Isbn: 9783656608608 - biological effects of radiofrequency: influence of sub lethal microwave radiation on bacterial growth, enzyme activity, and exopolysaccharide production (14 resultados)

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  • Idioma: Inglés

    Editorial: Grin Verlag, 2014

    3656608601 / 9783656608608

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    Editorial: Grin Verlag, 2014

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    Editorial: Grin Verlag, 2014

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    Librería: California Books, Miami, FL, Estados Unidos de AmericaCalifornia Books

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    Editorial: GRIN Verlag, GRIN Verlag Mär 2014, 2014

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    Librería: Wegmann1855, Zwiesel, AlemaniaWegmann1855

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    Taschenbuch. Condición: Neu. Neuware -Scientific Study from the year 2013 in the subject Biology - Micro- and Molecular Biology, grade: A, Nirma University (Institute of Science), language: English, abstract: Increasing applications of MW radiation has led to concerns globally due to the suspected bio effects associated with its exposure. Effect of MW, thermal and/or athermal, is inconclusive, complex, and controversial in literature. Thermal effect causes thermogenic effect while athermal effects are other than heat and such effects reported as somatic effect and/or genetic effect.This study basically deals with the athermal effects and is aimed at investigating the hypothesis that the exposure of microbial cells to MW (low power) may cause athermal effect, which affect on growth of microbes, enzyme activity, and production of exopolysaccharides. Furthermore, we have also checked the effect of different intracellular enzymes on MW treated bacteria. Our study also gives information that MW athermal effects causes changes at genetic level and can be passed on to next generation.There are numerous and increasing applications of MW energy and technology in the industries, in homes, in medical, research institutions etc., and there is greater awareness and concern of the public over the suspected potential health hazards associated with such exposures [ICNIRP Guidelines, 1998]. There is therefore, a need for deeper understanding of the bio-effects of exposure to this radiation. Due to the ease of handing them in laboratory, microorganisms can be conveniently used to study the effect of MW on living systems. Besides, employing mutagenic frequencies of MW radiation for microbial strain improvement can be of considerable industrial significance.Objectives:1. To investigate the effect of low power MW ona. Growthb. Extracellular enzyme (amylase and pectinase) activity in Bacillus subtilis, Streptococcus mutans and Pectobacterium carotovora.c. Exopolysaccharide (EPS) in S. mutans and Xanthomonas campestris.2. To study the effect of low power MW ona. Growthb. Protein synthesisc. Intracellular enzyme (Glucose-6-phosphatase and ¿- galactosidase) activity3. To investigate mutagenic effect of MW on EPS production in X. campestris.

  • Idioma: Inglés

    Editorial: GRIN Verlag, GRIN Verlag Mär 2014, 2014

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    Librería: AHA-BUCH GmbH, Einbeck, AlemaniaAHA-BUCH GmbH

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    Taschenbuch. Condición: Neu. Neuware - Scientific Study from the year 2013 in the subject Biology - Micro- and Molecular Biology, grade: A, Nirma University (Institute of Science), language: English, abstract: Increasing applications of MW radiation has led to concerns globally due to the suspected bio effects associated with its exposure. Effect of MW, thermal and/or athermal, is inconclusive, complex, and controversial in literature. Thermal effect causes thermogenic effect while athermal effects are other than heat and such effects reported as somatic effect and/or genetic effect.This study basically deals with the athermal effects and is aimed at investigating the hypothesis that the exposure of microbial cells to MW (low power) may cause athermal effect, which affect on growth of microbes, enzyme activity, and production of exopolysaccharides. Furthermore, we have also checked the effect of different intracellular enzymes on MW treated bacteria. Our study also gives information that MW athermal effects causes changes at genetic level and can be passed on to next generation.There are numerous and increasing applications of MW energy and technology in the industries, in homes, in medical, research institutions etc., and there is greater awareness and concern of the public over the suspected potential health hazards associated with such exposures [ICNIRP Guidelines, 1998]. There is therefore, a need for deeper understanding of the bio-effects of exposure to this radiation. Due to the ease of handing them in laboratory, microorganisms can be conveniently used to study the effect of MW on living systems. Besides, employing mutagenic frequencies of MW radiation for microbial strain improvement can be of considerable industrial significance.Objectives:1. To investigate the effect of low power MW ona. Growthb. Extracellular enzyme (amylase and pectinase) activity in Bacillus subtilis, Streptococcus mutans and Pectobacterium carotovora.c. Exopolysaccharide (EPS) in S. mutans and Xanthomonas campestris.2. To study the effect of low power MW ona. Growthb. Protein synthesisc. Intracellular enzyme (Glucose-6-phosphatase and beta- galactosidase) activity3. To investigate mutagenic effect of MW on EPS production in X. campestris.

