Support for coupled pendulum apparatus
Product Code : SCL-PL-11442
The Coupled Pendulum Mounting Station is a ruggedized School
Instrument designed for the high-fidelity study of mechanical resonance and
oscillatory coupling. Engineered for University and Advanced Secondary physics
laboratories, this apparatus facilitates the quantitative analysis of energy
transfer between dynamic systems. It complies with ISO-standardized laboratory
requirements for vibration-resistant experimental setups and advanced
kinematics research.
Technical Specifications
|
Tender Specification |
OEM Technical Detail |
|
Material Grade |
Heavy-Duty Structural Steel and Hardened Polymers |
|
Primary Utility |
Structural interface for oscillatory coupling modules |
|
Structural Integrity |
Vibration-damped base calibrated for resonant stability |
|
Compatibility |
Standardized mounting for dual-pendulum oscillators |
Key Pedagogical:
- High-Rigidity
Support Frame: Allows students to analyze phase relationships
and energy exchange with minimal external damping interference, supporting
Wave Mechanics Module 302.
- Precision
Alignment Rails: Enables students to calculate the beat
frequency and coupling coefficients by varying pendulum separation,
validating the mathematics of coupled differential equations.
- Low-Friction
Pivot Mounts: Students can evaluate the conservation of energy
in periodic systems, facilitating the synthesis of complex oscillatory
motion theories in University-level physics.
International Logistics & Compliance
This School Instrument is secured in export-grade seaworthy crating (ISPM-15 compliant) to ensure the structural geometry remains perfectly aligned during global distribution. Procurement documentation includes the Manufacturer’s Authorization Form (MAF), optional IQ/OQ/PQ Certification for institutional tenders, and comprehensive technical manuals in English. The hardware features a tropicalized design, laboratory-tested for operational durability in environments up to 45°C and 90% humidity, preventing the corrosive oxidation that compromises measurement accuracy in non-OEM grade supports.
