ºÝºÝߣshows by User: Priya63 / http://www.slideshare.net/images/logo.gif ºÝºÝߣshows by User: Priya63 / Wed, 23 Jun 2021 12:20:21 GMT ºÝºÝߣShare feed for ºÝºÝߣshows by User: Priya63 Basics of protein biochemistry /slideshow/basics-of-protein-biochemistry/249463726 basics-210623122021
BUFFERS MOLARITY DILUTION SDS PAGE CLONING]]>

BUFFERS MOLARITY DILUTION SDS PAGE CLONING]]>
Wed, 23 Jun 2021 12:20:21 GMT /slideshow/basics-of-protein-biochemistry/249463726 Priya63@slideshare.net(Priya63) Basics of protein biochemistry Priya63 BUFFERS MOLARITY DILUTION SDS PAGE CLONING <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/basics-210623122021-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> BUFFERS MOLARITY DILUTION SDS PAGE CLONING
Basics of protein biochemistry from priyanka raviraj
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CROP PROSPECTS and FOOD SITUATION, 2020 /slideshow/crop-prospects-and-food-situation-2020/249403934 ca8032en-210618054425
CROP PROSPECTS and FOOD SITUATION, 2020 FAO of UN world cereal production]]>

CROP PROSPECTS and FOOD SITUATION, 2020 FAO of UN world cereal production]]>
Fri, 18 Jun 2021 05:44:24 GMT /slideshow/crop-prospects-and-food-situation-2020/249403934 Priya63@slideshare.net(Priya63) CROP PROSPECTS and FOOD SITUATION, 2020 Priya63 CROP PROSPECTS and FOOD SITUATION, 2020 FAO of UN world cereal production <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/ca8032en-210618054425-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> CROP PROSPECTS and FOOD SITUATION, 2020 FAO of UN world cereal production
CROP PROSPECTS and FOOD SITUATION, 2020 from priyanka raviraj
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Guide TO FINDING YOUR NATURAL TALENTS AND STRENGTHS /slideshow/guide-to-finding-your-natural-talents-and-strengths/249403367 strengthsguide-210618043548
THE ULTIMATE GUIDE "TO FINDING YOUR NATURAL TALENTS AND STRENGTHS"]]>

THE ULTIMATE GUIDE "TO FINDING YOUR NATURAL TALENTS AND STRENGTHS"]]>
Fri, 18 Jun 2021 04:35:47 GMT /slideshow/guide-to-finding-your-natural-talents-and-strengths/249403367 Priya63@slideshare.net(Priya63) Guide TO FINDING YOUR NATURAL TALENTS AND STRENGTHS Priya63 THE ULTIMATE GUIDE "TO FINDING YOUR NATURAL TALENTS AND STRENGTHS" <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/strengthsguide-210618043548-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> THE ULTIMATE GUIDE &quot;TO FINDING YOUR NATURAL TALENTS AND STRENGTHS&quot;
Guide TO FINDING YOUR NATURAL TALENTS AND STRENGTHS from priyanka raviraj
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CLINICAL LABORATORY TECHNIQUES /slideshow/clinical-laboratory-techniques-249403313/249403313 masterinternshipclinilabtech-210618043209
Protocol for all basic laboratory tests: Biochemistry tests, microbiology tests, serology tests, histopathology tests]]>

Protocol for all basic laboratory tests: Biochemistry tests, microbiology tests, serology tests, histopathology tests]]>
Fri, 18 Jun 2021 04:32:09 GMT /slideshow/clinical-laboratory-techniques-249403313/249403313 Priya63@slideshare.net(Priya63) CLINICAL LABORATORY TECHNIQUES Priya63 Protocol for all basic laboratory tests: Biochemistry tests, microbiology tests, serology tests, histopathology tests <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/masterinternshipclinilabtech-210618043209-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Protocol for all basic laboratory tests: Biochemistry tests, microbiology tests, serology tests, histopathology tests
CLINICAL LABORATORY TECHNIQUES from priyanka raviraj
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Laboratory Blood/ Specimen collection /slideshow/laboratory-blood-specimen-collection/249403253 internshippresentation-210618042806
Blood Specimen Collection and Processing VENIPUNCTURE BUTTERFLY NEEDLE METHOD Sites to draw blood Order of Draw Labelling the sample Areas to Avoid When Choosing a Site for Blood Draw Techniques to Prevent Hemolysis (which can interfere with many tests) SAMPLE REJECTION Blood Sample Handling and Processing RBC ZINC TEST HIV 1&2 WESTERN BLOT]]>

