بدائل البحث:
modular implementation » model implementation (توسيع البحث), world implementation (توسيع البحث)
trial implementing » xlink implementing (توسيع البحث), model implementing (توسيع البحث), from implementing (توسيع البحث)
python trial » python tool (توسيع البحث)
modular implementation » model implementation (توسيع البحث), world implementation (توسيع البحث)
trial implementing » xlink implementing (توسيع البحث), model implementing (توسيع البحث), from implementing (توسيع البحث)
python trial » python tool (توسيع البحث)
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EthoPy: Reproducible Behavioral Neuroscience Made Simple
منشور في 2025"…To overcome these challenges, we developed EthoPy, an open-source, Python-based behavioral control framework that integrates stimulus presentation, hardware management, and data logging. …"
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System Hardware ID Generator Script: A Cross-Platform Hardware Identification Tool
منشور في 2024"…</li><li><b>Cross-Platform Compatibility</b>: Designed with cross-platform functionality in mind, the script works seamlessly on Windows, macOS, Linux, Unix, and other operating systems where Python 3.6 or higher is installed.</li><li><b>Modular Design</b>: The script can be used as a standalone tool or imported as a module into other Python projects, enabling developers to easily integrate hardware identification into their applications.…"
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Workflow of a typical Epydemix run.
منشور في 2025"…<div><p>We present Epydemix, an open-source Python package for the development and calibration of stochastic compartmental epidemic models. …"
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Efficient, Hierarchical, and Object-Oriented Electronic Structure Interfaces for Direct Nonadiabatic Dynamics Simulations
منشور في 2025"…We present a novel, flexible framework for electronic structure interfaces designed for nonadiabatic dynamics simulations, implemented in Python 3 using concepts of object-oriented programming. …"
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Soulware-Lite
منشور في 2025"…</p><p><br></p><p dir="ltr">The system is fully modular, built on Python + FastAPI, and integrated with Streamlit UI for visualizing alignment confidence and drift flags. …"
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MSc Personalised Medicine at Ulster University
منشور في 2025"…It introduces the R coding language and explores how it can be used to implement analysis.</p><p dir="ltr">· <b>MPM705: Clinical Trials Design and Patient Recruitment (15 credits).…"
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Leue Modulation Coefficients (LMC): A Smooth Continuum Embedding of Bounded Arithmetic Data
منشور في 2025"…This Zenodo package includes: the full research paper (PDF), a complete Python implementation generating the LMC field and conductivity model, a numerical plot comparing discrete LMC values with the smoothed continuum field, a cover letter and supporting documentation. …"
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Reinforcement Learning based traffic steering inOpen Radio Access Network (ORAN)- oran-ts GitHub Repository
منشور في 2025"…<p dir="ltr">This repository contains the simulation codebase for research on <b>Reinforcement Learning (RL) based Traffic Steering and Resource Allocation in Open Radio Access Networks (O-RAN)</b>. It features a modular Python framework implementing various RL agents (Q-Learning, SARSA, N-Step SARSA, DQN) and a traditional baseline evaluated in a realistic cellular network environment. …"
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Supervised Classification of Burned Areas Using Spectral Reflectance and Machine Learning
منشور في 2025"…Six Python scripts are provided, each implementing a distinct machine learning algorithm—Random Forest, k-Nearest Neighbors (k-NN), Multi-Layer Perceptron (MLP), Decision Tree, Naïve Bayes, and Logistic Regression. …"
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Monte Carlo Simulation Code for Evaluating Cognitive Biases in Penalty Shootouts Using ABAB and ABBA Formats
منشور في 2024"…<p dir="ltr">This Python code implements a Monte Carlo simulation to evaluate the impact of cognitive biases on penalty shootouts under two formats: ABAB (alternating shots) and ABBA (similar to tennis tiebreak format). …"
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<b>Altered cognitive processes shape tactile perception in autism.</b> (data)
منشور في 2025"…Similarly, for high-salience trials the prior choice impact was calculated as the rate of correct high and incorrect-high trials, divided by the rate of all correct and all incorrect trials.…"