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INEL

In room 104, at INEL lab section, nano enzyme research leverages the capabilities of nanozymes to elevate and enrich our scientific pursuits. These nanoscale-engineered enzymes demonstrate exceptional catalytic activity and durability, enabling a broad spectrum of chemical processes. This groundbreaking technology paves the way for rapid and effective procedures in industries ranging from industrial manufacturing to environmental monitoring and biomedicine.

Corning LSE Mini Microcentrifuge

The Corning LSE Mini Microcentrifuge is a benchtop centrifuge ideal for routine laboratory tasks requiring small volume centrifugation. It offers reliable performance in a compact design, making it suitable for academic, research, and clinical laboratories.

  • Compact Design: Space-saving footprint ideal for crowded laboratory benches or limited workspace.
  • Capacity: Typically accommodates up to 8 standard microcentrifuge tubes (1.5/2.0 mL) per run.
  • Speed: Variable speed settings, commonly ranging from 1000 to 6000 rpm (revolutions per minute), providing flexibility for different applications.
  • Rotor Options: Includes various rotor options compatible with microcentrifuge tubes, allowing for different tube sizes and applications.
  • Quick Spin-downs: Efficiently separates liquid contents from solids or pellets within minutes.
  • Quiet Operation: Low noise level during operation, suitable for quiet laboratory environments.
  • Safety Features: Lid interlock mechanism ensures safe operation by preventing the centrifuge from running with an open lid.
  • User-Friendly Controls: Simple interface with easy-to-use controls for setting speed and runtime.
  • Portable: Lightweight design allows for easy transport between workstations or laboratories.
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  • Routine Laboratory Tasks: Used for a variety of routine applications including DNA/RNA extraction, protein precipitation, cell pelleting, and microfiltration.
  • Sample Preparation: Facilitates quick separation of biological samples, tissues, and cell cultures in molecular biology and biochemical research.
  • Clinical Diagnostics: Supports sample preparation in clinical laboratories for diagnostic testing and research.
  • Teaching and Training: Suitable for educational purposes in teaching laboratories to demonstrate centrifugation principles and techniques.
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AQUASEARCHER AB41PH

The AQUASEARCHER AB41PH is a water quality monitoring device designed for precise and reliable measurement of pH levels in various water samples. It is commonly used in environmental monitoring, water treatment facilities, research laboratories, and industrial applications where accurate pH analysis is crucial.

  • pH Measurement: Provides accurate measurement of pH levels in water samples, helping to assess acidity or alkalinity.
  • Digital Display: Typically equipped with a digital display to show real-time pH readings.
  • Electrode: Includes a pH electrode sensor for immersion into the water sample, designed to withstand continuous use and provide consistent measurements.
  • Calibration: Allows for calibration to ensure accuracy over time, usually with standard pH calibration solutions.
  • Data Logging: Some models may offer data logging capabilities to record pH measurements over time for monitoring and analysis purposes.
  • Portable and Benchtop Models: Available in portable handheld versions for field use or benchtop models for laboratory settings.
  • User-Friendly Interface: Often features intuitive controls and menus for easy operation and adjustment of settings.
  • Waterproof Design: Designed to withstand immersion in water and harsh environmental conditions, ensuring durability and reliability.
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  • Environmental Monitoring: Used in lakes, rivers, and groundwater monitoring to assess water quality and pollution levels based on pH measurements.
  • Water Treatment: Employed in water treatment plants to monitor pH levels and ensure proper treatment processes.
  • Industrial Applications: Used in various industries such as manufacturing, food and beverage, and pharmaceuticals for process control and quality assurance.
  • Research and Education: Utilized in research laboratories and educational institutions for experiments, studies, and teaching purposes related to water chemistry and environmental science.
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Khaliduzzaman

His groundbreaking work focuses on the transformation of the egg industry through the integration of advanced technologies. By utilizing non-destructive optical sensing, IoT, AI, big data, and cloud computing, he aims to develop smart systems for egg production, quality inspection, and grading. His research highlights the potential of these innovations to enhance automation, biosecurity, and animal welfare. A significant part of his work involves applying various CNN and transfer learning models for nondestructive chicken egg fertility detection, demonstrating their high accuracy and potential for industry-wide implementation

1.  Ahmed, M. W., Hossainy, S. J., Khaliduzzaman, A., Emmert, J. L., & Kamruzzaman, M. (2023). Non-destructive optical sensing technologies for advancing the egg industry toward industry 4.0: A review. Comprehensive Reviews in Food Science and Food Safety, 22, 4378–4403. Link to DOI