Microwave appliance performance as affected by container geometry and material
<p>Effects of container geometry and material on microwave cooking performance, as measured by evenness of cooking, firmness, and moisture content were compared. Three food items were heated in round, tube, loaf, and square containers made of clear glass, amber glass, thermoset polyester,...
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ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-415412021-05-05T05:40:43Z Microwave appliance performance as affected by container geometry and material Barber, Judith D. Housing, Interior Design, and Resource Management Lovingood, Rebecca P. Woodard, Janice E. Johnson, Janet M. LD5655.V855 1986.B373 Cookware Household appliances Microwave cooking -- Materials Microwave ovens <p>Effects of container geometry and material on microwave cooking performance, as measured by evenness of cooking, firmness, and moisture content were compared. Three food items were heated in round, tube, loaf, and square containers made of clear glass, amber glass, thermoset polyester, and polysulfone. Unflavored gelatin, custard, and cakes were prepared three times in each of the 13 microwave containers. Evenness of cooking was determined by comparing meltdown and temperature in gelatin, temperature and separation/uncooked portions in custard, and index to volume in cakes. Firmness was measured in custard while moisture content was determined in cakes. In analysis of the data, ANOVA and Duncan's multiple range test were performed.</p> <p> Significant differences were found between shapes as food items heated more evenly in tube and round containers than in square containers. Food quality was affected more by shape than by material. Foods prepared in the, plastic materials were more evenly heated than in the glass materials.</p> <p>Statistically, shape and material interacted with each other for three measures of microwave appliance performance temperatures and separation/uncooked portions of custards, and index to volume in cakes. The interaction of shape and material was greater as the heating time increased.</p> Master of Science 2014-03-14T21:31:30Z 2014-03-14T21:31:30Z 1986-06-05 2013-03-12 2013-03-12 2013-03-12 Thesis Text etd-03122013-040023 http://hdl.handle.net/10919/41541 http://scholar.lib.vt.edu/theses/available/etd-03122013-040023/ OCLC# 14281723 LD5655.V855_1986.B373.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ [x], 97 leaves BTD application/pdf application/pdf Virginia Tech |
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LD5655.V855 1986.B373 Cookware Household appliances Microwave cooking -- Materials Microwave ovens |
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LD5655.V855 1986.B373 Cookware Household appliances Microwave cooking -- Materials Microwave ovens Barber, Judith D. Microwave appliance performance as affected by container geometry and material |
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<p>Effects of container geometry and material on microwave
cooking performance, as measured by evenness of cooking,
firmness, and moisture content were compared. Three food
items were heated in round, tube, loaf, and square containers
made of clear glass, amber glass, thermoset polyester, and
polysulfone. Unflavored gelatin, custard, and cakes were
prepared three times in each of the 13 microwave containers.
Evenness of cooking was determined by comparing meltdown and
temperature in gelatin, temperature and separation/uncooked
portions in custard, and index to volume in cakes. Firmness
was measured in custard while moisture content was determined
in cakes. In analysis of the data, ANOVA and Duncan's multiple range test were performed.</p>
<p>
Significant differences were found between shapes as
food items heated more evenly in tube and round containers
than in square containers. Food quality was affected more by
shape than by material. Foods prepared in the, plastic
materials were more evenly heated than in the glass
materials.</p>
<p>Statistically, shape and material interacted with each
other for three measures of microwave appliance performance temperatures and separation/uncooked portions of custards,
and index to volume in cakes. The interaction of shape and
material was greater as the heating time increased.</p> === Master of Science |
author2 |
Housing, Interior Design, and Resource Management |
author_facet |
Housing, Interior Design, and Resource Management Barber, Judith D. |
author |
Barber, Judith D. |
author_sort |
Barber, Judith D. |
title |
Microwave appliance performance as affected by container geometry and material |
title_short |
Microwave appliance performance as affected by container geometry and material |
title_full |
Microwave appliance performance as affected by container geometry and material |
title_fullStr |
Microwave appliance performance as affected by container geometry and material |
title_full_unstemmed |
Microwave appliance performance as affected by container geometry and material |
title_sort |
microwave appliance performance as affected by container geometry and material |
publisher |
Virginia Tech |
publishDate |
2014 |
url |
http://hdl.handle.net/10919/41541 http://scholar.lib.vt.edu/theses/available/etd-03122013-040023/ |
work_keys_str_mv |
AT barberjudithd microwaveapplianceperformanceasaffectedbycontainergeometryandmaterial |
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