Fleming's left hand rules
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Whenever, a current carrying conductor comes under a magnetic field, there will be a force acting on the conductor and on the other hand, if a conductor is forcefully brought under a magnetic field, there will be an induced current in that conductor. In both of the phenomenons, there is a relation between magnetic field, current and force. This relation is directionally determined by Fleming's Left Hand rule and Fleming's Right Hand rule respectively. Directionally means these rules do not show the magnitude but show the direction of any of the three parameters (magnetic field, current, force) if the direction of other two are known. Fleming's Left Hand rule is mainly applicable for electric motor and Fleming's Right Hand rule is mainly applicable for electric generator.
HOPE ITS HELP U MY FRIEND...^_^
Whenever, a current carrying conductor comes under a magnetic field, there will be a force acting on the conductor and on the other hand, if a conductor is forcefully brought under a magnetic field, there will be an induced current in that conductor. In both of the phenomenons, there is a relation between magnetic field, current and force. This relation is directionally determined by Fleming's Left Hand rule and Fleming's Right Hand rule respectively. Directionally means these rules do not show the magnitude but show the direction of any of the three parameters (magnetic field, current, force) if the direction of other two are known. Fleming's Left Hand rule is mainly applicable for electric motor and Fleming's Right Hand rule is mainly applicable for electric generator.
HOPE ITS HELP U MY FRIEND...^_^
satyanshsingh468:
ok 1st tell me the Maxwell equation then i will follow you ok
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Fleming's left hand rule states that if we place a current carrying conductor within a magnetic field then the motion produced, current and the magnetic field will such that if we place our left hand's 1st three fingers at 90degree to each other then the thumb will determine the motion produced, index finger will determine the magnetic field and the middle finger will determine the current .
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