In which condition EMF will be induced in loop.
Situation-S1: A loop is moving with uniform velocity in a uniform magnetic field perpendicular
to its plane.
Situation-S2: A loop is moving with non-uniform velocity in a uniform magnetic field
perpendicular to its plane.
Situation-S3: A loop is rotating about its diameter in a uniform magnetic field.
Situation-S4: Area of loop is changing in a uniform magnetic field.
S2,S3
S1,S3
S2,S4
S3,S4
S1, S2 \(\to\) The Flux remains constant
S3 \(\to\) Φ= BA cos θ [Here, θ is changing]
S4 \(\to\) The area is changing \(\to\) The EMF induces
A conducting bar moves on two conducting rails as shown in the figure. A constant magnetic field \( B \) exists into the page. The bar starts to move from the vertex at time \( t = 0 \) with a constant velocity. If the induced EMF is \( E \propto t^n \), then the value of \( n \) is _____. 
MX is a sparingly soluble salt that follows the given solubility equilibrium at 298 K.
MX(s) $\rightleftharpoons M^{+(aq) }+ X^{-}(aq)$; $K_{sp} = 10^{-10}$
If the standard reduction potential for $M^{+}(aq) + e^{-} \rightarrow M(s)$ is $(E^{\circ}_{M^{+}/M}) = 0.79$ V, then the value of the standard reduction potential for the metal/metal insoluble salt electrode $E^{\circ}_{X^{-}/MX(s)/M}$ is ____________ mV. (nearest integer)
[Given : $\frac{2.303 RT}{F} = 0.059$ V]
An infinitely long straight wire carrying current $I$ is bent in a planar shape as shown in the diagram. The radius of the circular part is $r$. The magnetic field at the centre $O$ of the circular loop is :

The magnetic field is a field created by moving electric charges. It is a force field that exerts a force on materials such as iron when they are placed in its vicinity. Magnetic fields do not require a medium to propagate; they can even propagate in a vacuum. Magnetic field also referred to as a vector field, describes the magnetic influence on moving electric charges, magnetic materials, and electric currents.