Blood Specimen Collection and Processing VENIPUNCTURE BUTTERFLY NEEDLE METHOD Sites to draw blood Order of Draw Labelling the sample Areas to Avoid When Choosing a Site for Blood Draw Techniques to Prevent Hemolysis (which can interfere with many tests) SAMPLE REJECTION Blood Sample Handling and Processing RBC ZINC TEST HIV 1&2 WESTERN BLOT]]>
Fri, 18 Jun 2021 04:28:06 GMT /slideshow/laboratory-blood-specimen-collection/249403253 Priya63@slideshare.net(Priya63) Laboratory Blood/ Specimen collection Priya63 Blood Specimen Collection and Processing VENIPUNCTURE BUTTERFLY NEEDLE METHOD Sites to draw blood� Order of Draw Labelling the sample Areas to Avoid When Choosing a Site for Blood Draw Techniques to Prevent Hemolysis (which can interfere with many tests) SAMPLE REJECTION Blood Sample Handling and Processing RBC ZINC TEST� �HIV 1&2 WESTERN BLOT <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/internshippresentation-210618042806-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Blood Specimen Collection and Processing VENIPUNCTURE BUTTERFLY NEEDLE METHOD Sites to draw blood� Order of Draw Labelling the sample Areas to Avoid When Choosing a Site for Blood Draw Techniques to Prevent Hemolysis (which can interfere with many tests) SAMPLE REJECTION Blood Sample Handling and Processing RBC ZINC TEST� �HIV 1&amp;2 WESTERN BLOT
Laboratory Blood/ Specimen collection from priyanka raviraj
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Metabolomic Profiling of Spent Biomass Of Marine Microalgae, Chlorella vulgaris /slideshow/metabolomic-profiling-of-spent-biomass-of-marine-microalgae-chlorella-vulgaris/249401613 m-210618031201
OBJECTIVE: To evaluate the presence of any high value added compounds in the spent biomass of C. vulgaris To identify the biological activity of the extracted compounds To evaluate the structure and nature of the compounds using Nuclear Magnetic Resonance Spectroscopy and other analytical techniques. Development of economically viable methodologies for the simultaneous extraction of by-products from a single set of biomass. biological activities performed -Total antioxidant capacity, Anti bacterial activity, Anti-tuberculosis activity, Anti proliferative assay]]>

