Qing Liu, Zanhui Liu, Vivian Yue
No abstract is available for this record.
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94,852 results Β· page 245 of 3,953
Qing Liu, Zanhui Liu, Vivian Yue
No abstract is available for this record.
Jorge D' Peralta
No abstract is available for this record.
Dongshu Cheng, Chang Wang, Qi Chang
No abstract is available for this record.
Amit Kumar Jaiswal
No abstract is available for this record.
Acharya Sennimalai Kalimuthu
No abstract is available for this record.
Daria Zaitseva
The 2026 cryptocurrency market cycle has witnessed the emergence of a novel asset class that defies traditional financial categorization: the AI-Integrated Meme Asset (AIMA). This report provides an exhaustive analysis of this phenomenon, utilizing the trajectory of Act I: The AI Prophecy ($ACT) as a primary case study. We posit that the convergence of large language models (LLMs) and decentralized community coordination has created a new "meta" for liquidity formation, characterized by the transition from static meme imagery to dynamic, agentic interaction. Central to this analysis are two theoretical frameworks proposed herein: the "Spring Effect," a market mechanics model describing the kinetic release of accumulated volatility following suppression events, and "Cognitive HODLing," a behavioral finance concept drawing on Social Identity Theory and Kahnemanβs Prospect Theory to explain the rigidity of social consensus in the face of founder betrayal. Through a synthesis of on-chain data, behavioral analysis, and the philosophical frameworks of Vitalik Buterin and Satoshi Nakamoto, this report argues that $ACT represents the pioneer of a "Decentralized Agentic Economy," where value is derived not from revenue, but from the resilience of the human-AI social fabric.
