Turmeric (Curcuma longa) is not a plant with parallel venation; instead, it exhibits a type of venation known as reticulate venation. This means that the veins in its leaves form a branching pattern, creating a network-like appearance. Parallel venation is typically found in monocot plants, such as grasses and lilies, while turmeric, a monocot, displays reticulate venation in its leaf structure.
Arugula is a dicot as it is part of the class magnoliopsida which have the netlike venation pattern in leaves, the root system involving a taproot, and other characteristics that defines a dicot and differentiates it from a monocot
Atoms in a crystal lattice, tiles in a mosaic, and molecules in a polymer are examples of elements arranged in a regular geometric pattern.
yes
mendeleev arranged elements according to atomic mass. He was able to observe periodicity when arranged in this pattern.
In monocot stems, vascular bundles are scattered throughout the ground tissue. They are not arranged in a distinct pattern like in dicot stems where they form a ring. The scattered distribution of vascular bundles provides support and strength to the stem.
In monocot stems, vascular bundles are scattered throughout the ground tissue. They are arranged in a complex pattern, with the xylem positioned towards the center and the phloem towards the periphery. This arrangement provides strength and flexibility to the stem.
The vascular bundles in a monocot herbaceous stem are said to be scattered, because they lack the organization of the dicot vascular bundles. Dicot vascular bundles are arranged in a star shaped formation, whereas the monocot vascular bundles are placed randomly.
Turmeric (Curcuma longa) is not a plant with parallel venation; instead, it exhibits a type of venation known as reticulate venation. This means that the veins in its leaves form a branching pattern, creating a network-like appearance. Parallel venation is typically found in monocot plants, such as grasses and lilies, while turmeric, a monocot, displays reticulate venation in its leaf structure.
A lattice is arranged in a 3 dimensional pattern
A Pattern of properties appeared when he arranged the elements in order of increasing Atomic Mass
The particles in a crystalline solid are arranged in a repeating pattern.
A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.A new Roman town was arranged on a grid pattern and was orientated toward the cardinal points if possible.
Mendeleev arranged the elements are arranged in order of increasing atomic masses. He founded that properties of elements are periodic when arranged in this pattern.
The veins in a grass leaf run parallel, marking it as a monocot
A crstal
Nonliving, solid material formed in nature with particles arranged in a repeating pattern is a mineral. Atoms of a mineral are arranged in a repeating pattern to form a solid that is called a crystal.