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Magnetic Properties of Transition Metals:(part - 1) Video Lecture - NEET

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1. What are the magnetic properties of transition metals?
Ans. Transition metals exhibit a wide range of magnetic properties, including paramagnetism, diamagnetism, and ferromagnetism. These properties arise from the presence of unpaired electrons in their d-orbitals, which result in the alignment of magnetic moments.
2. Which transition metals are ferromagnetic?
Ans. Iron (Fe), cobalt (Co), and nickel (Ni) are the most common ferromagnetic transition metals. These metals have unpaired d-electrons and exhibit strong spontaneous magnetization, allowing them to retain magnetism even in the absence of an external magnetic field.
3. What is the difference between paramagnetism and diamagnetism in transition metals?
Ans. Paramagnetism is a property exhibited by transition metals when they contain unpaired electrons. These unpaired electrons align their magnetic moments in the presence of an external magnetic field, causing the material to be weakly attracted to the field. Diamagnetism, on the other hand, occurs in transition metals when all the electrons are paired. Diamagnetic materials are weakly repelled by an external magnetic field.
4. How do transition metals exhibit paramagnetism?
Ans. Transition metals exhibit paramagnetism due to the presence of unpaired electrons in their d-orbitals. When an external magnetic field is applied, these unpaired electrons align their magnetic moments in the direction of the field, leading to a net magnetic moment and attraction towards the field.
5. Can transition metals exhibit multiple magnetic properties simultaneously?
Ans. Yes, transition metals can exhibit multiple magnetic properties simultaneously. For example, iron (Fe) is ferromagnetic at low temperatures but becomes paramagnetic above its Curie temperature. This transition is due to the change in the alignment of magnetic moments as the material undergoes a phase transition.
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