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Leaves are the main sites for photosynthesis: the process by which plants synthesize food. Most leaves are usually green, due to the presence of chlorophyll in the leaf cells. However, some leaves may have different colors, caused by other plant pigments that mask the green chlorophyll. The thickness, shape, and size of leaves are adapted to.


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It helps in the movement of water vapors. 2. Veins. Leaf veins are divided into two parts: the main/ central vein and the side veins. It helps in transporting water and nutrients throughout the leaf. a. The main vein or the midrib: The main vein is like the backbone of the smaller vein to transport important nutrients from leaves to different.


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Help your learners identify the various parts of a leaf with this handy activity. It includes a labelled poster, which could also be displayed on your classroom wall. Students use this to label their own blank leaf diagram. Show more.


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Leaf Diagram & Parts of a Leaf Labeling Activity Your student will look at a leaf and label a leaf. After your student completes the worksheet, you could have her label a real leaf, too. Leaf Pigments Worksheet Student can color the leaves and write about each pigment found in leaves. Photosynthesis Diagram and Activity Page


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Figure 9.3. 2: Cross section of a hydrophytic leaf. Observe a prepared slide of a hydrophyte, such as Nymphaea, commonly called a water lily. Note the thin epidermal layer and the absence of stomata in the lower epidermis. In the spongy mesophyll, there are large pockets where air can be trapped.


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The air space found between the spongy parenchyma cells allows gaseous exchange between the leaf and the outside atmosphere through the stomata. In aquatic plants, the intercellular spaces in the spongy parenchyma help the leaf float. Both layers of the mesophyll contain many chloroplasts. Figure 30.10. 1: Mesophyll: (a) (top) The central.


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Label the leaf Quiz Key points The leaf is one of the most important organs of a plant. Leaves produce food for the plant through a process called photosynthesis. The leaves of different.


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Leaf Theme Page Leaf Function: Leaves are the powerhouse of plants. In most plants, leaves are the major site of food production for the plant. Structures within a leaf convert the energy in sunlight into chemical energy that the plant can use as food.


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Leaf morphology. Leaves come in a wide variety of sizes and forms across vascular plants, from the scale leaves of some conifers to enormous, broad leaves of some flowering plants (like Coccoloba gigantifolia, shown here) to the highly divided leaves of the tree fern Cyathea (see here).The stereotypical leaf consists of a wide, flat, green blade or lamina attached to the stem by a stalk called.


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The midrib contains the main vein (primary vein) of the leaf as well as supportive ground tissue (collenchyma or sclerenchyma). Figure 3.4.1. 1: A typical eudicot leaf. Many leaves consist of a stalk-like petiole and a wide, flat blade (lamina). The midrib extends from the petiole to the leaf tip and contains the main vein.


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Leaf Parts. Leaves are generally composed of a few main parts: the blade and the petiole. Figure 13.1.2 13.1. 2: A leaf is usually composed of a blade and a petiole. The blade is most frequently the flat, photosynthetic part. The petiole is a stem that attaches the leaf blade to the main stem of the plant.


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A leaf is a plant organ that is flat, thin and usually green in color. It is mostly found above the ground and remains attached to the stem. The presence of pigment 'chlorophyll' makes the leaf green in color that helps to prepare food in plants through photosynthesis. Collectively, green leaves are called foliage.


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Certain organs that are superficially very different from the usual green leaf are formed in the same manner and are actually modified leaves; among these are the sharp spines of cacti, the needles of pines and other conifers, and the scales of an asparagus stalk or a lily bulb. Leaf function photosynthesis


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There are two basic forms of leaves that can be described considering the way the blade (or lamina) is divided. Leaves may be simple or compound. Figure 30.9.1 30.9. 1: Simple and compound leaves: Leaves may be simple or compound. In simple leaves, the lamina is continuous. (a) The banana plant ( Musa sp.) has simple leaves.


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Like the stem, the leaf contains vascular bundles composed of xylem and phloem (Figure 3.4.2.6 − 7 3.4.2. 6 − 7 ). When a typical stem vascular bundle (which has xylem internal to the phloem) enters the leaf, xylem usually faces upwards, whereas phloem faces downwards. The conducting cells of the xylem (tracheids and vessel elements.


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A leaf (pl.: leaves) is a principal appendage of the stem of a vascular plant, usually borne laterally aboveground and specialized for photosynthesis.Leaves are collectively called foliage, as in "autumn foliage", while the leaves, stem, flower, and fruit collectively form the shoot system. In most leaves, the primary photosynthetic tissue is the palisade mesophyll and is located on the upper.