Chute Conveyance

Chute conveyance is an engineering method for moving bulk materials or discrete objects through an inclined or vertical channel, typically using gravity instead of powered machinery. As material enters the chute, gravitational force drives its motion while friction, impact, particle shape, chute angle, and surface properties control sliding, rolling, velocity, and flow stability. Engineers use chutes to transfer, sort, discharge, and feed materials in mining, manufacturing, agriculture, recycling, and material-handling systems. Proper design helps prevent blockages, excessive wear, dust generation, and product damage while improving throughput, energy efficiency, and workplace safety.

Chute Conveyance - Related Videos

Research

JoVE Journal - Environment

Using Generative Art to Convey Past and Future Climate Transitions

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2023

Here, a protocol is presented to visualize climate data as generative art.

Research

JoVE Journal - Biology
Free Sample

Measurement of Leaf Hydraulic Conductance and Stomatal Conductance and Their Responses to Irradiance and Dehydration Using the Evaporative Flux Method (EFM)

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Cited by 105 •

2012

We describe a relatively rapid (30 min) and realistic method for simultaneously measurement of leaf hydraulic conductance (Kleaf) and stomatal conductance (gs) for transpiring excised leaves. The method can be modified to measure the light and dehydration responses of Kleaf and gs.

Measuring Rates of Herbicide Metabolism in Dicot Weeds with an Excised Leaf Assay

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Cited by 14 •

2015

This manuscript describes how herbicide metabolism rates can be effectively quantified with excised leaves from a dicot weed, thereby reducing variability and removing any possible confounding effects of herbicide uptake or translocation typically observed in whole-plant assays.

Single-plant, Sterile Microcosms for Nodulation and Growth of the Legume Plant Medicago truncatula with the Rhizobial Symbiont Sinorhizobium meliloti

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Cited by 9 •

2013

Growth of Medicago truncatula plants in symbiosis with the nitrogen-fixing bacteria Sinorhizobium meliloti in individual, sterile microcosms made from standard laboratory plates permits frequent examination of root systems and nodules without compromising sterility. Plants can be maintained in these growth chambers for up to 9 weeks.

Research

JoVE Journal - Biology
Free Sample

In Situ Hybridization for the Precise Localization of Transcripts in Plants

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Cited by 68 •

2011

The in situ hybridization protocol described here allows a direct localization of mRNA and small RNA expression at the cellular level with high sensitivity and specificity. The procedure is optimized for paraffin-embedded plant tissue sections, is applicable to a wide range of plants and tissues, and can be completed within ten days.

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