OBJECTIVE: To evaluate the presence of any high value added compounds in the spent biomass of C. vulgaris To identify the biological activity of the extracted compounds To evaluate the structure and nature of the compounds using Nuclear Magnetic Resonance Spectroscopy and other analytical techniques. Development of economically viable methodologies for the simultaneous extraction of by-products from a single set of biomass. biological activities performed -Total antioxidant capacity, Anti bacterial activity, Anti-tuberculosis activity, Anti proliferative assay]]>
Fri, 18 Jun 2021 03:12:01 GMT /slideshow/metabolomic-profiling-of-spent-biomass-of-marine-microalgae-chlorella-vulgaris/249401613 Priya63@slideshare.net(Priya63) Metabolomic Profiling of Spent Biomass Of Marine Microalgae, Chlorella vulgaris Priya63 OBJECTIVE: To evaluate the presence of any high value added compounds in the spent biomass of C. vulgaris To identify the biological activity of the extracted compounds To evaluate the structure and nature of the compounds using Nuclear Magnetic Resonance Spectroscopy and other analytical techniques. Development of economically viable methodologies for the simultaneous extraction of by-products from a single set of biomass. biological activities performed -Total antioxidant capacity, Anti bacterial activity, Anti-tuberculosis activity, Anti proliferative assay <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/m-210618031201-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> OBJECTIVE: To evaluate the presence of any high value added compounds in the spent biomass of C. vulgaris To identify the biological activity of the extracted compounds To evaluate the structure and nature of the compounds using Nuclear Magnetic Resonance Spectroscopy and other analytical techniques. Development of economically viable methodologies for the simultaneous extraction of by-products from a single set of biomass. biological activities performed -Total antioxidant capacity, Anti bacterial activity, Anti-tuberculosis activity, Anti proliferative assay
Metabolomic Profiling of Spent Biomass Of Marine Microalgae, Chlorella vulgaris from priyanka raviraj
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Photochemistry Mediated Synthesis and Characterization of Thyroxine Capped Silver Nanoparticles /slideshow/photochemistry-mediated-synthesis-and-characterization-of-thyroxine-capped-silver-nanoparticles/249401347 vivathynanocopy-210618030023
Objective: Silver nanoparticles (AgNPs) are one of the noble metal nanoparticles studied due to their amenability of synthesis, functionalization and ease of detection. Synthesis of silver nanoparticles using thyroxine as a reducing and capping agent through the one step photochemical method Characterization of synthesized silver nanoparticles (Thy-AgNPs) 1. UV-Spectroscopy Analysis 2. Fourier Transforms-Infra Red Spectroscopy (FT-IR) 3. High Resolution Transmission Electron Microscopy(HR-TEM) 4. Field Emission Scanning Electron Microscopy(FE-SEM) 5. Dynamic Light Scattering (DLS) 6. Zeta potential Uses: *AgNPs have unique optical, electrical, and thermal properties *Exhibit high plasmon efficiency *More sensitive towards localized surface plasmon resonance *Less time consuming, economic and more ecofriendly *It is used in electronics, food industry, cosmetics, photochemical, biomedicine and chemistry. ]]>

