9. Ferromagnetic sphere with saturation magnetization M,-D0.6 is placed in resonant cavity tuned to 10 GHz and a resonant absorption is observed at the field H=1000 Oe. Find the uniaxial anisotropy constant K of the material when the microwave field is applied perpendicular to the applied DC field H
9. Ferromagnetic sphere with saturation magnetization M,-D0.6 is placed in resonant cavity tuned to 10 GHz and a resonant absorption is observed at the field H=1000 Oe. Find the uniaxial anisotropy constant K of the material when the microwave field is applied perpendicular to the applied DC field H
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![9. Ferromagnetic sphere with saturation magnetization M,-D0.6 is placed in resonant cavity tuned to 10
GHz and a resonant absorption is observed at the field H=1000 Oe. Find the uniaxial anisotropy
constant K of the material when the microwave field is applied perpendicular to the applied DC field H](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F48335003-8c07-4246-9321-947eb4be9fa0%2F8cd5460a-dc39-476a-83e1-c0957e0ab0f2%2Fg2dar5x_processed.jpeg&w=3840&q=75)
Transcribed Image Text:9. Ferromagnetic sphere with saturation magnetization M,-D0.6 is placed in resonant cavity tuned to 10
GHz and a resonant absorption is observed at the field H=1000 Oe. Find the uniaxial anisotropy
constant K of the material when the microwave field is applied perpendicular to the applied DC field H
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