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Crop yield

language culture Maturity 11-13

Farmers grow lots of food.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
They use seeds to grow crops. Good tools help them grow more. This helps families have more to eat. It can also help them sell food. Can you help grow a garden?

40 words

Yield is how much food grows on land. It can also mean wool or milk. Farmers use better tools to grow more. They also use plant food to help.

Growing more food helps farm families. They can sell extra food for money. This helps people live in big cities.

Farmers must save some seeds. They use those seeds for next year. This keeps the food growing. It is a smart way to farm.

79 words

Yield is a way to measure farm crops.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
It tells us how much food grows on a piece of land. Yield can also mean meat, milk, or wool.
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

Farmers use many tools to grow more. They use new seeds and plant food. This helps them grow more food on the same land. Higher yields help farm families. They can sell extra crops to make money. This also lets people work in cities.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

Farmers must also think about seeds. They use a seed ratio to plan. This is a way to compare seeds planted to crops grown. For example, a ratio of 1:3 means one seed makes three grains. A farmer must save one seed for next year. They can eat or sell the other two. In the 9th century, this ratio was low in Europe. It was only 1:2.5. Later, it grew to 1:14. This happened when farmers used a new way to rotate crops.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

167 words

Yield is a way to measure how much a farm produces.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
It looks at the amount of crops grown on a piece of land. This measurement also works for products like meat, milk, or wool. Farmers want high yields to help their families thrive. Higher yields can mean more profit for the farm. Extra crops can be sold or traded for other goods. This extra food can even help support animals like oxen and horses.
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

There are many ways to calculate these numbers. One way is to use the seed multiplication ratio. This compares the seeds planted to the amount of crop harvested. For example, a ratio of 1:3 means one seed produces three grains. A farmer must save one seed for the next year. They can eat or use the other two for animals.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Another way is to measure weight on a specific area of land. In Brazil, farmers often use a unit called a "sack." One sack is equal to 60 kilograms. They measure how many sacks grow per hectare.
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

History shows that yields have changed a lot over time. In the United Kingdom, cereal yields were low in medieval times. They were about 500 kg/ha back then. During the Industrial Revolution, they rose to 2000 kg/ha. Later, the Green Revolution helped them jump to 8000 kg/ha.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
In the 9th century, European seed ratios were only 1:2.5. By the 14th century, the Low Countries reached 1:14. This happened because of the three-field system of crop rotation. These changes helped people grow much more food.

Scientists have studied how these yields work for a long time. Alexander Mitscherlich studied crop yields in 1909. He spoke about the "law of physiological relations." This idea is similar to the law of diminishing returns. Another important idea is Liebig's Law of the Minimum. This law says crop yield depends on plant food. The yield is limited by the food available in the smallest amounts.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Many factors can change how much a crop grows. The Indian Council of Agricultural Research even updated seed ratio ideas in 2018.

High yields change how the whole world works. When yields go up, fewer people are needed on farms. This allows people to work in industry and commerce instead. This change helped cities grow and become much larger. As cities grew, people needed even more food. This created a big demand for many agricultural products.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Using better tools and new seeds also helps the earth. Technological advances can reduce a society's ecological footprint. This means we can grow more while protecting our world.

447 words

In agriculture, yield is a vital measurement of production. It tracks the amount of a crop grown on a specific unit of land. This measurement also applies to animal products like meat, milk, or wool. Yield is not the same as agricultural productivity. Productivity measures the money produced per unit of land. Yield measures the weight of the crop produced per unit of land. A farmer might spend a lot of money on expensive fertilizer to increase yield. However, if the cost is too high, the farmer's profit might actually decline. Because it does not always include every single cost, yield is considered a partial measure of productivity.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

Farmers use different units to measure these results depending on where they live. Many people use kilograms per hectare or bushels per acre. In Brazil, a customary unit called a "sack" is used for production. One sack is equivalent to 60 kilograms, or about 132.277 pounds. Because of this, Brazilian production is often measured in sacks per hectare. These specific units help farmers and scientists track exactly how much food is being produced.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

Another important way to look at yield is through the seed multiplication ratio. This ratio compares the investment in seeds to the final yield. For example, a ratio of 1:3 means one seed is planted to produce three grains. Some agronomists believe a 1:3 ratio is the minimum needed to sustain human life. This is because a farmer must set aside one seed for the next planting season. The remaining two grains can be eaten or used as livestock feed. This ratio can change based on many different factors.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

History shows how much human innovation has changed these ratios and yields. In the 9th century, the seed ratio in parts of Europe was only 1:2.5. By the 14th century, the Low Countries reached a ratio of 1:14. This improvement happened because of the three-field system of crop rotation. We also see massive jumps in cereal yields in the United Kingdom over time. Yields were about 500 kg/ha in medieval times. They rose to 2000 kg/ha during the Industrial Revolution. Finally, they jumped to 8000 kg/ha during the Green Revolution.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

Scientists have developed laws to explain why these yields change. In 1909, Alexander Mitscherlich studied yields and articulated a "law of physiological relations." This law is expressed as a logarithmic function. It describes the relationship between yield and the amount of plant food constituents. This idea is very similar to the law of diminishing returns. Another important concept is Liebig's Law of the Minimum. This law states that crop yield is determined by the amount of plant food present in minimum quantities.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

Increasing yields has massive effects on how human societies function. Higher yields increase the profitability of a farm and the well-being of families. When a farmer produces a surplus, they can sell or barter those extra crops. More grain or fodder can support more draft animals, like horses and oxen. These animals can then be used for more labor and the production of manure. Higher yields also mean fewer people are needed to work the land. This frees people to work in industry and commerce.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

This shift in labor helped cities form and grow larger. As cities grew, they created a higher demand for food and agricultural products. Interestingly, technological advances that increase yield can also help the environment. These advances can reduce a society's ecological footprint. Innovations like better farming tools, new methods, and improved crop varieties drive these changes. By producing more on less land, humanity can meet its needs more efficiently.

Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png
Cereal-crop-yield-vs-fertilizer-application (OWID 0112).png

617 words
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