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Chemistry Syllabus (JEE Main)

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Q. In the molecular orbital theory, which of the following orbitals is lower in energy than the 2p orbitals?
  • A. 2s
  • B. 3s
  • C. 2p
  • D. 3p
Q. In the molecular orbital theory, which of the following orbitals is lower in energy for homonuclear diatomic molecules?
  • A. σ2p
  • B. π2p
  • C. σ2s
  • D. π2s
Q. In the molecular orbital theory, which of the following orbitals is the highest occupied molecular orbital (HOMO) in O2?
  • A. σ2p
  • B. π2p
  • C. σ*2p
  • D. π*2p
Q. In the molecular orbital theory, which of the following orbitals is the highest energy in O2?
  • A. σ2p
  • B. π2p
  • C. σ*2p
  • D. π*2p
Q. In the molecular orbital theory, which of the following pairs of orbitals can combine to form a sigma bond?
  • A. s and p
  • B. p and p
  • C. s and s
  • D. d and p
Q. In the molecular orbital theory, which orbitals combine to form sigma bonds?
  • A. s and p orbitals
  • B. p and d orbitals
  • C. s orbitals only
  • D. p orbitals only
Q. In the reaction 2Ag+ + Zn → 2Ag + Zn2+, which species is oxidized?
  • A. Ag+
  • B. Zn
  • C. Ag
  • D. Zn2+
Q. In the reaction 2Ag+ + Zn → 2Ag + Zn2+, which species is reduced?
  • A. Ag+
  • B. Zn
  • C. Ag
  • D. Zn2+
Q. In the reaction 2AgNO3 + Cu → 2Ag + Cu(NO3)2, what is the oxidation state of silver in AgNO3?
  • A. +1
  • B. 0
  • C. +2
  • D. +3
Q. In the reaction 2Ag^+ + Zn → 2Ag + Zn^2+, what is the oxidation state change for zinc?
  • A. 0 to +2
  • B. +2 to 0
  • C. +2 to +1
  • D. 0 to -1
Q. In the reaction 2Cr2O7^2- + 14H+ + 6e^- → 4Cr^3+ + 7H2O, what is the role of Cr2O7^2-?
  • A. Oxidizing agent
  • B. Reducing agent
  • C. Neutral agent
  • D. None of the above
Q. In the reaction 2Fe + 3Cl2 → 2FeCl3, how many grams of FeCl3 can be produced from 4 moles of Fe?
  • A. 315.5 g
  • B. 267 g
  • C. 200 g
  • D. 150 g
Q. In the reaction 2Fe + 3Cl2 → 2FeCl3, how many grams of FeCl3 can be produced from 10 g of Fe?
  • A. 20 g
  • B. 30 g
  • C. 40 g
  • D. 50 g
Q. In the reaction 2Fe + 3Cl2 → 2FeCl3, how many grams of FeCl3 can be produced from 4 grams of Fe?
  • A. 12 g
  • B. 20 g
  • C. 30 g
  • D. 40 g
Q. In the reaction 2Fe + 3Cl2 → 2FeCl3, how many moles of Cl2 are needed to react with 4 moles of Fe?
  • A. 3 moles
  • B. 6 moles
  • C. 4 moles
  • D. 2 moles
Q. In the reaction 2Fe2O3 + 3C → 4Fe + 3CO2, what is being oxidized?
  • A. Fe2O3
  • B. C
  • C. Fe
  • D. CO2
Q. In the reaction 2Fe2O3 + 3C → 4Fe + 3CO2, what is being reduced?
  • A. Fe2O3
  • B. C
  • C. Fe
  • D. CO2
Q. In the reaction 2Fe2O3 + 3C → 4Fe + 3CO2, which element is oxidized?
  • A. Iron
  • B. Carbon
  • C. Oxygen
  • D. None
Q. In the reaction 2Fe^3+ + 2I^- → 2Fe^2+ + I2, which species is the reducing agent?
  • A. Fe^3+
  • B. I^-
  • C. Fe^2+
  • D. I2
Q. In the reaction 2H2 + O2 → 2H2O, how many grams of oxygen are required to completely react with 4 grams of hydrogen?
  • A. 16 g
  • B. 8 g
  • C. 32 g
  • D. 4 g
Q. In the reaction 2H2 + O2 → 2H2O, how many grams of oxygen are required to react with 4 grams of hydrogen?
  • A. 16 g
  • B. 8 g
  • C. 4 g
  • D. 2 g
Q. In the reaction 2H2 + O2 → 2H2O, how many grams of water are produced from 4 grams of hydrogen?
  • A. 18 g
  • B. 36 g
  • C. 54 g
  • D. 72 g
Q. In the reaction 2H2 + O2 → 2H2O, how many grams of water can be produced from 4 grams of hydrogen?
  • A. 36 g
  • B. 18 g
  • C. 72 g
  • D. 9 g
Q. In the reaction 2H2 + O2 → 2H2O, how many liters of H2O vapor are produced from 4 liters of H2?
  • A. 4 L
  • B. 8 L
  • C. 2 L
  • D. 6 L
Q. In the reaction 2H2 + O2 → 2H2O, how many liters of water vapor are produced from 4 liters of hydrogen at STP?
  • A. 4 L
  • B. 8 L
  • C. 2 L
  • D. 6 L
Q. In the reaction 2H2 + O2 → 2H2O, how many moles of O2 are required to completely react with 6 moles of H2?
  • A. 2 moles
  • B. 3 moles
  • C. 4 moles
  • D. 6 moles
Q. In the reaction 2H2 + O2 → 2H2O, how many moles of O2 are required to react with 6 moles of H2?
  • A. 3 moles
  • B. 4 moles
  • C. 6 moles
  • D. 2 moles
Q. In the reaction 2H2 + O2 → 2H2O, how many moles of water are produced from 4 moles of hydrogen?
  • A. 2 moles
  • B. 4 moles
  • C. 6 moles
  • D. 8 moles
Q. In the reaction 2H2 + O2 → 2H2O, if 3 moles of O2 are available, how many moles of H2 are required?
  • A. 3 moles
  • B. 6 moles
  • C. 1.5 moles
  • D. 4.5 moles
Q. In the reaction 2H2 + O2 → 2H2O, if you start with 3 moles of O2, how many moles of H2 are required?
  • A. 3 moles
  • B. 6 moles
  • C. 1.5 moles
  • D. 4 moles
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Chemistry Syllabus (JEE Main) MCQ & Objective Questions

