Results 211 to 220 of about 48,500 (264)

Value of Information of Improved Traceability in Fresh Produce Markets

open access: yesAgribusiness, EarlyView.
ABSTRACT Traceability plays an important role in promoting a safe food supply by fostering transparent information exchange along the food supply chain. New technological innovations have the potential to improve traceability outcomes, as greater transparency along the food supply chain can aid in pinpointing precise origins of the contamination ...
Kelsey Vourazeris   +2 more
wiley   +1 more source

Toward Capacitive In‐Memory‐Computing: A Device to Systems Level Perspective on the Future of Artificial Intelligence Hardware

open access: yesAdvanced Intelligent Discovery, EarlyView.
Capacitive, charge‐domain compute‐in‐memory (CIM) stores weights as capacitance,eliminating DC sneak paths and IR‐drop, yielding near‐zero standbypower. In this perspective, we present a device to systems level performance analysis of most promising architectures and predict apathway for upscaling capacitive CIM for sustainable edge computing ...
Kapil Bhardwaj   +2 more
wiley   +1 more source

Sampling Strategy: An Overlooked Factor Affecting Artificial Intelligence Prediction Accuracy of Peptides’ Physicochemical Properties

open access: yesAdvanced Intelligent Discovery, EarlyView.
This study reveals that sampling strategy (i.e., sampling size and approach) is a foundational prerequisite for building accurate and generalizable AI models in peptide discovery. Reaching a threshold of 7.5% of the total tetrapeptide sequence space was essential to ensure reliable predictions.
Meiru Yan   +3 more
wiley   +1 more source

The time-energy budget of a moose

Theoretical Population Biology, 1978
Abstract As the first step in developing an optimal foraging model for moose (Belovsky 1978), a time-energy budget for a moose was developed. For the summer period (late May through early September) at Isle Royale National Park, Michigan, we made various behavioral observations on feeding moose and inventoried their food resources.
Gary E. Belovsky, Peter A. Jordan
openaire   +2 more sources

Energy and Energy Budgets

1980
Organisms are comprised of cells, which are highly organized groupings of complex molecules. To maintain the degree of organization making up life, energy of the right magnitude is necessary. One learns from thermodynamics that the natural trend of the universe is to go toward increased entropy, i.e., from a degree of order toward more disorder.
openaire   +1 more source

Balancing insect energy budgets

Oecologia, 1985
Energy budgets are based upon the equation C=P P + R + FU, where C = Consumption, P = Production, R = Respiration, and FU= Rejecta (comprising F, egesta, and U, excreta). In studies of insect energetics where all four quantities have been measured, the completed budget rarely balances.
openaire   +2 more sources

Budgeting of Energy

1996
Energy taken in as food is apportioned in various ways. Some builds new tissue as growth or is deposited in energy storage products such as fat or glycogen. Some is used in production of young. Much of it Fuels metabolism and is expended in bodily maintenance. Finally, what is not assimilated is lost in the faeces.
openaire   +1 more source

Energy budgets

1999
Abstract Previous chapters have told us how much energy is needed for particular functions such as growth, maintaining body temperature, or running at some particular speed. Now we ask how much energy animals use in their everyday lives, and how it is divided between functions.We have seen how animals ‘ rates of energy consumption ...
openaire   +1 more source

Energy Budgets of Plants

1980
All parts of plants have temperatures determined by their environmental conditions. The energy status of a plant or a plant leaf is manifested by its temperature. The leaves and stems of plants have small masses and are generally of low heat capacity.
openaire   +1 more source

Earth’s Energy Budget

2012
Earth’s energy imbalance is the difference between the amount of solar energy absorbed by the Earth and the amount of energy it radiates to space as heat. If the imbalance is positive, more energy coming in than going out, we can expect Earth to become warmer.
G. Thomas Farmer, John Cook
openaire   +1 more source

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