Chemistry · JEE

Online Practice: Introduction to coordination compounds, Werner's theory, ligands, coordination number, denticity, chelation for JEE

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Sharpen your chemistry preparation with interactive online practice for Introduction to coordination compounds, Werner's theory, ligands, coordination number, denticity, chelation. Goodmarks offers 12+ JEE-style MCQs mapped to the official syllabus, each with detailed explanations so you learn from every attempt.

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Q1ChemistryUnit 12: Coordination Compounds
Potassium ferrocyanide is an example of
Q2ChemistryUnit 12: Coordination Compounds
The ligand N(CH2CH2NH2)3N\left(C H_{2} C H_{2} N H_{2}\right)_{3}
Q3ChemistryUnit 12: Coordination Compounds
In the metal carbonyls of the general formula M(CO)xM(C O)_{x} where M=M= metal x=4,x=4, the metal is bonded to:
Q4ChemistryUnit 12: Coordination Compounds
Some salts, although containing two different metallic elements, give test for one of them in solution. Such salts are:
Q5ChemistryUnit 12: Coordination Compounds
Identify the incorrect statement(s) with respect to CO\mathbf{C O} : This question has multiple correct options
Q6ChemistryUnit 12: Coordination Compounds
The correct labeling of different terms used in coordination compounds is:
Q7ChemistryUnit 12: Coordination Compounds
Assertion In natural tris chelating complex, [Co(acac)3],\left[\boldsymbol{C o}(\boldsymbol{a c a c})_{3}\right], in each ring the two MO\mathrm{M}-\mathrm{O} bonds are equal to length, as are two C\mathrm{C} O and the two C-C bonds because, Reason In each ring resonance takes place.
Q8ChemistryUnit 12: Coordination Compounds
Which of the following is not a draw back of Werner's theory?

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