The peak value of alternating vorlage is 144 141.4 not- Calculate its &mus value
Q: 20 - The variation of alternating current with time is given in the figure. Accordingly. what are…
A: this problem is based on alternate current
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A: To find- Distance from conductor (r)=? Given- I=16 A B=8×10-5 Wb/m2
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Q: Calculate the magnetic permeability value in vacuum: но = Tm 1.26 × 10-6 ™m =
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A: To Find: Rate of change of magnetic induction dBdt = ? Given: Length of each side (l) = 0.5 m…
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Q: is Equation of an alternating ent t geven as e = 50 sin 314+· Find Break value of ent tits…
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A: Given, voltage of plant vp=12000 v. voltage of the house vs=240 v. Let Ip and Is are the induced…
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A: 1) Electric field lines point away from a positive charge and towards a negative charge. 2) Crowded…
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A: Given For resistor 1, Length L, cross section Area A, current I = 6.0 m amp For resistor 2,…
Q: Study guide #7 Single Square loop then to a Battery A is Connec ted a Magnetic fie ld. if the loop…
A: Given, Length = 0.4 m Cross sectional area = 1.02 × 10-4 m2 B = 0.490 T V = 0.149 V resistivity p =…
Q: A Rowland ring of means radius 16 cm has 1000 turns of wire closely wound on ferromagnetic core of…
A: Given, radius= 16 cm= 16×10-2mNumber of turns, N= 1000Relative permeability =400magnetizing current=…
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A: We need to compute-Emf induced between wings tips (e)=?Given that-l=30 mv=1000…
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A: We know that emf ϵ=-LdIdt dIdt=ϵL
Q: Equation of an alternating e.m.f. is given by, e = 50 sin 314 t. Find peak value of e.m.f. and its…
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Q: A square loop circuit (with a 30.0 V battery, resistance of 6.00 ohms and side length of 2.00 m) is…
A: Force on a current carrying conductor in a magnetic field is given as F = I (LxB) Where L is length…
Q: A solenoid of radius 4.5 cm has 620 turns and a length of 25 cm. a) find its incductance in mH b)…
A: Given:radius of solenoid, r = 0.045 mtotal turns, N = 620 turnslength of the solenoid, l = 0.25…
Q: HE PEAK VALUE OF AN ALTERNATING YOLTAGE IS Eo=350 Volts. CALCULATE ITS RMS VALUE
A: To find-RMS value of alternating voltage Erms=?Given-E0=350 V
Q: Ahe magnetic flux. thunugh a loop of uerislänce os ohm is laying accouding to° the uelotion p=…
A: Whenever the flux of magnetic field through the area bounded by a closed conducting loop changes,…
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A: Given: V(t)=163sinωt ω=60 cycles per sec
Q: Integrated ConceptsCalculate the maximum torque on a 50-turn, 1.50 cm radius circular current loop…
A: As per the given data, Number of turns (N) = 50; Radius of the circular coil (r) = 1.5 cm =1.5×10-2…
Q: Calculate the magnetic induction, B, of a wire that carries a current of 100 amps, at a distance of…
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Q: A Rowland ring of means radius 16 cm Kas 1000 turns of wire closely wound on ferromagnetic core of…
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Q: Three parallel currents flow in the same plane, with a distance of d 10 cm between them 11-1A 124A…
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Q: When an alternating e.m.f. e 300 sin (120 a t) volt is applied across a bulb, the peak value of the…
A: To Find: (1) Resistance of bulb, (2) Average power Given that, e=300sin120πtvolt Peak current (I0) =…
Q: ▼ Part A Within the solenoid, but far from its ends, what is the magnetic field B due to the current…
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Q: A to cangular coil of dimensions 6 cm I 4im 4 having tooo twire Polatée about an axis perpendiculas…
A: To find-Magnetic induction (B)=?Given-l=6 cm=6×10-2 mb=4 cm=4×10-2 mn=1000f=50 rpse0=6 VArea of coil…
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A: Given, Magnetic field linked with the circuit changes. Magnetic flux is increasing with respect to…
Q: 30 2A 20 4 A
A: Given:- The circuit with the resistance is V = 9 V R1= 3 Ω , R2= 2 Ω, R3= 4 Ω , R4= 2 Ω, R5= 5 ΩR6=…
Q: A Rowland ring of means radius 16 cm Mas 1000 turns of wire closely wound on ferromagnetic core of…
A: Given: radius(r)=16cm=0.16m No.of Turns (N)=1000 relative permeability =400 magnetizing current=1A
Q: distance 10 cm. on a line inclined at 60° with Determine the magnetic potential at a point at axis…
A: We have the following information- μ04π=10-7 wb/Amr=10 cm=0.1 mθ=60 deg,M=0.8 Am2
Q: 4Tke By how much is the approximation B = ponI [or in terms of Coulomb's constant ke, B = c2 nI] in…
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Q: 3) A square loop circuit (with a 30.0 V battery, resistance of 6.00 ohms and side length of 2.00 m)…
A: Given data: e.m.f of the battery, ε=30.0 V
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