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E/m By Short Solenoid Method (Magnatron Method)
E/m By Short Solenoid Method (Magnatron Method)

E/m By Short Solenoid Method (Magnatron Method)

Price 10 INR/ Piece

MOQ : 1 Piece

E/m By Short Solenoid Method (Magnatron Method) Specification

  • Capacity
  • Standard Lab Size
  • Temperature Range
  • Ambient
  • Automation Grade
  • Manual
  • Accuracy
  • ±1% of Reading
  • Power Source
  • AC Mains (220-240V)
  • Measurement Range
  • e/m ratio: 1.7 × 10¹¹ C/kg
  • Frequency
  • 50 Hz
  • Voltage
  • 220-240 V
  • Application
  • Engineering Electronic Instruments
  • Usage
  • Engineering Electronic Instruments
  • Product Type
  • E/m By Short Solenoid Method (Magnatron Method)
  • Feature
  • Precise e/m Measurement, Fine Current Adjustment, In-built Regulated Power Supply
  • Model No
  • Short Solenoid Method (Magnatron)
  • Core Components
  • Short Solenoid, Electron Tube, Power Supply, Magnetron Assembly
  • Equipment Materials
  • Powder Coated Metal, Glass Tube, Brass Fittings, Copper Solenoid
  • Type
  • Physics Laboratory Apparatus
  • Display Type
  • Analog or Digital (depends on model supplied)
  • Dimension (L*W*H)
  • Approx. 520 x 170 x 320 mm
  • Weight
  • Approx. 7 kg
 

E/m By Short Solenoid Method (Magnatron Method) Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • carton box, export quality also available
  • Main Export Market(s)
  • Asia, Middle East, Africa
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About E/m By Short Solenoid Method (Magnatron Method)

E/m By Short Solenoid Method (Magnatron Method):

Micro Teknik is manufacture, exporters & suppliers

Features:-  Kit Comprises of Low Voltage DC Power Supply unit with Filament Voltage & Solenoid Current controls. Two meters are provided for Anode Voltage controls. One Solenoid Unit Comprises of one Solenoid mounted on wooden stand & Valve 41 is Kept in the Solenoid pipe.



Comprehensive Measurement for Electron e/m Ratio

This apparatus allows precise determination of the electrons charge-to-mass ratio (e/m) using the short solenoid (Magnatron) method. With a variable magnetic field, fine and coarse current controls, and a reliable electron source, it delivers consistent results for physics and engineering experiments.


Robust Design and Advanced Safety

Constructed from powder coated metal, glass, brass, and copper components, the device offers strong build quality. Protective features include overcurrent protection and leakage safe design, enhancing safety for both students and professionals during laboratory use.


Ease of Use and Maintenance

Featuring insulated banana socket connections and ergonomic adjustment knobs, the apparatus is user-friendly for quick setup and straightforward maintenance. Its table-top design and ambient temperature operation fit smoothly into standard lab environments.

FAQs of E/m By Short Solenoid Method (Magnatron Method):


Q: How does the short solenoid (Magnatron) method measure the e/m ratio of the electron?

A: The short solenoid method involves generating a magnetic field through a variable control solenoid and directing electrons from a specially designed cathode ray tube. By adjusting current and observing electron trajectory, the apparatus allows calculation of the electrons charge-to-mass ratio (e/m) based on measured deflections.

Q: What safety features are integrated into this apparatus?

A: This equipment includes overcurrent protection and a leakage safe design to prevent electrical hazards. All connections utilize high-quality insulated banana sockets, and the units anti-rust, powder-coated finish adds further durability and user safety.

Q: When is this device commonly used in a laboratory setting?

A: Typically, it is utilized during physics and engineering experiments requiring precise e/m measurement of electrons. It serves as fundamental apparatus during undergraduate and postgraduate laboratory sessions and research projects.

Q: Where can this instrument be mounted or installed?

A: The device is designed as a table-top apparatus, making it convenient for placement on standard lab benches without the need for special mounting fixtures.

Q: What is the process of adjusting the magnetic and electric fields during experiments?

A: Fine and coarse current adjustment knobs control the electric current in the solenoid, altering the magnetic fields strength. Magnetic field adjustment is variable, allowing for precise control and accurate results during e/m ratio measurements.

Q: What are the primary benefits of using this apparatus in educational and research labs?

A: Its robust design, reliable safety features, high accuracy (1%) and standardized compliance make it ideal for hands-on learning, demonstrating fundamental principles of electron behavior, and supporting advanced laboratory research.

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