5 cm N = 300 turns + 30 cm V2 N2 = 100 turns %3D 5 cm 5 cm 5 cm -30cm- FIGURE P3.34 Magnetic core for Problem 3.34.
5 cm N = 300 turns + 30 cm V2 N2 = 100 turns %3D 5 cm 5 cm 5 cm -30cm- FIGURE P3.34 Magnetic core for Problem 3.34.
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![5 cm
N = 300 turns
V1
30 cm
V2
N2 = 100 turns
%3D
5 cm
5 cm
5 cm
-30 cm-
FIGURE P3.34 Magnetic core for Problem 3.34.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F99cc51a6-9278-4810-a568-442a3c7caa31%2Ff4d46c00-f777-4202-ac6c-793b588ea3a0%2Fyfgbbk_processed.jpeg&w=3840&q=75)
Transcribed Image Text:5 cm
N = 300 turns
V1
30 cm
V2
N2 = 100 turns
%3D
5 cm
5 cm
5 cm
-30 cm-
FIGURE P3.34 Magnetic core for Problem 3.34.
![3.34 Consider the magnetic core shown in Figure P3.34. Notice the way each coil is wound on each
leg. Use a relative permeability of 2000 for the solid core and assume that it remains constant.
If the value of current I, = 1.0 A and current I,= 1.5 A, find the total flux produced by them in
the core. Use a core depth of 5 cm.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F99cc51a6-9278-4810-a568-442a3c7caa31%2Ff4d46c00-f777-4202-ac6c-793b588ea3a0%2Fipyfwup_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3.34 Consider the magnetic core shown in Figure P3.34. Notice the way each coil is wound on each
leg. Use a relative permeability of 2000 for the solid core and assume that it remains constant.
If the value of current I, = 1.0 A and current I,= 1.5 A, find the total flux produced by them in
the core. Use a core depth of 5 cm.
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