Organic matter decomposes more easily in open areas due to increased exposure to air, sunlight, and microbial activity. Closed areas, such as landfills or sealed containers, hinder decomposition by limiting these environmental factors.
Metal carbonates decompose when heated, to form an oxide. For example: Calcium + Oxygen = Calcium carbonate oxide Some carbonates decompose more easily than others, in other words, it happens at a lower tempreture.
The most sensitive part of the leg is typically the shin area, as it is composed of numerous nerves close to the surface of the skin. These nerves are easily stimulated, making this area more sensitive to touch and pain compared to other parts of the leg.
Yes, clothes can decompose over time when exposed to certain environmental conditions. Natural fibers like cotton, linen, and wool will degrade faster than synthetic fibers like polyester and nylon. Biodegradable materials will break down more easily than non-biodegradable ones.
Hills and valleys are formed by changes in elevation over a large area, which may not be easily distinguished from a distance. A close-up view allows for a more detailed perspective, enabling the observer to see the subtle changes in elevation that form the hills and valleys.
Organic materials such as food scraps, paper, and yard waste decompose faster than inorganic materials like plastics and metal. This is because organic materials can be broken down by microorganisms into simpler substances more easily.
Materials such as organic matter (e.g. food scraps, paper, cardboard) and natural fibers (e.g. cotton, wool) decompose easily because they can be broken down by microorganisms into simpler compounds. These materials can be composted to return nutrients back to the soil. Materials that are biodegradable and not heavily processed tend to decompose more easily than synthetic materials such as plastics and metals.
Metal carbonates decompose when heated, to form an oxide. For example: Calcium + Oxygen = Calcium carbonate oxide Some carbonates decompose more easily than others, in other words, it happens at a lower tempreture.
Non biodegradble does not decompose or decayed easily. Example the plastic bags used in the groceries nowadays, it will take more than 200 years to decompose naturally. So it is highly recommended to use paper bags instead.
Materials that decompose the fastest typically include food waste, paper products, and natural fibers such as cotton and wool. These materials break down more easily due to their organic composition and ability to be broken down by microorganisms in the environment.
Magnesium nitrate will break down more easily than silver nitrate when heated because magnesium is a lighter metal with weaker bonds compared to silver. This makes magnesium nitrate more thermally unstable and easier to decompose upon heating. Silver nitrate requires a higher temperature to decompose due to the stronger bonds between silver and nitrate ions.
The most sensitive part of the leg is typically the shin area, as it is composed of numerous nerves close to the surface of the skin. These nerves are easily stimulated, making this area more sensitive to touch and pain compared to other parts of the leg.
I know that they do.
Styrofoam does not easily decompose in the environment due to its chemical composition. However, there are technologies being developed that use bacteria or enzymes to break down styrofoam into more eco-friendly compounds. Recycling or proper disposal of styrofoam is important to reduce its negative impact on the environment.
it takes more than a yearIt takes more than a year
so the horse can feel the rider more easily and respond to the riders seat!
yea they do but it takes more time that flesh each component in our body takes some time to decompose therefore some may decompose before others
Silver nitrate breaks down more easily than magnesium nitrate. When exposed to light, silver nitrate decomposes into silver and nitrogen oxides. Magnesium nitrate, on the other hand, requires higher temperatures to decompose into magnesium oxide and nitrogen dioxide.