋+(_54^134)𝑋𝑒+2(_0^1)𝑛 (_38^102)𝑆𝑟 (_37^101)𝑹𝒃 (_36^102)𝑲𝒓 (_38^100)𝑆𝑟 (b) The fission reaction (_1^2)𝐻+𝑋→(_2^4)𝐻𝑒+(_0^1)𝑛 (_1^1)𝐻 (_1^2)𝑯 (_1^3)𝑯 (_2^3)𝑯𝒆