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E/M By Thompson Method (Bar magnet)
E/M By Thompson Method (Bar magnet)

E/M By Thompson Method (Bar magnet)

Price 23500 INR/ Piece

MOQ : 1 Piece

E/M By Thompson Method (Bar magnet) Specification

  • Automation Grade
  • Manual
  • Feature
  • Complete with Accessories; High Stability; Easy Setup; Non-magnetic Base
  • Model No
  • EM/TH-01
  • Temperature Range
  • Ambient to 50C
  • Voltage
  • 230 V
  • Measurement Range
  • Up to 17 kV accelerating voltage; Magnetic field adjustable
  • Accuracy
  • 1% (typical for demonstration apparatus)
  • Capacity
  • Single apparatus for 1 experiment
  • Power Source
  • 230V AC mains
  • Core Components
  • Bar Magnet, Tube with Electron Gun, Support Stand, Power Supply Unit
  • Frequency
  • 50 Hz
  • Equipment Materials
  • Mild Steel Sheet, Powder Coated; Glass Components; Wooden Supports
  • Type
  • Laboratory Equipment
  • Usage
  • Determination of E/M Ratio by Thomson Method using Bar Magnet
  • Display Type
  • Analog
  • Dimension (L*W*H)
  • 45 cm x 28 cm x 25 cm
  • Weight
  • Approx. 3.5 kg
 

E/M By Thompson Method (Bar magnet) Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Payment Terms
  • Cash in Advance (CID)
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001:2015
 

About E/M By Thompson Method (Bar magnet)



Discover outstanding precision with the E/M By Thompson Method (Bar Magnet), crafted for top-ranking performance in physics labs and educational institutions. Utilise our offer for instant savings on this uncommon apparatus, featuring a uniform bar magnet mounted on a rigid, non-magnetic base with vibration-absorbing pads. The corrosion-resistant finish ensures lasting freshness, while insulated terminals and secure mounting guarantee operator safety. Complete with connecting leads, calibration sheet, and instruction manual, this apparatus allows easy setup for accurate electron e/m ratio experiments. Ideal for scientific demonstration and classroom instruction.

Optimal Usage and Applications

To utilise the E/M By Thompson Method (Bar Magnet), securely connect accessories as per the instruction manual. Specifically designed for demonstrating the electron e/m ratio, it offers outstanding accuracy in classroom and laboratory settings. General uses include physics demonstrations and hands-on experiments in educational institutions, while its robust design ensures precision for specific usage in bar magnet-based e/m determination.


Reliable Supply and Shipping Details

Our sample policy allows clients to request units for evaluation, with shipped goods dispatched efficiently from our primary FOB port in India. We estimate high supply ability for bulk orders, with instant offers available for bulk purchases. Each apparatus is rigorously checked for quality before delivery, ensuring customers receive outstanding laboratory equipment with every shipment.


FAQs of E/M By Thompson Method (Bar magnet):


Q: How do I properly set up the E/M By Thompson Method (Bar Magnet) apparatus?

A: Begin by securing the base on a stable surface and connecting all accessories as outlined in the instruction manual. Ensure all safety measures, such as insulated terminals, are adhered to before starting the experiment.

Q: What applications is this apparatus most commonly used for?

A: This equipment is ideal for physics demonstrations, particularly in educational institutions, and is designed specifically for experiments related to the determination of the electron e/m ratio using the Thomson method.

Q: When should the calibration sheet be utilised during the experiment process?

A: Utilise the calibration sheet before each use to ensure the highest accuracy in your measurements and maintain consistent, reliable results throughout the experiment.

Q: Where is the E/M By Thompson Method apparatus manufactured and shipped from?

A: The apparatus is manufactured in India and shipped directly from our primary FOB port, ensuring efficient delivery and adherence to quality standards.

Q: What are the main benefits of using this top-ranking apparatus in physics demonstrations?

A: Key benefits include high stability, easy setup, corrosion-resistant construction, and outstanding accuracy (1%), making it an ideal choice for both demonstration and hands-on learning.

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