Digital measuring computer complex for physics teacher

SKU: ZD-PA090 Categories: ,

Description

This comprehensive educational solution for physics teachers combines wireless sensor technology, multimedia content, and artificial intelligence into a modern digital measurement system. Designed to support inclusive, inquiry-based learning, the laboratory features a suite of advanced tools and materials.

Integrated AI Agent and Educational Materials
A RAG-based (Retrieval-Augmented Generation) AI agent is built into the system, utilizing a localized knowledge base aligned with the national curriculum. This tool assists students and teachers by: – Recommending experiments and research tasks based on lesson topics
– Providing step-by-step guidance for conducting experiments
– Analyzing student errors and offering constructive feedback
– Adjusting tasks to suit various proficiency levels
– Assisting students in drafting research reports and summariesThe platform also includes a curriculum-aligned LMS with structured inquiry-based modules for STEM, Physics, Biology, and Chemistry. It provides comprehensive lab instructions, experiment scenarios, interactive exercises, and video demonstrations, all designed for seamless hardware compatibility.

Hardware and Sensors
The system utilizes autonomous wireless sensors that operate without the need for additional wiring, data loggers, or analog-to-digital converters. Each sensor includes a 1.8-inch color LCD screen for real-time data visualization. The included components are: – 2 Voltage sensors (-25 V to 25 V; 0.01 V resolution)
– 2 Current sensors (-3 A to +3 A; 0.01 A resolution)
– 2 Temperature sensors (-50°C to +200°C; 0.01°C resolution)
– 1 Thermocouple temperature sensor (-200°C to 1200°C; ±0.5°C resolution)
– 1 Ambient temperature sensor (-30°C to +50°C)
– 1 Pressure sensor (0–700 kPa; 0.1 kPa resolution)
– 1 Microphone sensor (20 Hz–20,000 Hz / 20 dB–120 dB; 0.1 dB resolution)
– 2 Light sensors (0–8,000 lux; 1 lux resolution)
– 1 Magnetic field sensor (-84 mT to +84 mT; 0.01 mT resolution)
– 2 Photoelectric gates (0–10 s; 0.1 ms resolution)
– 2 Force sensors (-50 N to +50 N; 0.01 N resolution)
– 1 Humidity sensor (0%–100%; 0.1% resolution)
– 1 Ultraviolet radiation sensor (0–11 UV Index; 200–370 nm wavelength)

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