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MI Professor Spotlights 'Smart Agriculture'

By Chrystal Blair

Some experts predict arable land per person will shrink by two-thirds by 2050. To combat it, Michigan students are being trained in "smart" agriculture.

Researchers believe smart agriculture is a promising solution to food production challenges as land becomes scarce because of climate change and water shortages. It involves methods such as vertical farming and urban gardens, combined with technologies using sensors, drones and artificial intelligence to improve productivity and yield.

Sara Masoud, assistant professor of industrial and systems engineering at Wayne State University, leads a program training students in smart agriculture.

"One of the options that we are putting together in my lab, in order to expose the students to is something called the hydroponic system," Masoud explained. "The idea is that if you don't have access to good soil to grow your plants, you can be growing your plants in, for example, water."

Critics of smart farming contended automation could displace farmworkers and, along with the high cost of technologies such as drones and AI, leave small-scale or low-income farmers behind.

They also worry farmers may rely too much on technology, which could be problematic if systems fail or there are disruptions such as data breaches or software glitches. Masoud believes the students' training in smart agriculture will help prepare them for the future.

"Hoping that this exposure is not only going to let them see what's in smart agriculture, but also help them to gain expertise, for example, in data science, or advance technologies that might help them even if they are not pursuing a smart agriculture in the future," Masoud added.

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Supplemental Nitrogen on Soybeans: Can Early Nitrogen Increase Yield?

Video: Supplemental Nitrogen on Soybeans: Can Early Nitrogen Increase Yield?

Can supplemental nitrogen help soybeans reach higher yield potential? Technical Agronomist Tim Sickman walks through an ongoing trial at the Nutrien Innovation Farm in Owensboro, Kentucky, exploring whether a modest amount of nitrogen applied at planting can support higher-yielding soybean environments.

The trial compares 30 pounds of supplemental nitrogen across both 15- and 30-inch rows, along with treatments that include sulfur and micronutrients. Similar trials conducted in 2024 and 2025 delivered a six- to seven-bushel yield response, prompting the team to expand the research this season.

Early observations show that treated soybeans are slightly taller and averaging about two additional nodes on the main stem. These added nodes could create more opportunities for blooms and pods, but the true results will come at harvest when the team evaluates pod development, seed fill and final yield.

In This Video:

Why high-yield soybeans may need supplemental nitrogen

Results from the 2024 and 2025 trials

Nitrogen treatments in 15- and 30-inch rows

Fertilizer placement and application methods

Differences in plant height and node counts

Potential effects on pod development and yield