km c364e- · pdf filelower stray losses than copper conductors for a given size. this is...

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Page 1: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 2: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 3: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 4: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 5: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 6: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 7: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 8: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 9: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 10: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 11: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 12: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 13: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor
Page 14: KM C364e- · PDF filelower stray losses than copper conductors for a given size. This is because the eddy current losses are an inverse function of resistivity of the conductor