Plants, specifically vascular plants, have water transport systems called xylem and phloem. These systems are responsible for transporting water, nutrients, and sugars throughout the plant. Aquatic organisms, like jellyfish and sea anemones, also have water transport systems that help with circulation.
osmosis
Xylem is to water transport. Xylem is a type of plant tissue responsible for transporting water and minerals from the roots to the rest of the plant.
its because they cant stay together.
Multicellular organisms in a plant have specialized functions that contribute to the overall growth, development, and functioning of the plant. These functions can include nutrient absorption, photosynthesis, water transport, reproduction, and defense against pathogens. Each type of cell or tissue plays a specific role in supporting the plant's survival and reproduction.
A gondola is a type of water transport that uses a long, narrow boat propelled by a person standing at the rear. Gondolas are traditional to Venice, Italy, and are often used to navigate the city's canals.
water
osmosis
Xylem is to water transport. Xylem is a type of plant tissue responsible for transporting water and minerals from the roots to the rest of the plant.
The amount of nutrients in freshwater will determine what type of organisms there are. If there is bacteria in the water, it may affect the nutrients and contaminate them, which will affect the organisms that live in the water.
Osmosis
Osmosis is a type of passive transport that involves the movement of water molecules across a semi-permeable membrane from an area of higher water concentration to an area of lower water concentration. It does not involve the transport of calcium ions.
=The type of solution and the type of transport. I found this in my Hon. Bio. book Rockville HS Maryland=
osmosis
osmosis
Vascular. Transports Water, Food, Hormones, and Minerals
osmosis
It is a type of passive diffusion, as the water travels along a concentration gradiant. As opposed to active transport, where the substances can pass against a concentration gradiant.