2.0 m wire is formed into a 5-turn circular loop. If the wire carries a 1.2 A current, determine the magnitude of the magnetic field (in µT) at the center of the loop. O 59 O 79 O 69 O. 9.4 O 89 5:40 PM ✔

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بتول المومني batool almomani ,, please solve the question clearly sir 

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2003
A
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0 79
سد
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Batool almomani
Batool momani
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Q :
بتول المومني
بتول مومني
بطرونة تيليجرام
البطرونة بتول المومني
البطرونة بتول مومني
11:35 AM
A 2.0 m wire is formed into a 5-turn circular loop. If the wire carries a 1.2 A current, determine the magnitude
of the magnetic field (in µT) at the center of the loop.
بشتغل في جروب
تيليجرام بخلي
الشباب تمرج ع
صوتي
For the circuit shown, the energy
stored by the
capacitor is
5:40 PM
Transcribed Image Text:م 2003 A 0 59 0 79 سد 0 69 0 9.4 0 89 Saved Messages September 23 Batool almomani Batool momani | MW_Batool MW_Batool Q : بتول المومني بتول مومني بطرونة تيليجرام البطرونة بتول المومني البطرونة بتول مومني 11:35 AM A 2.0 m wire is formed into a 5-turn circular loop. If the wire carries a 1.2 A current, determine the magnitude of the magnetic field (in µT) at the center of the loop. بشتغل في جروب تيليجرام بخلي الشباب تمرج ع صوتي For the circuit shown, the energy stored by the capacitor is 5:40 PM
Expert Solution
Step 1

When a loop of conducting wire carries a current, it produces a magnetic field around it.

The magnitude of the magnetic field produced at the center of such a loop is given by the equation

B=μoI2rI is the current through the loopr is the radius of the loop

If the coil has n number of turns, then the above expression is modified as

B=nμoI2r

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