Scientico IndiaManufacturer & Exporter · Ambala · Since 1993
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Work Done by Variable Force Apparatus | FrixoDynamics FX-517

Category: Forces and Friction  ·  Order Code: FX-517  ·  Country of Origin: India

Product Overview

A CE-certified precision laboratory apparatus for engineering experimentation and technical education, manufactured by Scientico India to ISO 9001:2015 standards. Supplied with calibration certificate, operation manual, and complete export documentation. Designed for Forces and Friction laboratories in engineering colleges and technical institutions.

Work Done by Variable Force Apparatus | FrixoDynamics FX-517
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Technical Specifications

Parameter Specification
Model FrixoDynamics FX-517
Experiment Modes Vertical force (trolley and pulley), Tangential force (pivoted arm)
Spring Balance Range 0 – 100 N
Spring Balance Graduation 0.5 N
Angle Measurement Integrated protractor scale on backboard
Pulleys 3 pulleys, ball bearing-mounted
Weight Set 2 x 0.5 N hangers, 4 x 1 N, 4 x 2 N, 4 x 5 N
Hangers 2
Mounting Bench-top, support board with backboard
Scope of Delivery 1 experimental unit, 1 spring balance, 2 sets of weights, 2 hangers, 3 pulleys, 1 thread

Key Features

Key Features

Applications

Construction and System Design

The FX-517 is mounted on a rigid support board with a vertical backboard that carries the protractor scale for the tangential force experiment. The backboard also provides the fixed mounting point for the pivoted arm. The arm rotates freely about its pivot and carries a load hanger at its free end. The spring balance is attached at right angles to the arm at a defined point, providing a perpendicular restraining force that is read directly from the scale. The angular position of the arm is read from the protractor at the pivot.

For the vertical force experiment, the cord is threaded through the three ball bearing-mounted pulleys. One pulley is fixed at the upper end of the board, redirecting the cord from the horizontal midspan to the vertical effort hanger. The trolley sits on the cord at midspan and is lifted as the cord geometry changes with increasing effort load. Heights of both the trolley and the effort hanger are measured from the base at each load increment, providing the displacement data needed for the force-distance graph.

The spring balance, with its 0.5 N graduation over a 0–100 N range, provides sufficient resolution and capacity for both experiment modes. The weight set, covering 0.5 N to 5 N denominations, allows the applied load to be built up incrementally in either mode, generating enough data points for a well-defined force-distance curve. Thread is included for cord setup in the vertical force experiment.

Export and Supply Capability

The SCIENTICO FrixoDynamics FX-517 is available for supply to engineering colleges, technical universities, mechanical engineering and physics departments, research institutions, and industrial training centres. SCIENTICO manufactures and exports laboratory equipment to institutions and distributors across multiple regions. Standard packaging is suitable for international shipment. Bulk orders, customised configurations, and institutional procurement enquiries are welcomed. Please contact SCIENTICO directly for pricing, lead times, and shipping terms.

Standards & Compliance

Ordering & Delivery

Frequently Asked Questions

Q1: What does the work done by variable force apparatus demonstrate?

The FX-517 demonstrates that when a force varies with displacement, the work done cannot be calculated simply as force multiplied by distance. Instead, it must be determined by finding the area under the force-distance graph, the graphical equivalent of integrating the variable force over the displacement. Both experiment modes on the FX-517 produce clearly nonlinear force-distance relationships, making this distinction physically evident and measurable.

Q2: What are the two experiment modes available on the FX-517?

The first mode is the vertical force experiment, in which a loaded trolley is lifted by a cord routed over ball bearing pulleys. As the effort load is increased incrementally, the cord moves to a new equilibrium position, and the heights of both the trolley and the effort hanger are recorded. The second mode is the tangential force experiment, in which a pivoted arm carrying a load hanger is restrained by a spring balance perpendicular to the arm. The spring balance force and the arm's angular position are recorded at successive angles for different applied loads.

Q3: How is the work done calculated from the experimental data?

In both modes, students record the restraining force at a series of displacement or angular positions, constructing a force-versus-displacement curve. The area under this curve, determined graphically by counting grid squares or by numerical integration, gives the total work done over the measured range. In the vertical force experiment, this result is compared against the calculated change in potential energy of the trolley, providing an energy balance check.

Q4: Why are ball bearing-mounted pulleys used in the FX-517?

Ball bearing pulleys minimise friction at the cord deflection points in the vertical force experiment. Friction in the pulleys would add an uncontrolled resistance to the cord system, causing the measured effort to exceed the true force required to lift the trolley. By using ball bearing-mounted pulleys, the friction contribution is kept negligibly small, ensuring that the recorded effort-displacement data accurately reflects the force-distance relationship of the trolley lifting mechanism.

Q5: What is included in the scope of delivery for the FX-517?

The FX-517 is supplied as a complete experimental kit including: one work done experimental unit with support board, pivoted arm, protractor backboard, and cord system; one spring balance (0–100 N, 0.5 N graduation); two sets of weights (2 x 0.5 N hangers, 4 x 1 N, 4 x 2 N, 4 x 5 N); two weight hangers; three ball bearing-mounted pulleys; and one thread for cord setup.

Scientico India · Industrial Area, Ambala Cantt, Haryana 133001, IN
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