TO DETERMINE THE MECHANICAL EQUIVALENT OF HEAT BY CALLENDER & BARNES CONSTANT FLOW METHOD
TO DETERMINE THE MECHANICAL EQUIVALENT OF HEAT BY CALLENDER & BARNES CONSTANT FLOW METHOD

TO DETERMINE THE MECHANICAL EQUIVALENT OF HEAT BY CALLENDER & BARNES CONSTANT FLOW METHOD

TO DETERMINE THE MECHANICAL EQUIVALENT OF HEAT BY CALLENDER & BARNES CONSTANT FLOW METHOD Specification

  • Type
  • Physics Laboratory Equipment - Mechanical Equivalent of Heat Apparatus
  • Material
  • Mild Steel body with Stainless Steel heating coil and copper calorimeter
  • Size
  • Standard laboratory bench type
  • Input Voltage
  • 220-240V AC, 50Hz
  • Color
  • Grey/Blue powder-coated finish
  • Dimension (L*W*H)
  • Approx. 450 mm x 250 mm x 350 mm
  • Capacity
  • Calorimetric power capacity up to 200 W
  • Water Tank Capacity
  • About 2 Litres
  • Noise Level
  • Silent Operation
  • Accessories
  • Standard stop-watch, measuring cylinder, connecting tubes
  • Control Panel
  • Integrated, with indicator lamps and control switch
  • Purpose
  • Experimental determination of mechanical equivalent of heat (Joules Constant)
  • Safety Features
  • Thermal fuse and earthing provision
  • Compliance
  • Meets standard educational laboratory safety norms
  • Temperature Measurement
  • High precision thermometer(s) or digital temperature sensor
  • Calorimeter
  • Calibrated copper calorimeter for high accuracy
  • Heating Element
  • Nichrome wire heater with terminals, regulated power supply
  • Packaging
  • Secure foam-lined box for transit protection
  • Weight
  • Approx. 6-8 kg
  • Flow Measurement
  • Graduated flow meter included
  • Application
  • Suitable for undergraduate and postgraduate Physics laboratory use
 
 

About TO DETERMINE THE MECHANICAL EQUIVALENT OF HEAT BY CALLENDER & BARNES CONSTANT FLOW METHOD



Explore the glorious potential of precise measurement with the TO DETERMINE THE MECHANICAL EQUIVALENT OF HEAT BY CALLENDER & BARNE'S CONSTANT FLOW METHOD. Immaculate in its engineering, this classic laboratory apparatus features a calibrated copper calorimeter, regulated Nichrome wire heater, and graduated flow meter for accurate experimentation. The ephemeral beauty of heat conversion unfolds with every use, guided by high-precision sensors and a reliable control panel. Add to Cart for an essential physics tool, safely packed for transit and compliant with educational norms-ideal for both undergraduate and postgraduate research.

Ideal for Physics Laboratories

This apparatus is suitable for both undergraduate and postgraduate physics laboratory settings. Its usage type is experimental, focusing on the determination of Joule's constant. Direction of use involves simple assembly of included accessories, accurate flow and temperature measurements, and operational control via the integrated panel. Its classic design ensures reliable performance for a range of research and educational demonstrations.


Export Details and Sample Availability

Outlay for purchase is streamlined with FOB Port options at major Indian harbors. The apparatus finds exchange in domestic markets and is exported to a host of international destinations. Sample units are available upon request for institutional trials, aiding in informed procurement decisions and facilitating smooth integration into any laboratory's array of equipment.


FAQ's of TO DETERMINE THE MECHANICAL EQUIVALENT OF HEAT BY CALLENDER & BARNEaS CONSTANT FLOW METHOD:


Q: How is the mechanical equivalent of heat determined using this apparatus?

A: The apparatus facilitates experimental determination of the mechanical equivalent of heat by measuring water flow and temperature rise using a calibrated calorimeter and high-precision sensors while the Nichrome wire heater delivers controlled energy input.

Q: What accessories are included with the equipment set?

A: Included accessories comprise a standard stop-watch, measuring cylinder, connecting tubes, graduated flow meter, high precision thermometer or digital sensor, and regulated power supply, ensuring a complete, ready-to-use setup for laboratory experiments.

Q: When is this apparatus typically used in academic environments?

A: It is commonly used during undergraduate and postgraduate laboratory courses or research activities in physics departments, particularly within thermal physics or experiments focusing on energy conversions.

Q: Where can I install this setup within my laboratory?

A: Designed as a standard laboratory bench type, it fits on most lab tables and its compact dimensions make it ideal for both spacious and limited spaces in educational settings.

Q: What are the safety features integrated into the apparatus?

A: For safe usage, the apparatus includes a thermal fuse, earthing provision, indicator lamps, and a control switch, meeting laboratory safety norms and protecting both users and equipment from hazards.

Q: How does the sample exchange process work for international buyers?

A: Institutions interested in sampling can request a demonstration unit; the offer is available for both domestic and international buyers to facilitate an informed exchange before bulk purchase.

Q: What are the benefits of using a copper calorimeter in this method?

A: A calibrated copper calorimeter provides high accuracy due to copper's excellent thermal conductivity, ensuring precise measurement of heat transfer required for reliable experimental results.

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