The Chemistry Syllabus for JEE Main is crucial for students aiming to excel in their exams. Understanding this syllabus not only helps in grasping fundamental concepts but also enhances performance in objective questions and MCQs. Regular practice with these types of questions is essential for scoring better and mastering important topics.

What You Will Practise Here

  • Basic Concepts of Chemistry
  • Atomic Structure and Chemical Bonding
  • States of Matter: Gases and Liquids
  • Thermodynamics and Thermochemistry
  • Equilibrium: Chemical and Ionic
  • Redox Reactions and Electrochemistry
  • Hydrocarbons and Environmental Chemistry

Exam Relevance

The Chemistry syllabus is a significant part of CBSE, State Boards, NEET, and JEE exams. Questions from this syllabus often appear in various formats, including multiple-choice questions, assertion-reason type questions, and numerical problems. Familiarity with the common question patterns can greatly enhance your exam preparation and confidence.

Common Mistakes Students Make

  • Misunderstanding the periodic trends and their implications.
  • Confusing different types of chemical bonds and their properties.
  • Neglecting to balance redox reactions properly.
  • Overlooking the significance of units in thermodynamic calculations.
  • Failing to apply concepts of equilibrium in problem-solving.

FAQs

Question: What are the key topics I should focus on in the Chemistry syllabus for JEE Main?
Answer: Focus on atomic structure, chemical bonding, thermodynamics, and equilibrium as they are frequently tested.

Question: How can I improve my performance in Chemistry MCQs?
Answer: Regular practice with past papers and understanding concepts deeply will help you tackle MCQs effectively.

Start your journey towards mastering the Chemistry Syllabus (JEE Main) by solving practice MCQs today. Test your understanding and build confidence for your exams!

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