Chemistry · JEE
d and f-Block Elements Mock Test for JEE
3+ syllabus-aligned questions available
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A d and f-Block Elements JEE mock test on Goodmarks lets you attempt 3+ timed MCQs with instant feedback. Use it to benchmark speed, accuracy, and readiness for JEE Main Chemistry.
Simulate exam conditions with a d and f-Block Elements mock test. Attempt 3+ timed MCQs, check your score instantly, and review every solution to close gaps before the real exam.
Subtopics in d and f-Block Elements
- Transition Elements: General introduction, electronic configuration, occurrence and characteristics
- General trends in properties of the first-row transition elements: physical properties, ionization enthalpy, oxidation states, atomic radii, colour, catalytic behaviour, magnetic properties, complex formation, interstitial compounds, alloy formation
- Preparation, properties and uses of K2Cr2O7 and KMnO4
- Inner Transition Elements
- Lanthanoids: Electronic configuration, oxidation states and Lanthanoid contraction
- Actinoids: Electronic configuration and oxidation states
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Frequently asked questions
How long should a d and f-Block Elements mock test take?
For a topic-level test, aim for 20–30 minutes. For a full subject mock, allow 60–90 minutes to mirror JEE timing.
What is a good score on a d and f-Block Elements mock test?
Aim for 70%+ accuracy initially, then push toward 85%+ as your exam date approaches. Review explanations for every wrong answer.
Does Goodmarks score mock tests automatically?
Yes. Each MCQ is scored instantly with the correct answer and explanation shown after submission.
Can I retake the same mock test?
Pro users can generate new question sets by topic. Reattempting the same questions after a gap is excellent for retention.
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Notes & Formulas
Transition Elements: General introduction, electronic configuration, occurrence and characteristics
Subtopic
General trends in properties of the first-row transition elements: physical properties, ionization enthalpy, oxidation states, atomic radii, colour, catalytic behaviour, magnetic properties, complex formation, interstitial compounds, alloy formation
Subtopic
Preparation, properties and uses of K2Cr2O7 and KMnO4
Subtopic
Inner Transition Elements
Subtopic
Lanthanoids: Electronic configuration, oxidation states and Lanthanoid contraction
Subtopic
Actinoids: Electronic configuration and oxidation states
Subtopic