Step 1: Understand the Ion Concentration Gradient.
In animal cells, the concentration of K\(^+\) inside the cell is much higher than outside, and the concentration of Na\(^+\) is higher outside the cell compared to inside. This is due to the action of the sodium-potassium pump, which actively transports K\(^+\) into the cell and Na\(^+\) out of the cell.
Step 2: Conclusion.
The correct statement is (A), as [K\(^+\)] inside the cell is greater than [K\(^+\)] outside the cell and (C), as [Na\(^+\)] inside the cell is less than [Na\(^+\)] outside the cell.
Final Answer: \[ \boxed{[K^+] \text{ inside the cell } > [K^+] \text{ outside the cell} \text{and} [Na^+] \text{ inside the cell } < [Na^+] \text{ outside the cell}} \]
The most stable carbocation from the following is:
Consider the following sequence of reactions : 
Molar mass of the product formed (A) is ______ g mol\(^{-1}\).
0.01 mole of an organic compound (X) containing 10% hydrogen, on complete combustion, produced 0.9 g H₂O. Molar mass of (X) is ___________g mol\(^{-1}\).

Courage : Bravery :: Yearning :
Select the most appropriate option to complete the analogy.
In the given figure, the numbers associated with the rectangle, triangle, and ellipse are 1, 2, and 3, respectively. Which one among the given options is the most appropriate combination of \( P \), \( Q \), and \( R \)?

A regular dodecagon (12-sided regular polygon) is inscribed in a circle of radius \( r \) cm as shown in the figure. The side of the dodecagon is \( d \) cm. All the triangles (numbered 1 to 12 in the figure) are used to form squares of side \( r \) cm, and each numbered triangle is used only once to form a square. The number of squares that can be formed and the number of triangles required to form each square, respectively, are:

The number of patients per shift (X) consulting Dr. Gita in her past 100 shifts is shown in the figure. If the amount she earns is ₹1000(X - 0.2), what is the average amount (in ₹) she has earned per shift in the past 100 shifts?

The Lineweaver-Burk plot for an enzyme obeying the Michaelis-Menten mechanism is given below.

The slope of the line is \(0.36 \times 10^2\) s, and the y-intercept is \(1.20\) mol\(^{-1}\) L s. The value of the Michaelis constant (\(K_M\)) is ________ \( \times 10^{-3} \) mol L\(^{-1}\) (in integer). [Note: \(v\) is the initial rate, and \([S]_0\) is the substrate concentration]