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article · Journal of Science Research and Reviews

Experimental Evaluation of Distance-Dependent User Exposure to Extremely Low-Frequency Magnetic Fields from Computer Devices Under Typical Operating Conditions

In plain language

Exposure to extremely low-frequency magnetic fields from ten desktop and laptop computer models was measured under standard operating conditions at the National Open University of Nigeria. Using a calibrated electromagnetic field meter, measurements were recorded at distances between ten and one hundred centimetres from the front and rear of devices operated continuously for ninety to one hundred and twenty minutes. Side emissions were found to be negligible. Front screen radiation reached between 0.05 and 2.43 milliGauss at ten centimetres, declining to between 0.01 and 1.04 milliGauss at one hundred centimetres. Rear measurements similarly dropped from up to 0.90 milliGauss at ten centimetres to under 0.30 milliGauss at one hundred centimetres. Modern laptops, specifically the Apple MacBook Air M4 and Dell XPS 13, produced the lowest overall radiation levels, showing that greater physical separation effectively reduces user exposure.

Key takeaways

  • Magnetic field strength decreases steadily as distance from computer screens and rear surfaces increases up to one hundred centimetres.
  • Front-screen magnetic field exposure drops from up to 2.43 milliGauss at ten centimetres to a maximum of 1.04 milliGauss at one metre.
  • Emissions measured from the left and right sides of the tested desktop and laptop models are negligible.
  • Modern laptop models emit lower overall radiation levels compared to other tested equipment.

Why it matters

Widespread computer use in academic and professional settings makes understanding low-frequency magnetic field exposure essential for establishing health baselines. Demonstrating how radiation drops across measurable distances helps organisations and individuals design safer workstations, showing that straightforward habits like increasing viewing distance and selecting newer device designs markedly reduce cumulative exposure.

Commercialisation angle

The abstract does not indicate a direct commercialisation pathway or product development plan. The applied experimental findings can, however, immediately inform health and safety regulators, facility managers, and institutional procurement teams seeking empirical evidence to standardise ergonomic workstation spacing and evaluate low-emission IT hardware for office and educational environments.

AI-generated from the published abstract. Always read the original work before citing.

Abstract

Extremely low-frequency (ELF) magnetic fields emitted by information technology equipment have raised public health concerns regarding continued occupational and academic exposure. As computers become essential tools in higher education, enumerating user contact levels is crucial for establishing safety baselines and promoting optimized best practices. This study therefore, evaluated user exposure to extremely low-frequency (ELF) magnetic fields at varying distances from computer devices at the National Open University of Nigeria, Abuja. Ten commonly used desktop and laptop computer models operated continuously for 90–120 minutes prior to measurement. A calibrated GM3120 electromagnetic field meter was used to measure ELF magnetic field strength at distances of 10cm, 20cm, 30cm, 50cm, and 100cm from the front and rear surfaces of the devices. Preliminary measurements indicated the ELF magnetic field measurements from the left and right sides of the devices were insignificant. The experimental results demonstrated that magnetic field strength decreased consistently as the distance from the computer screens increased. For the front screen, radiation values ranged from 0.05 to 2.43 milliGauss (mG) at the closest measurement distance (10 cm), dropping significantly to between 0.01 and 1.04 mG at a 100 cm. Similarly, rear-surface measurements ranged from 0.03 to 0.90 mG at 10cm and decreased to between 0.01 and 0.30 mG at 100cm. Notably, modern laptop models like the Apple MacBook Air M4 and Dell XPS 13 emitted the lowest overall radiation levels. The study concludes that increasing the distance between users and computer devices from both desktop and laptop computer screens significantly minimizes personal exposure to ELF magnetic field exposure

Research topics

  • Electromagnetic Fields and Biological Effects
  • Electromagnetic Compatibility and Measurements
  • Electromagnetic wave absorption materials

Read the original research

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DOI: 10.70882/josrar.2026.v3i4.257

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