Objective: Silver nanoparticles (AgNPs) are one of the noble metal nanoparticles studied due to their amenability of synthesis, functionalization and ease of detection. Synthesis of silver nanoparticles using thyroxine as a reducing and capping agent through the one step photochemical method Characterization of synthesized silver nanoparticles (Thy-AgNPs) 1. UV-Spectroscopy Analysis 2. Fourier Transforms-Infra Red Spectroscopy (FT-IR) 3. High Resolution Transmission Electron Microscopy(HR-TEM) 4. Field Emission Scanning Electron Microscopy(FE-SEM) 5. Dynamic Light Scattering (DLS) 6. Zeta potential Uses: *AgNPs have unique optical, electrical, and thermal properties *Exhibit high plasmon efficiency *More sensitive towards localized surface plasmon resonance *Less time consuming, economic and more ecofriendly *It is used in electronics, food industry, cosmetics, photochemical, biomedicine and chemistry. ]]>
Fri, 18 Jun 2021 03:00:22 GMT /slideshow/photochemistry-mediated-synthesis-and-characterization-of-thyroxine-capped-silver-nanoparticles/249401347 Priya63@slideshare.net(Priya63) Photochemistry Mediated Synthesis and Characterization of Thyroxine Capped Silver Nanoparticles Priya63 Objective: Silver nanoparticles (AgNPs) are one of the noble metal nanoparticles studied due to their amenability of synthesis, functionalization and ease of detection. Synthesis of silver nanoparticles using thyroxine as a reducing and capping agent through the one step photochemical method Characterization of synthesized silver nanoparticles (Thy-AgNPs) 1. UV-Spectroscopy Analysis 2. Fourier Transforms-Infra Red Spectroscopy (FT-IR) 3. High Resolution Transmission Electron Microscopy(HR-TEM) 4. Field Emission Scanning Electron Microscopy(FE-SEM) 5. Dynamic Light Scattering (DLS) 6. Zeta potential Uses: *AgNPs have unique optical, electrical, and thermal properties *Exhibit high plasmon efficiency *More sensitive towards localized surface plasmon resonance *Less time consuming, economic and more ecofriendly *It is used in electronics, food industry, cosmetics, photochemical, biomedicine and chemistry. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/vivathynanocopy-210618030023-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Objective: Silver nanoparticles (AgNPs) are one of the noble metal nanoparticles studied due to their amenability of synthesis, functionalization and ease of detection. Synthesis of silver nanoparticles using thyroxine as a reducing and capping agent through the one step photochemical method Characterization of synthesized silver nanoparticles (Thy-AgNPs) 1. UV-Spectroscopy Analysis 2. Fourier Transforms-Infra Red Spectroscopy (FT-IR) 3. High Resolution Transmission Electron Microscopy(HR-TEM) 4. Field Emission Scanning Electron Microscopy(FE-SEM) 5. Dynamic Light Scattering (DLS) 6. Zeta potential Uses: *AgNPs have unique optical, electrical, and thermal properties *Exhibit high plasmon efficiency *More sensitive towards localized surface plasmon resonance *Less time consuming, economic and more ecofriendly *It is used in electronics, food industry, cosmetics, photochemical, biomedicine and chemistry.
Photochemistry Mediated Synthesis and Characterization of Thyroxine Capped Silver Nanoparticles from priyanka raviraj
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Rna polymerase /slideshow/rna-polymerase-47861547/47861547 rnapolymerase-150507120506-lva1-app6891
RNA Polymerase Introduction Purification History PRODUCTS OF RNAP Messenger RNA Non-coding RNA  or "RNA genes Transfer RNA Ribosomal RNA Micro RNA Catalytic RNA (Ribozyme) prokaryotic and eukaryotic Transcription by RNA Polymerase TYPES OF RNA POLYMERASE Type I Type II Type III Prokaryotic Transcription Unit EXPRESSION OF A PROKARYOTIC GENE Prokaryotic Polycistronic Message Codes for Several Different Proteins Eukaryotic Transcription Unit ENHANCERS AND SILENCERS RESULT OF THE TRANSCRIPTION CYCLE RNAP III TRANSCRIBES HUMAN MICRORNAS RNAP I–specific subunits promotepolymerase clustering to enhance the rRNA genetranscription cycle RNAP II–TFIIB STRUCTURE ANDMECHANISM OF TRANSCRIPTION INITIATION FIVE CHECKPOINTS MAINTAINING THE FIDELITY OFTRANSCRIPTION BY RNAP IN STRUCTURAL ANDENERGETIC DETAILS]]>

