According to Archimedes' Principle, the increase in buoyant force due to additional submergence equals the weight of the coin. The side of the cube is $10\ \text{cm}$, so base area $A = 100\ \text{cm}^2$.
Extra depth submerged $\Delta h = 0.3\ \text{cm}$. Additional volume of water displaced $\Delta V = A \times \Delta h = 100 \times 0.3 = 30\ \text{cm}^3 = 3 \times 10^{-5}\ \text{m}^3$.
The weight of the coin $W = \rho_{water} g \Delta V = 1000 \times 10 \times 3 \times 10^{-5} = 0.3\ \text{N}$.
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 :

Assuming in forward bias condition there is a voltage drop of \(0.7\) V across a silicon diode, the current through diode \(D_1\) in the circuit shown is ________ mA. (Assume all diodes in the given circuit are identical) 
Three long straight wires carrying current are arranged mutually parallel as shown in the figure. The force experienced by \(15\) cm length of wire \(Q\) is ________. (\( \mu_0 = 4\pi \times 10^{-7}\,\text{T m A}^{-1} \)) 
A wooden cubical block of relative density 0.4 is floating in water. Side of cubical block is $10 \text{ cm}$. When a coin is placed on the block, it dips by $0.3 \text{ cm}$, weight of coin is:
A flexible chain of mass $m$ is hanging as shown. Find tension at the lowest point. 
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 :

Assuming in forward bias condition there is a voltage drop of \(0.7\) V across a silicon diode, the current through diode \(D_1\) in the circuit shown is ________ mA. (Assume all diodes in the given circuit are identical) 
Write the correct order of rate of reaction of following compounds with $PhN_2Cl$
P: $N,N$-dimethylaniline
Q: $N,N$-dimethyl-3-methylaniline
R: $N,N$-dimethyl-2,6-dimethylaniline