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Phylum Protozoa (Primitive Animals)
Unicellular (single celled) animals.Nutrition is heterotropi..
Phylum Protozoa (Primitive Animals)
Features of Protozoans - Amoeba is a typical protozoa..
Features of Protozoans - Amoeba is a typical protozoa..Root Pattern
One crop component is deep rooted whereas the other is shallow roote..
Amphibious and Rooted
These plants grow in water logged soils. Examples: Polygonum, Marsi..
Modifications of Roots
Roots sometimes have special functions to perform and in such cases their form and structure differ from those of normal root..
Root System
Root is the descending portion of the axis of the plant. It is not normally green in colour. It is characterised by the absence of nodes and internode..
Root System
Root is the descending portion of the axis of the plant. It is not normally green in colour. It is characterised by the absence of nodes and internodes. There are two types of root systems, the tap root system (seen in dicots) and fibrous root system (seen in..
Emergent and Rooted
These plants grow in shallow waters and remain attached to the bottom. In plants such as Sagittaria and Ranunculus, the shoots are partly in water and partly exposed to air. In Scirpus, the shoots are completely exposed to air. To live in aquatic habitats, the hydrophytes are characterised by many..
Nature of the roots
Nature of the roots - Without solving the quadratic equation, the nature of the roots can be determined using the discriminant. i) D >0 i.e., positive and not a perfect square. The roots are real and distinct (irrational). ii) D >0 i.e., perfect square. The ..
Nature of the roots - Without solving the quadratic equation, the nature of the roots can be determined using the discriminant. i) D >0 i.e., positive and not a perfect square. The roots are real and distinct (irrational). ii) D >0 i.e., perfect square. The ..Nature of the roots
Without solving the quadratic equation, the nature of the roots can be determined using the discriminant. i) D >0 i.e., positive and not a perfect square. The roots are real and distinct (irrational). ii) D >0 i.e., perfect square. The roots are rational ..
Result
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