Siyu Jiang, Teng Ouyang, Yue Wang, Yifan Luo Β· 6 authors
No abstract is available for this record.
Abdessamad Lachir, Fouad Yakoubi, Samira Douzi, Bouabid El Ouahidi
No abstract is available for this record.
Π. Π. ΠΡΠ°ΠΉΠΊΠΈΠ½Π°, Π. Π. ΠΠ°ΡΡΠ΅Π»ΡΠ½
Π ΡΠ°Π±ΠΎΡΠ΅ ΠΈΡΡΠ»Π΅Π΄ΡΠ΅ΡΡΡ ΡΡΠ°Π½ΡΡΠΎΡΠΌΠ°ΡΠΈΡ ΡΡΠ½ΠΊΠ° ΡΠ°ΠΊΡΠΎΡΠΈΠ½Π³Π° ΠΏΠΎΠ΄ Π²Π»ΠΈΡΠ½ΠΈΠ΅ΠΌ Π²Π½Π΅Π΄ΡΠ΅Π½ΠΈΡ ΡΠ΅Ρ Π½ΠΎΠ»ΠΎΠ³ΠΈΠΈ ΡΠΌΠ°ΡΡ-ΠΊΠΎΠ½ΡΡΠ°ΠΊΡΠΎΠ² Π½Π° ΠΎΡΠ½ΠΎΠ²Π΅ ΡΠ΅Ρ Π½ΠΎΠ»ΠΎΠ³ΠΈΠΈ Π±Π»ΠΎΠΊΡΠ΅ΠΉΠ½Π°. Π Π°ΡΡΠΌΠ°ΡΡΠΈΠ²Π°ΡΡΡΡ ΡΠΈΠ½Π°Π½ΡΠΎΠ²ΡΠ΅ Π°ΡΠΏΠ΅ΠΊΡΡ: ΠΈΠ·ΠΌΠ΅Π½Π΅Π½ΠΈΠ΅ ΡΡΡΡΠΊΡΡΡΡ ΡΡΠ°Π½Π·Π°ΠΊΡΠΈΠΎΠ½Π½ΡΡ ΠΈΠ·Π΄Π΅ΡΠΆΠ΅ΠΊ, ΠΌΠΈΠ½ΠΈΠΌΠΈΠ·Π°ΡΠΈΡ ΡΠΈΡΠΊΠΎΠ², ΠΏΠΎΠ²ΡΡΠ΅Π½ΠΈΠ΅ Π»ΠΈΠΊΠ²ΠΈΠ΄Π½ΠΎΡΡΠΈ Π·Π° ΡΡΠ΅Ρ Π²ΡΡ ΠΎΠ΄Π° Π½Π° Π³Π»ΠΎΠ±Π°Π»ΡΠ½ΡΠ΅ ΡΡΠ½ΠΊΠΈ ΠΊΠ°ΠΏΠΈΡΠ°Π»Π° ΡΠ΅ΡΠ΅Π· DeFi-ΠΏΡΠΎΡΠΎΠΊΠΎΠ»Ρ. ΠΠ° ΠΎΡΠ½ΠΎΠ²Π΅ Π°Π½Π°Π»ΠΈΠ·Π° Π΄Π°Π½Π½ΡΡ ΠΠ°ΡΠΈΠΎΠ½Π°Π»ΡΠ½ΠΎΠ³ΠΎ ΡΡΠ°ΡΠΈΡΡΠΈΡΠ΅ΡΠΊΠΎΠ³ΠΎ ΠΊΠΎΠΌΠΈΡΠ΅ΡΠ° Π Π΅ΡΠΏΡΠ±Π»ΠΈΠΊΠΈ ΠΠ΅Π»Π°ΡΡΡΡ (ΠΠ΅Π»ΡΡΠ°Ρ) Π·Π° 2025 Π³. ΠΈ ΠΏΡΠΎΠ³Π½ΠΎΠ·ΠΎΠ² Π½Π° 2026 Π³. Π΄Π΅ΠΌΠΎΠ½ΡΡΡΠΈΡΡΠ΅ΡΡΡ Π²Π·Π°ΠΈΠΌΠΎΡΠ²ΡΠ·Ρ ΠΌΠ΅ΠΆΠ΄Ρ ΡΠΈΡΡΠΎΠ²ΠΈΠ·Π°ΡΠΈΠ΅ΠΉ ΠΈ ΡΠΎΡΡΠΎΠΌ ΡΡΡΠ΅ΠΊΡΠΈΠ²Π½ΠΎΡΡΠΈ ΡΠ°ΠΊΡΠΎΡΠΈΠ½Π³ΠΎΠ²ΡΡ ΠΎΠΏΠ΅ΡΠ°ΡΠΈΠΉ. ΠΡΠΎΠ±ΠΎΠ΅ Π²Π½ΠΈΠΌΠ°Π½ΠΈΠ΅ ΡΠ΄Π΅Π»ΡΠ΅ΡΡΡ ΡΡΠ°Π²Π½Π΅Π½ΠΈΡ ΡΡΠ°Π΄ΠΈΡΠΈΠΎΠ½Π½ΠΎΠΉ ΠΌΠΎΠ΄Π΅Π»ΠΈ Ρ ΠΈΠ½Π½ΠΎΠ²Π°ΡΠΈΠΎΠ½Π½ΠΎΠΉ ΠΌΠΎΠ΄Π΅Π»ΡΡ ΡΠΌΠ°ΡΡ-ΠΊΠΎΠ½ΡΡΠ°ΠΊΡΠΈΠ½Π³Π°. ΠΡΠΎΠ²Π΅Π΄Π΅Π½Π½ΡΠΉ Π°Π½Π°Π»ΠΈΠ· ΠΏΠΎΠΊΠ°Π·ΡΠ²Π°Π΅Ρ, ΡΡΠΎ ΠΏΡΠΈΠΌΠ΅Π½Π΅Π½ΠΈΠ΅ ΡΠΌΠ°ΡΡ-ΠΊΠΎΠ½ΡΡΠ°ΠΊΡΠΎΠ² ΠΏΠΎΠ·Π²ΠΎΠ»ΡΠ΅Ρ Π½Π΅ ΡΠΎΠ»ΡΠΊΠΎ ΡΡΠΊΠΎΡΠΈΡΡ ΠΎΠ±ΠΎΡΠΎΡ Π΄Π΅Π½Π΅ΠΆΠ½ΡΡ ΡΡΠ΅Π΄ΡΡΠ², Π½ΠΎ ΠΈ ΡΠ΅ΡΠΈΡΡ ΠΏΡΠΎΠ±Π»Π΅ΠΌΡ Π°ΡΠΈΠΌΠΌΠ΅ΡΡΠΈΠΈ ΠΈΠ½ΡΠΎΡΠΌΠ°ΡΠΈΠΈ, ΡΡΠΎ ΠΎΡΠΎΠ±Π΅Π½Π½ΠΎ ΠΊΡΠΈΡΠΈΡΠ½ΠΎ Π΄Π»Ρ ΡΠΈΠ½Π°Π½ΡΠΈΡΠΎΠ²Π°Π½ΠΈΡ ΠΌΠ°Π»ΠΎΠ³ΠΎ ΠΈ ΡΡΠ΅Π΄Π½Π΅Π³ΠΎ Π±ΠΈΠ·Π½Π΅ΡΠ°.