  • Idioma: Inglés

    Editorial: GRIN Verlag, 2014

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    Librería: preigu, Osnabrück, Alemaniapreigu

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    Taschenbuch. Condición: Neu. Biological effects of radiofrequency | Influence of sub lethal microwave radiation on bacterial growth, enzyme activity, and exopolysaccharide production | Vijay Kothari (u. a.) | Taschenbuch | 88 S. | Englisch | 2014 | GRIN Verlag | EAN 9783656608608 | Verantwortliche Person für die EU: GRIN Publishing GmbH, Waltherstr. 23, 80337 München, info[at]grin[dot]com | Anbieter: preigu.

  • Idioma: Inglés

    Editorial: GRIN Verlag, GRIN Verlag Mär 2014, 2014

    3656608601 / 9783656608608

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    Librería: Books-by-Floh, Paderborn, AlemaniaBooks-by-Floh

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    Taschenbuch. Condición: Neu. Neuware -Scientific Study from the year 2013 in the subject Biology - Micro- and Molecular Biology, grade: A, Nirma University (Institute of Science), language: English, abstract: Increasing applications of MW radiation has led to concerns globally due to the suspected bio effects associated with its exposure. Effect of MW, thermal and/or athermal, is inconclusive, complex, and controversial in literature. Thermal effect causes thermogenic effect while athermal effects are other than heat and such effects reported as somatic effect and/or genetic effect.This study basically deals with the athermal effects and is aimed at investigating the hypothesis that the exposure of microbial cells to MW (low power) may cause athermal effect, which affect on growth of microbes, enzyme activity, and production of exopolysaccharides. Furthermore, we have also checked the effect of different intracellular enzymes on MW treated bacteria. Our study also gives information that MW athermal effects causes changes at genetic level and can be passed on to next generation.There are numerous and increasing applications of MW energy and technology in the industries, in homes, in medical, research institutions etc., and there is greater awareness and concern of the public over the suspected potential health hazards associated with such exposures [ICNIRP Guidelines, 1998]. There is therefore, a need for deeper understanding of the bio-effects of exposure to this radiation. Due to the ease of handing them in laboratory, microorganisms can be conveniently used to study the effect of MW on living systems. Besides, employing mutagenic frequencies of MW radiation for microbial strain improvement can be of considerable industrial significance.Objectives:1. To investigate the effect of low power MW ona. Growthb. Extracellular enzyme (amylase and pectinase) activity in Bacillus subtilis, Streptococcus mutans and Pectobacterium carotovora.c. Exopolysaccharide (EPS) in S. mutans and Xanthomonas campestris.2. To study the effect of low power MW ona. Growthb. Protein synthesisc. Intracellular enzyme (Glucose-6-phosphatase and ¿- galactosidase) activity3. To investigate mutagenic effect of MW on EPS production in X. campestris. 88 pp. Englisch.

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    Paperback. Condición: Brand New. 88 pages. 5.83x0.21x8.27 inches. In Stock. This item is printed on demand.

