Design and Development of Agriculture Sprayer Vehicle [PDF]
Siddharth Kshirsagar+4 more
openalex +1 more source
Heterojunctions combining halide perovskites with low‐dimensional materials enhance optoelectronic devices by enabling precise charge control and improving efficiency, stability, and speed. These synergies advance flexible electronics, wearable sensors, and neuromorphic computing, mimicking biological vision for real‐time image analysis and intelligent
Yu‐Jin Du+11 more
wiley +1 more source
Energy-environmental evaluation of conventional and variable rate technology sprayer; application of Life Cycle Assessment. [PDF]
Fathi R+4 more
europepmc +1 more source
Reducing environmental exposure to PPPs in super-high density olive orchards using UAV sprayers. [PDF]
Sánchez-Fernández L+3 more
europepmc +1 more source
High Thermoelectric Performance in Low‐Cost Cu8SiSxSe6‐x Argyrodite
This study discovers the great potential of Cu8SiSxSe6‐x argyrodites as new, low‐cost, Te‐free thermoelectric materials. The proposed defect scheme suppresses the phase transition, enhances the weighted mobility and optimizes the grain boundary contacts.
Taras Parashchuk+7 more
wiley +1 more source
ZPTM: Zigzag Path Tracking Method for Agricultural Vehicles Using Point Cloud Representation. [PDF]
Yang S, Zhang E, Liu Y, Du J, Yin X.
europepmc +1 more source
Na2S Presodiation Enables Long Cycling Anode‐Free Sodium Batteries via Rapid Spontaneous Reactions
Na2S with high sodium content is utilized as a sodium replenishment material for AFSBs. The spontaneous reaction between polysulfides and Na3−xV2(PO4)3, complete conversion from Na2S to sulfur is achieved under low voltage and catalyst‐free conditions. With the assistance of the additionally supplied sodium ions, the Na2S@NVP||Zn AFSBs retain 70.8% of ...
Yujie Chen+5 more
wiley +1 more source
Improving agricultural spraying with multi-rotor drones: a technical study on operational parameter optimization. [PDF]
Yallappa D+6 more
europepmc +1 more source
“Writing” Crystal Phases in Amorphous Calcium Carbonate via Laser‐Induced Patterned Transformations
Laser‐induced crystallization enabling the patterning of amorphous calcium carbonate into various distinct phases is introduced. This approach provides spatial control over polymorph selection, both crystalline and amorphous, inspired by biomineralization pathways.
Hadar Shaked+6 more
wiley +1 more source
Technological Progress Toward Peanut Disease Management: A Review. [PDF]
Asif M, Rayamajhi A, Mahmud MS.
europepmc +1 more source