GARLANDO, UMBERTO
 Distribuzione geografica
Continente #
EU - Europa 457
NA - Nord America 260
AS - Asia 67
AF - Africa 7
SA - Sud America 7
Continente sconosciuto - Info sul continente non disponibili 2
OC - Oceania 2
Totale 802
Nazione #
IT - Italia 259
US - Stati Uniti d'America 255
GB - Regno Unito 80
FR - Francia 28
IE - Irlanda 20
CZ - Repubblica Ceca 19
DE - Germania 18
CN - Cina 16
RU - Federazione Russa 15
IN - India 14
IR - Iran 13
UA - Ucraina 8
BR - Brasile 7
CA - Canada 5
CI - Costa d'Avorio 5
TR - Turchia 5
VN - Vietnam 5
ID - Indonesia 4
KR - Corea 3
FI - Finlandia 2
RO - Romania 2
SG - Singapore 2
TH - Thailandia 2
TW - Taiwan 2
A1 - Anonimo 1
AT - Austria 1
AU - Australia 1
BE - Belgio 1
CH - Svizzera 1
EU - Europa 1
JP - Giappone 1
MA - Marocco 1
NL - Olanda 1
NO - Norvegia 1
NZ - Nuova Zelanda 1
SE - Svezia 1
ZA - Sudafrica 1
Totale 802
Città #
Southend 73
Turin 67
Torino 50
Ashburn 31
Fairfield 28
Borgo San Dalmazzo 27
Dublin 20
Seattle 14
Cambridge 13
Houston 12
Buffalo 10
Santa Cruz 10
Wilmington 10
Old Bridge 9
San Ramon 8
Woodbridge 8
Ann Arbor 6
Abidjan 5
Boardman 5
Manta 5
Norwalk 5
University Park 5
Wuhan 5
Bremen 4
Fremont 4
Milan 4
Toronto 4
Washington 4
Alba 3
Andover 3
Basking Ridge 3
Chandler 3
Dong Ket 3
Halle 3
Jacksonville 3
Kahramanmaras 3
Lake Forest 3
Moncalieri 3
Mumbai 3
San Donato Milanese 3
Tehran 3
Varese 3
Almese 2
Augusta 2
Beijing 2
Belo Horizonte 2
Bolzano 2
Calderara Di Reno 2
Clearwater 2
Columbus 2
Dourdain 2
Duncan 2
Gaglianico 2
Hanoi 2
Helsinki 2
Littleton 2
London 2
Orbassano 2
Palo Alto 2
Phoenix 2
Rostov-on-don 2
San Mateo 2
Shanghai 2
Tabriz 2
Trofarello 2
Ufa 2
Vigonovo 2
Vizianagaram 2
Absecon 1
Agadir 1
Aksaray 1
Alpignano 1
Ardabil 1
Auburn 1
Bayonne 1
Bedford 1
Bengaluru 1
Bogen 1
Brussels 1
Bruzolo 1
Canberra 1
Carolina 1
Chennai 1
Collegno 1
Cumiana 1
Cuneo 1
Duluth 1
Easton 1
Fars 1
Florence 1
Frankfurt Am Main 1
Genova 1
Gioia del Colle 1
Goch 1
Grove 1
Hangyang 1
Hefei 1
Henderson 1
Indiana 1
Jakarta 1
Totale 572
Nome #
MagCAD: Tool for the Design of 3-D Magnetic Circuits, file e384c42f-c456-d4b2-e053-9f05fe0a1d67 238
Efficient and reliable fault analysis methodology for nanomagnetic circuits, file e384c42f-6f6e-d4b2-e053-9f05fe0a1d67 189
TOPOLINANO & MAGCAD: A DESIGN AND SIMULATION FRAMEWORK FOR THE EXPLORATION OF EMERGING TECHNOLOGIES, file e384c430-c7ea-d4b2-e053-9f05fe0a1d67 55
Analysis of in Vivo Plant Stem Impedance Variations in Relation with External Conditions Daily Cycle, file e384c433-afba-d4b2-e053-9f05fe0a1d67 50
Wappfruit: a project for the optimisation of water use in agriculture, file d88b52ad-3d87-42c3-a103-91fdf27aea4a 39
ToPoliNano and fiction: Design Tools for Field-coupled Nanocomputing, file e384c432-c186-d4b2-e053-9f05fe0a1d67 30
FUNCODE: Effective Device-to-System Analysis of Field Coupled Nanocomputing Circuit Designs, file e384c433-2376-d4b2-e053-9f05fe0a1d67 29
Enabling Field-Coupled Nanocomputing Multi-Technological Circuits: Design, Simulation and Validation, file e384c432-2030-d4b2-e053-9f05fe0a1d67 26
Towards Optimal Green Plant Irrigation: Watering and Body Electrical Impedance, file e384c432-ae49-d4b2-e053-9f05fe0a1d67 26
Electrical Modelling of In-Vivo Impedance Spectroscopy of Nicotiana tabacum Plants, file e384c434-27af-d4b2-e053-9f05fe0a1d67 26
Enabling Field-Coupled Nanocomputing Multi-Technological Circuits: Design, Simulation and Validation, file e384c432-202f-d4b2-e053-9f05fe0a1d67 13
Corrections to "MagCAD: A Tool for the Design of 3-D Magnetic Circuits" (vol 3, pg 65, 2017), file e384c434-d659-d4b2-e053-9f05fe0a1d67 10
Taming Molecular Field-Coupling for Nanocomputing Design, file 74185597-f34e-4683-8ff9-972be663cee6 7
Analysis of in Vivo Plant Stem Impedance Variations in Relation with External Conditions Daily Cycle, file e384c433-e202-d4b2-e053-9f05fe0a1d67 7
Chapter 9. Let The Plants Do the Talking: Listen to Them and Let Them Tell You How They Feel, file e384c434-07e2-d4b2-e053-9f05fe0a1d67 6
Efficient and reliable fault analysis methodology for nanomagnetic circuits, file e384c42f-65e0-d4b2-e053-9f05fe0a1d67 5
3D design of a pNML random access memory, file e384c42f-9b01-d4b2-e053-9f05fe0a1d67 5
In-vivo proximal monitoring system for plant water stress and biological activity based on stem electrical impedance, file 626830bb-5fc9-466d-8b48-5c45baa41855 4
Architectural exploration of perpendicular Nano Magnetic Logic based circuits, file e384c430-35eb-d4b2-e053-9f05fe0a1d67 4
ToPoliNano and fiction: Design Tools for Field-coupled Nanocomputing, file e384c432-97ae-d4b2-e053-9f05fe0a1d67 4
Plants and Environmental Sensors for Smart Agriculture, an Overview, file e384c432-d787-d4b2-e053-9f05fe0a1d67 4
FUNCODE: Effective Device-to-System Analysis of Field Coupled Nanocomputing Circuit Designs, file e384c433-1b03-d4b2-e053-9f05fe0a1d67 4
Long-Range Low-Power Soil Water Content Monitoring System for Precision Agriculture, file 30317b55-470f-4eae-8581-dceeeddb0b07 3
Taming Molecular Field-Coupling for Nanocomputing Design, file c65cc960-f0e5-4021-87f5-868ce6664404 3
Design and Characterization of Circuit based on Emerging Technology: the MagCAD Approach, file e384c430-9851-d4b2-e053-9f05fe0a1d67 3
Towards Optimal Green Plant Irrigation: Watering and Body Electrical Impedance, file e384c432-bd31-d4b2-e053-9f05fe0a1d67 3
In-vivo proximal monitoring system for plant water stress and biological activity based on stem electrical impedance, file 0c336230-0c2f-4800-b028-8473f0005988 2
A “Plant-Wearable System” for Its Health Monitoring by Intra- and Interplant Communication, file 29e0f70e-6bb8-4e84-aa0a-9e22edbb7bc3 2
Machine Learning Models Comparison for Water Stress Detection Based on Stem Electrical Impedance Measurements, file 40ef7eb1-9cee-4a3d-8953-470c7e668502 2
On the impact of the stem electrical impedance in neural network algorithms for plant monitoring applications, file 55915e52-48a8-4dfb-9a9f-2e9016c87fa0 2
Numerical Model for 32-Bit Magnonic Ripple Carry Adder, file 6a725bb4-4b13-4806-952a-93dc91333784 2
NANOcom: A Mosaic Approach for nanoelectronic circuits design, file e384c42f-9d0a-d4b2-e053-9f05fe0a1d67 2
ToPoliNano & MagCAD: A Complete Framework for Design and Simulation of Digital Circuits Based on Emerging Technologies, file e384c430-3aea-d4b2-e053-9f05fe0a1d67 2
Ask the plants directly: Understanding plant needs using electrical impedance measurements, file e384c434-72ec-d4b2-e053-9f05fe0a1d67 2
On the impact of the stem electrical impedance in neural network algorithms for plant monitoring applications, file e5929340-0f19-4063-85a3-9070d147e8d9 2
Long-Range Low-Power Electronic System for Drip Irrigation in Precision Agriculture, file f3846187-ce6c-4e5d-9177-4ac7b8f0ac60 2
Machine Learning Models Comparison for Water Stress Detection Based on Stem Electrical Impedance Measurements, file 0fb78775-ec87-48ae-901c-8fc9497c02d1 1
Long-Range Low-Power Electronic System for Drip Irrigation in Precision Agriculture, file 3abfc954-96df-4532-86ea-01a59423bc8e 1
Long-Range Low-Power Soil Water Content Monitoring System for Precision Agriculture, file 473f7c65-5556-4d6b-9707-613b6ffa91b2 1
An Integrated Multi-Sensor System for Remote Bee Health Monitoring, file 93e7dd2f-f743-4577-8f2f-b8f1bdc81966 1
An Integrated Multi-Sensor System for Remote Bee Health Monitoring, file ce36ee47-883d-4557-bdfd-0de88cdf131e 1
Ask the plants directly: Understanding plant needs using electrical impedance measurements, file e384c434-72eb-d4b2-e053-9f05fe0a1d67 1
Totale 819
Categoria #
all - tutte 1.517
article - articoli 777
book - libri 0
conference - conferenze 527
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 6
Totale 2.827


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2018/201935 0 0 0 0 0 0 0 0 0 0 11 24
2019/202096 14 9 3 10 8 4 10 8 11 4 10 5
2020/2021129 8 10 15 8 10 8 6 13 19 4 15 13
2021/2022240 25 10 16 15 19 16 46 29 15 19 21 9
2022/202395 4 6 8 9 13 21 15 3 5 3 7 1
2023/202493 14 0 0 3 6 13 23 16 9 7 2 0
Totale 819