2011•Unpublished venueRequires access

Theoretical and experimental study of cooking regions for shell eggs in a domestic Microwave oven

Ranjan Kumar, M. Y. Sanavullah

Open publisher page 4 citations

Abstract

Microwave heating has been considered for in-shell egg cooking without explosions. Locations inside Microwave oven cavity suitable for cooking eggs without explosions in a domestic microwave oven working at 2450 MHz were identified. By operating the oven at different powers and time interval the level of cooking was monitored. The spots where the albumen got cooked fast and started to splatter was noted as high energy points. The spots where the albumin got less cooked were marked as points of low energy. Next a full egg with shell was placed at the low energy point and the oven is operated at 40% power for 2 minutes. The egg was found well cooked and there was no explosion.

About this research paper

What this paper is about

Microwave heating has been considered for in-shell egg cooking without explosions. Locations inside Microwave oven cavity suitable for cooking eggs without explosions in a domestic microwave oven working at 2450 MHz were identified. By operating the oven at different powers and time interval the level of cooking was monitored. The spots where the albumen got cooked fast and started to splatter was noted as high energy points. The spots where the albumin got less cooked were marked as points of low energy. Next a full egg with shell was placed at the low energy point and the oven is operated at 40% power for 2 minutes. The egg was found well cooked and there was no explosion.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Microwave heating has been considered for in-shell egg cooking without explosions. Locations inside Microwave oven cavity suitable for cooking eggs without explosions in a domestic microwave oven working at 2450 MHz were identified. By operating the oven at different powers and time interval the level of cooking was monitored. The spots where the albumen got cooked fast and started to splatter was noted as high energy points. The spots where the albumin got less cooked were marked as points of low energy. Next a full egg with shell was placed at the low energy point and the oven is operated at 40% power for 2 minutes. The egg was found well cooked and there was no explosion.

Key concepts: Microwave oven, Microwave, Shell (structure), Microwave heating, Materials science, Microwave power, Chemistry, Composite material

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