  • Idioma: Inglés

    Editorial: GRIN Verlag, GRIN Verlag Mär 2014, 2014

    3656608601 / 9783656608608

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    Librería: Rheinberg-Buch Andreas Meier eK, Bergisch Gladbach, AlemaniaRheinberg-Buch Andreas Meier eK

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    Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Scientific Study from the year 2013 in the subject Biology - Micro- and Molecular Biology, grade: A, Nirma University (Institute of Science), language: English, abstract: Increasing applications of MW radiation has led to concerns globally due to the suspected bio effects associated with its exposure. Effect of MW, thermal and/or athermal, is inconclusive, complex, and controversial in literature. Thermal effect causes thermogenic effect while athermal effects are other than heat and such effects reported as somatic effect and/or genetic effect.This study basically deals with the athermal effects and is aimed at investigating the hypothesis that the exposure of microbial cells to MW (low power) may cause athermal effect, which affect on growth of microbes, enzyme activity, and production of exopolysaccharides. Furthermore, we have also checked the effect of different intracellular enzymes on MW treated bacteria. Our study also gives information that MW athermal effects causes changes at genetic level and can be passed on to next generation.There are numerous and increasing applications of MW energy and technology in the industries, in homes, in medical, research institutions etc., and there is greater awareness and concern of the public over the suspected potential health hazards associated with such exposures [ICNIRP Guidelines, 1998]. There is therefore, a need for deeper understanding of the bio-effects of exposure to this radiation. Due to the ease of handing them in laboratory, microorganisms can be conveniently used to study the effect of MW on living systems. Besides, employing mutagenic frequencies of MW radiation for microbial strain improvement can be of considerable industrial significance.Objectives:1. To investigate the effect of low power MW ona. Growthb. Extracellular enzyme (amylase and pectinase) activity in Bacillus subtilis, Streptococcus mutans and Pectobacterium carotovora.c. Exopolysaccharide (EPS) in S. mutans and Xanthomonas campestris.2. To study the effect of low power MW ona. Growthb. Protein synthesisc. Intracellular enzyme (Glucose-6-phosphatase and beta- galactosidase) activity3. To investigate mutagenic effect of MW on EPS production in X. campestris. 88 pp. Englisch.

  • Idioma: Inglés

    Editorial: GRIN Verlag, GRIN Verlag Mär 2014, 2014

    3656608601 / 9783656608608

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    Librería: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, AlemaniaBuchWeltWeit Ludwig Meier e.K.

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    Taschenbuch. Condición: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Scientific Study from the year 2013 in the subject Biology - Micro- and Molecular Biology, grade: A, Nirma University (Institute of Science), language: English, abstract: Increasing applications of MW radiation has led to concerns globally due to the suspected bio effects associated with its exposure. Effect of MW, thermal and/or athermal, is inconclusive, complex, and controversial in literature. Thermal effect causes thermogenic effect while athermal effects are other than heat and such effects reported as somatic effect and/or genetic effect.This study basically deals with the athermal effects and is aimed at investigating the hypothesis that the exposure of microbial cells to MW (low power) may cause athermal effect, which affect on growth of microbes, enzyme activity, and production of exopolysaccharides. Furthermore, we have also checked the effect of different intracellular enzymes on MW treated bacteria. Our study also gives information that MW athermal effects causes changes at genetic level and can be passed on to next generation.There are numerous and increasing applications of MW energy and technology in the industries, in homes, in medical, research institutions etc., and there is greater awareness and concern of the public over the suspected potential health hazards associated with such exposures [ICNIRP Guidelines, 1998]. There is therefore, a need for deeper understanding of the bio-effects of exposure to this radiation. Due to the ease of handing them in laboratory, microorganisms can be conveniently used to study the effect of MW on living systems. Besides, employing mutagenic frequencies of MW radiation for microbial strain improvement can be of considerable industrial significance.Objectives:1. To investigate the effect of low power MW ona. Growthb. Extracellular enzyme (amylase and pectinase) activity in Bacillus subtilis, Streptococcus mutans and Pectobacterium carotovora.c. Exopolysaccharide (EPS) in S. mutans and Xanthomonas campestris.2. To study the effect of low power MW ona. Growthb. Protein synthesisc. Intracellular enzyme (Glucose-6-phosphatase and beta- galactosidase) activity3. To investigate mutagenic effect of MW on EPS production in X. campestris. 88 pp. Englisch.