Product Description
Franck Hertz Experiment, Fh-3001
We are involved in manufacturing, exporting and supplying Franck Hertz Experiment Device to our clients in Roorkee, Uttarakhand,
We are offering Franck-Hertz Experiment useful in Physics and Material Science Lab. This experiment verifies that:
It is possible to excite atoms by low energy electron bombardment.
The energy transferred from electrons to the atoms always had discrete values.
The values so obtained for the energy levels were in agreement with spectroscopic results.
Thus the existence of atomic energy levels put forward by Bohr can be proved directly. It is a very important experiment and can be performed in any college or University level laboratory.
The Experiment is consists of the following:
Argon filled tetrode
- Filament Power Supply: 3.6-3.4V continuously variable
- Power Supply for VG1K: 1.3-5V continuously variable
- Power Supply for VG2A: 1.3 - 12V continuously variable
- Power Supply for VG2K: 0 - 95V continuously variable
- Saw tooth waveform for CRO display Scanning Voltage : 0-80V Scanning Frequency : 11520 Hz
- Multirange Digital Ammeter Display : 3 digit, LED
- Range : 10-7, 10-8 & 10-9 A
The instrument can, not only lead to a plot of the amplitude spectrum curve by means of point by point measurement, but also directly display the amplitude spectrum curve on the oscilloscope screen. This instrument can thus be used as a classroom experiment as well as for demonstration to a group of students.
Analysis of Data:
Data obtained for the excitation potential point by point are shown in Fig. 3. The readings are taken for 1V changes on grid 2 (VG2K). A significant decrease in electron (collector) current is noticed every time the potential on grid 2 is increased by approximately 12V, thereby indicating that energy is transferred from the beam in (bundles) "quanta" of 12eV only. Indeed, a prominent line in the spectrum of argon exists at 1048 corresponding to eV=11.83.
Innovative Laboratory Experiment DeviceThe FH-3001 Franck Hertz Experiment apparatus offers remarkable precision and clarity in the study of atomic physics. Designed for laboratory use, its integrated digital display and robust electronics enable educators and researchers to thoroughly explore the principles of quantum mechanics through hands-on experimentation. This instrument helps bridge theoretical concepts with practical laboratory experience.
Advanced Electronic Construction for ReliabilityBuilt with sophisticated electronic materials, the FH-3001 ensures consistent and accurate data collection. Its durable, grey enclosure not only provides protection but also maintains a professional appearance for laboratory environments. The instrument's ergonomic design and clear digital interface make operation straightforward, contributing to efficient laboratory workflow.
FAQ's of Franck Hertz Experiment, Fh-3001:
Q: How is the Franck Hertz Experiment FH-3001 operated in a laboratory setting?
A: To operate the FH-3001, users connect the apparatus to a suitable power source and follow the manufacturer's instructions to initiate the experiment. The digital display guides the user through measurements and data collection, simplifying the process for both beginners and experienced laboratory staff.
Q: What is the primary application of the FH-3001 in scientific research?
A: The FH-3001 is primarily used to perform the historic Franck Hertz experiment, which explores electron collisions with mercury atoms. This helps demonstrate quantum energy levels and supports foundational concepts in atomic physics, making it essential for educational laboratories and advanced research.
Q: When should the FH-3001 Franck Hertz Experiment apparatus be used?
A: Use the FH-3001 during scheduled laboratory sessions focused on atomic structure, quantum mechanics, or introductory physics courses that require hands-on exploration. It can also be employed during science demonstrations or research studies for investigating electron behavior.
Q: Where can the FH-3001 be sourced for laboratory use?
A: The FH-3001 is available directly from manufacturers, suppliers, and exporters in India who specialize in laboratory instruments. For procurement, contact authorized distributors or visit their online platforms to request a quote and details about delivery options.
Q: What is the process for conducting experiments with this device?
A: Begin by setting up the FH-3001 according to provided guidelines, ensuring proper connection and calibration. After initiating the experiment, use the digital display to monitor and record results as electrons interact with mercury vapor, observing discrete energy exchanges and validating quantum theories.
Q: What are the benefits of choosing the FH-3001 for laboratory experiments?
A: The FH-3001 offers users high accuracy in their experiments, a digital display for easy result interpretation, and robust electronic construction for reliability. Its professional design supports repeated laboratory use, enhancing educational outcomes and delivering dependable data for research analysis.