Let's analyze each statement:
Statement 1: Innermost layer of microsporangium is tapetum.
Statement 2: Cells of tapetum possess dense cytoplasm more than one nucleus and nourishes developing pollen grains.
Conclusion:
Since both Statement 1 and Statement 2 are correct descriptions related to the microsporangium and its tapetal layer, the correct option is that Both Statements 1 & 2 are correct.
Statement 1: The innermost layer of the microsporangium is the tapetum.
This is correct. A typical microsporangium has four concentric layers — epidermis, endothecium, middle layers, and tapetum — with tapetum being the innermost.
Statement 2: The cells of the tapetum possess dense cytoplasm and often contain more than one nucleus. They play a crucial role in nourishing the developing pollen grains. This statement is also correct.
Therefore, both Statement 1 and Statement 2 are correct.
Which of these options is true in the context of the below diagram of pollen grain?
A convex lens has power \( P \). It is cut into two halves along its principal axis. Further, one piece (out of two halves) is cut into two halves perpendicular to the principal axis as shown in the figure. Choose the incorrect option for the reported lens pieces.
The equation \[ 2 \cos^{-1} x = \sin^{-1} \left( 2 \sqrt{1 - x^2} \right) \] is valid for all values of \(x\) satisfying:
A metallic sphere of radius \( R \) carrying a charge \( q \) is kept at a certain distance from another metallic sphere of radius \( R_4 \) carrying a charge \( Q \). What is the electric flux at any point inside the metallic sphere of radius \( R \) due to the sphere of radius \( R_4 \)?
The circuit shown in the figure contains two ideal diodes \( D_1 \) and \( D_2 \). If a cell of emf 3V and negligible internal resistance is connected as shown, then the current through \( 70 \, \Omega \) resistance (in amperes) is: