ZANDRON, CLAUDIO
 Distribuzione geografica
Continente #
NA - Nord America 14.730
AS - Asia 10.029
EU - Europa 7.043
SA - Sud America 1.010
AF - Africa 206
Continente sconosciuto - Info sul continente non disponibili 15
OC - Oceania 12
Totale 33.045
Nazione #
US - Stati Uniti d'America 13.694
SG - Singapore 3.049
VN - Vietnam 2.507
CN - Cina 2.119
IT - Italia 1.159
HK - Hong Kong 1.143
DE - Germania 1.038
RU - Federazione Russa 1.035
SE - Svezia 1.021
CA - Canada 963
IE - Irlanda 802
BR - Brasile 738
UA - Ucraina 511
GB - Regno Unito 488
FR - Francia 288
KR - Corea 235
IN - India 185
TR - Turchia 168
FI - Finlandia 164
BD - Bangladesh 127
AR - Argentina 111
AT - Austria 105
IQ - Iraq 97
DK - Danimarca 93
NL - Olanda 77
ZA - Sudafrica 76
ID - Indonesia 54
PK - Pakistan 54
MX - Messico 47
JP - Giappone 46
PH - Filippine 46
CO - Colombia 39
SA - Arabia Saudita 37
ES - Italia 36
HU - Ungheria 36
VE - Venezuela 35
UZ - Uzbekistan 34
PL - Polonia 32
BE - Belgio 31
CH - Svizzera 30
RO - Romania 26
EC - Ecuador 23
KE - Kenya 21
MA - Marocco 21
CL - Cile 19
MU - Mauritius 17
CZ - Repubblica Ceca 16
ET - Etiopia 16
PY - Paraguay 15
MY - Malesia 13
NP - Nepal 13
PE - Perù 12
AE - Emirati Arabi Uniti 11
LT - Lituania 11
PS - Palestinian Territory 11
UY - Uruguay 11
EG - Egitto 10
IL - Israele 10
TH - Thailandia 10
TN - Tunisia 10
AU - Australia 9
EU - Europa 9
JM - Giamaica 9
PT - Portogallo 9
DZ - Algeria 8
JO - Giordania 8
KZ - Kazakistan 8
MD - Moldavia 8
AZ - Azerbaigian 7
IR - Iran 7
OM - Oman 6
BO - Bolivia 5
CR - Costa Rica 5
PA - Panama 5
AL - Albania 4
AO - Angola 4
HR - Croazia 4
LB - Libano 4
RS - Serbia 4
BY - Bielorussia 3
MZ - Mozambico 3
NG - Nigeria 3
NZ - Nuova Zelanda 3
SC - Seychelles 3
SN - Senegal 3
SY - Repubblica araba siriana 3
A1 - Anonimo 2
A2 - ???statistics.table.value.countryCode.A2??? 2
BA - Bosnia-Erzegovina 2
BB - Barbados 2
BH - Bahrain 2
CI - Costa d'Avorio 2
GA - Gabon 2
GE - Georgia 2
GR - Grecia 2
GT - Guatemala 2
KG - Kirghizistan 2
MK - Macedonia 2
SR - Suriname 2
TW - Taiwan 2
Totale 33.018
Città #
Ann Arbor 1.957
Singapore 1.558
Woodbridge 1.384
Hong Kong 1.127
Ashburn 1.007
Fairfield 833
Toronto 792
Dublin 785
Houston 693
Ho Chi Minh City 671
Chandler 657
San Jose 626
Hanoi 617
Jacksonville 589
Frankfurt am Main 539
Wilmington 454
Santa Clara 440
Beijing 363
Hefei 361
Dearborn 338
Milan 327
Seattle 321
New York 287
Cambridge 257
Princeton 250
Seoul 231
Chicago 221
The Dalles 216
Los Angeles 201
Nanjing 177
Dong Ket 145
Dallas 143
Council Bluffs 134
Lauterbourg 127
Moscow 108
Boardman 106
Altamura 102
Lawrence 102
Lachine 94
Buffalo 91
Shanghai 91
Vienna 79
Guangzhou 71
San Diego 69
Haiphong 64
São Paulo 63
Da Nang 62
Hangzhou 55
Nanchang 50
Quận Bình Thạnh 48
Shenyang 48
London 47
Biên Hòa 41
Helsinki 41
Andover 39
Tianjin 39
Hebei 37
Munich 37
Nuremberg 37
Mountain View 36
Huizen 33
Hải Dương 33
Orem 33
Rio de Janeiro 33
Istanbul 31
Rome 31
Baghdad 30
Can Tho 30
Tashkent 30
Bergamo 29
Jakarta 29
Salt Lake City 29
Ninh Bình 28
Quận Một 28
Zhengzhou 28
Brussels 27
Bắc Ninh 27
Changsha 27
San Francisco 27
Atlanta 26
Johannesburg 26
Sacramento 26
Ottawa 25
Tokyo 25
Denver 24
Dhaka 24
Warsaw 24
Nembro 23
Ningbo 23
Thái Nguyên 23
Jinan 22
Chennai 21
Fremont 21
Jeddah 21
Nairobi 20
Norwalk 20
Vũng Tàu 20
Budapest 19
Ha Long 19
Jiaxing 19
Totale 21.519
Nome #
Spiking neural network classification of X-ray chest images 1.392
Workshop on Natural Computing – WNC 2024 (Preface) 471
Interdisciplinary Nature of Information Processing - Special Issue Dedicated to Giancarlo Mauri on the Occasion of His 70th Birthday 408
Subroutines in P systems and closure properties of their complexity classes 368
Characterizing PSPACE with shallow non-confluent P systems 342
A Turing machine simulation by P systems without charges 333
Depth-two P systems can simulate Turing machines with NP oracles 330
P Systems with Elementary Active Membranes: Beyond NP and coNP 314
Shallow laconic P systems can count 313
A survey on space complexity of P systems with active membranes 309
A Gentle Introduction to Membrane Systems and Their Computational Properties 309
Alternative space definitions for P systems with active membranes 307
Active P-Colonies 304
Solving QSAT in Sublinear Depth 296
P systems with input in binary form 291
Inferring P systems from their computing steps: An evolutionary approach 288
An Efficient Simulation of Polynomial-Space Turing Machines by P Systems with Active Membranes 284
Gemmating P systems: collapsing hierarchies 282
Dynamical probabilistic P systems 279
Hierarchies of parallel rewriting P systems - a survey 278
Open Problems in Membrane Computing and How Not to Solve Them 276
Shallow non-confluent P systems 275
P systems with active membranes working in polynomial space 271
Solving NP-complete problems using P systems with active membranes 270
P systems with active membranes: Trading time for space 270
Analysis and Simulation of Dynamics in Probabilistic P Systems 268
Spiking neural P systems: main ideas and results 265
On three variants of rewriting P systems 263
P Systems Simulating Oracle Computations 263
Space complexity equivalence of P systems with active membranes and Turing machines 262
Elementary Active Membranes Have the Power of Counting 261
Complexity aspects of polarizationless membrane systems 258
Conservative Computations in Energy-based P Systems 257
Evaluating space measures in P systems 254
The counting power of P systems with antimatter 251
Solving the Factorization Problem with P Systems 249
Complexity classes for membrane systems 248
Recent complexity-theoretic results on P systems with active membranes 247
Nine test tubes generate any RE language 245
Uniform solutions to SAT and Subset Sum by spiking neural P systems 245
Tissue P systems can be simulated efficiently with counting oracles 243
Deadlock Decidability in Partial Parallel P Systems 241
P systems with memory 241
P systems with Gemmation of Mobile Membranes 240
Parallel Rewriting P Systems with Deadlock 240
Characterising the complexity of tissue P systems with fission rules 240
Preface 239
P Systems with String Objects 239
Solving a special case of the P conjecture using dependency graphs with dissolution 237
A toolbox for simpler active membrane algorithms 237
Research frontiers of membrane computing: Open problems and research topics 236
Reversible P systems to simulate Fredkin circuits 235
Membrane systems in systems biology 235
Quantum Energy-based P Systems 233
P systems with deadlock 232
Universality and Normal Forms on Membrane Systems 232
Sublinear Space P Systems with Active Membranes 231
Non-confluence in divisionless P systems with active membranes 230
A family of P systems which solve 3-SAT 230
On the power and size of extended gemmating P systems 228
Complexity classes for membrane systems: A survey 228
Simulating EXPSPACE Turing machines using P systems with active membranes 227
(Tissue) P systems with unit rules and energy assigned to membranes 226
On the computational efficiency of polarizationless recognizer P systems with strong division and dissolution 226
On a Powerful Class of Non-universal P Systems with Active Membranes 226
Collapsing Hierarchies of Parallel Rewriting P Systems without target conflicts 224
How redundant is your universal computation device? 223
Computational Complexity Aspects in Membrane Computing 223
Bounding the space in P systems with active membranes 223
Genetic Systems without Inhibition Rules 222
Solving numerical NP-complete problems with spiking neural P systems 220
A clause string DNA algorithm for SAT 219
Membrane division, oracles, and the counting hierarchy 217
(Tissue) P Systems with Cell Polarity 216
Simulating the Fredkin gate with energy-based P systems 214
On a Paun’s conjecture in membrane systems 214
Monodirectional P systems 213
Purely catalytic P systems over integers and their generative power 213
Membrane Computing 18th International Conference, CMC 2017, Bradford, UK, July 25-28, 2017, Revised Selected Papers 210
Membrane Computing 19th International Conference, CMC 2018, Dresden, Germany, September 4–7, 2018, Revised Selected Papers 209
Converting integer numbers from binary to unary notation with P systems 208
Using membrane features in P-systems 207
Flattening in (Tissue) P Systems 207
Quantum Sequential P Systems with Unit Rules and Energy Assigned to Membranes 204
Trading geometric realism for efficiency in tissue P systems 202
Simulating counting oracles with cooperation 202
Universal Families of Reversible P Systems 201
Enzymatic Numerical P Systems Using Elementary Arithmetic Operations 201
Membrane computing: 16th international conference, CMC 2015 Valencia, Spain, August 17–21, 2015 revised selected papers 200
A reduced distributed splicing system for RE languages 198
Improved Universality Results on Parallel Enzymatic Numerical P Systems 198
Exploring the Versatility of Spiking Neural Networks: Applications Across Diverse Scenarios 196
Energy-based Models of P systems 196
Two normal forms for rewriting P-systems 196
Computational expressiveness of Genetic Systems 195
Membrane Computing 17th International Conference, CMC 2016, Milan, Italy, July 25-29, 2016, Revised Selected Papers 195
Membrane Systems for Computing 193
P systems with active membranes working in sublinear space 192
On the computational power of genetic gates with interleaving semantics: The power of inhibition and degradation 191
Parallel Rewriting P systems without Target Conflicts 191
Totale 25.781
Categoria #
all - tutte 106.347
article - articoli 0
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 0
Totale 106.347


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2020/2021421 0 0 0 0 0 0 0 0 0 0 0 421
2021/20221.794 113 154 225 211 72 127 186 91 95 91 166 263
2022/20232.847 338 759 258 217 282 461 31 134 220 34 67 46
2023/20242.039 67 52 54 69 281 472 545 50 137 18 60 234
2024/20256.278 329 700 301 198 366 225 255 250 372 667 503 2.112
2025/202610.481 1.172 944 751 972 1.029 557 1.343 563 1.002 930 1.019 199
Totale 33.683