2010Unpublished venueRequires access

Growth and Mineral Nutrition of Field Crops

N. K. Fageria, V. C. Baligar, Charles Jones

Open publisher page 875 citations

Abstract

By the year 2050, the world's population is expected to reach nine billion. To feed and sustain this projected population, world food production must increase by at least 50 percent on much of the same land that we farm today. To meet this staggering challenge, scientists must develop the technology required to achieve an "evergreen" revolution-one

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By the year 2050, the world's population is expected to reach nine billion. To feed and sustain this projected population, world food production must increase by at least 50 percent on much of the same land that we farm today. To meet this staggering challenge, scientists must develop the technology required to achieve an "evergreen" revolution-one

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OpenAlex reports 875 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

By the year 2050, the world's population is expected to reach nine billion. To feed and sustain this projected population, world food production must increase by at least 50 percent on much of the same land that we farm today. To meet this staggering challenge, scientists must develop the technology required to achieve an "evergreen" revolution-one

Key concepts: Field (mathematics), Mineral, Agroforestry, Environmental science, Agricultural engineering, Agronomy, Geography, Biology

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