Daria Mamotenko, Svitlana Hres-Yevreinova, Π. Π. ΠΠΎΡΠ½ΡΡΠ½ΠΊΠΎ, Sergiy Tsviliy Β· 5 authors
No abstract is available for this record.
SΓΌmeyye Bayrakdar
No abstract is available for this record.
Ting Ting Mimi Jiang
No abstract is available for this record.
Suseta Datta, Rajdeep Roy, Sourav Banerjee, Utpal Biswas
No abstract is available for this record.
Tingyi Lin, Weiyu Qi, Karl Yu, Huanxi Zhang
No abstract is available for this record.
Kavindra Kumar, Sourabh Kumar Jain
No abstract is available for this record.
Muhammad Sannan Khaliq, Love Allen Chijioke Ahakonye, JaeβMin Lee, DongβSeong Kim
No abstract is available for this record.
Masoud Barati, Chen Zhou, Nafiseh Kahani, Diana Rogachova Β· 6 authors
No abstract is available for this record.
Melker Forsell, Jesper Wrobel
Digital twins are digital representations that enable real-time monitoring, analysis, andprediction of outcomes of physical systems. They depend on continuous communicationto work, which increases the attack surface of the system and introduces security risks,especially regarding unauthorized access to digital twin data and operations. This thesisinvestigates how blockchain-based smart contracts can be used as an authorization mech-anism for a digital twin, by implementing a digital twin for a Crazyflie 2.1 and controllingaccess to it through a smart contract-based authorization layer.A prototype of this system was developed using Python and connected to the physicalUAV using the Crazyradio interface. Flight data was collected and used to identify a sim-plified digital twin representing the vertical subsystem. A blockchain-based authorizationlayer with role-based permissions was then implemented using Solidity smart contracts ina local Hardhat environment.The findings from this thesis show that such a system is feasible to implement. Flighttest runs show that the twin remained numerically stable at all times and estimated thephysical UAVβs state with bounded error. The authorization mechanism enforced the de-fined role-based access-control rules in the tested scenarios, with measured authorizationlatency in the local environment around 14β15 ms. Gas measurements were also used toestimate the relative computational cost of the smart contract operations.
Mohamed El Amine Kheraifia, Abdelatif Sahraoui, Makhlouf Derdour, Abdellah Kouzou Β· 6 authors
No abstract is available for this record.
G. Shankar, Malaiyappan Nandhini
No abstract is available for this record.
Elvira Immaculate Khwatenge, Mussa Ally, Geminpeter Lyakurwa, Hope Mbelwa
No abstract is available for this record.
Mujahid Ullah Khan Afridi
No abstract is available for this record.
Shaista Hasan, M. Safir, Sameer Ahmad
No abstract is available for this record.
Adam KrΓΕΎ
This thesis deals with the implementation of a system for acquiring and processing transactions from various cryptocurrency blockchains. The aim of the thesis is to design and implement a system as a library that provides a unified interface for working with multiple blockchain networks. A key feature of the proposed system is its modularity, which enables future expansion to support additional cryptocurrencies. The thesis describes the architecture of selected blockchains and analyzes existing methods of obtaining data from these networks. Based on an analysis of available tools, Tatum.io was chosen as a suitable platform, as it offers interfaces for communication with a large number of blockchains. Subsequently, a general library model with an adapter-type architecture was designed, where each adapter ensures communication with a specific blockchain. The implementation was carried out in the Typescript language. The resulting library allows the user to track transactions based on specified parameters, which are: tracked address, time range (or block range), and blockchain type. The contribution of this work is the creation of a universal interface between the user and various blockchains without the need for detailed knowledge of them.