RNA Polymerase Introduction Purification History PRODUCTS OF RNAP Messenger RNA Non-coding RNA  or "RNA genes Transfer RNA Ribosomal RNA Micro RNA Catalytic RNA (Ribozyme) prokaryotic and eukaryotic Transcription by RNA Polymerase TYPES OF RNA POLYMERASE Type I Type II Type III Prokaryotic Transcription Unit EXPRESSION OF A PROKARYOTIC GENE Prokaryotic Polycistronic Message Codes for Several Different Proteins Eukaryotic Transcription Unit ENHANCERS AND SILENCERS RESULT OF THE TRANSCRIPTION CYCLE RNAP III TRANSCRIBES HUMAN MICRORNAS RNAP I–specific subunits promotepolymerase clustering to enhance the rRNA genetranscription cycle RNAP II–TFIIB STRUCTURE ANDMECHANISM OF TRANSCRIPTION INITIATION FIVE CHECKPOINTS MAINTAINING THE FIDELITY OFTRANSCRIPTION BY RNAP IN STRUCTURAL ANDENERGETIC DETAILS]]>
Thu, 07 May 2015 12:05:06 GMT /slideshow/rna-polymerase-47861547/47861547 Priya63@slideshare.net(Priya63) Rna polymerase Priya63 RNA Polymerase Introduction Purification History PRODUCTS OF RNAP Messenger RNA Non-coding RNA  or "RNA genes Transfer RNA Ribosomal RNA Micro RNA Catalytic RNA (Ribozyme) prokaryotic and eukaryotic Transcription by RNA Polymerase TYPES OF RNA POLYMERASE Type I Type II Type III Prokaryotic Transcription Unit EXPRESSION OF A PROKARYOTIC GENE Prokaryotic Polycistronic Message Codes for Several Different Proteins Eukaryotic Transcription Unit ENHANCERS AND SILENCERS RESULT OF THE TRANSCRIPTION CYCLE RNAP III TRANSCRIBES HUMAN MICRORNAS RNAP I–specific subunits promote�polymerase clustering to enhance the rRNA gene�transcription cycle RNAP II–TFIIB STRUCTURE AND�MECHANISM OF TRANSCRIPTION INITIATION FIVE CHECKPOINTS MAINTAINING THE FIDELITY OF�TRANSCRIPTION BY RNAP IN STRUCTURAL AND�ENERGETIC DETAILS <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/rnapolymerase-150507120506-lva1-app6891-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> RNA Polymerase Introduction Purification History PRODUCTS OF RNAP Messenger RNA Non-coding RNA  or &quot;RNA genes Transfer RNA Ribosomal RNA Micro RNA Catalytic RNA (Ribozyme) prokaryotic and eukaryotic Transcription by RNA Polymerase TYPES OF RNA POLYMERASE Type I Type II Type III Prokaryotic Transcription Unit EXPRESSION OF A PROKARYOTIC GENE Prokaryotic Polycistronic Message Codes for Several Different Proteins Eukaryotic Transcription Unit ENHANCERS AND SILENCERS RESULT OF THE TRANSCRIPTION CYCLE RNAP III TRANSCRIBES HUMAN MICRORNAS RNAP I–specific subunits promote�polymerase clustering to enhance the rRNA gene�transcription cycle RNAP II–TFIIB STRUCTURE AND�MECHANISM OF TRANSCRIPTION INITIATION FIVE CHECKPOINTS MAINTAINING THE FIDELITY OF�TRANSCRIPTION BY RNAP IN STRUCTURAL AND�ENERGETIC DETAILS
Rna polymerase from priyanka raviraj
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Dna /slideshow/dna-47757544/47757544 dna-150505000848-conversion-gate01
DNA history structure X-Ray diffraction image of DNA base pairing principle base pairs bonding patterns of DNA base stacking different conformations of DNA different forms of DNA function of DNA replication encoding information mutation/recombination gene expression Application of DNA]]>

DNA history structure X-Ray diffraction image of DNA base pairing principle base pairs bonding patterns of DNA base stacking different conformations of DNA different forms of DNA function of DNA replication encoding information mutation/recombination gene expression Application of DNA]]>
Tue, 05 May 2015 00:08:48 GMT /slideshow/dna-47757544/47757544 Priya63@slideshare.net(Priya63) Dna Priya63 DNA history structure X-Ray diffraction image of DNA base pairing principle base pairs bonding patterns of DNA base stacking different conformations of DNA different forms of DNA function of DNA replication encoding information mutation/recombination gene expression Application of DNA <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/dna-150505000848-conversion-gate01-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> DNA history structure X-Ray diffraction image of DNA base pairing principle base pairs bonding patterns of DNA base stacking different conformations of DNA different forms of DNA function of DNA replication encoding information mutation/recombination gene expression Application of DNA
Dna from priyanka raviraj
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Bacteriophage vectors /slideshow/bacteriophage-47756940/47756940 bacteriophage-150504234732-conversion-gate02
Bacteriophage vectors Bacteriophage WHY BACTERIOPHAGE AS A VECTOR? M13 phage Genome of m13 phage Life cycle and dna replication of m13 CONSTRUCTION M13 AS PHAGE VECTOR M13 MP 2 vector M13MP7 VECTOR Selection of recombinants Lambda replacement vectors LAMBDA EMBL 4 VECTOR P1 PHAGE GENOME OF P1 PHAGE P1 PHAGE AS VECTOR P1 phage vector system]]>

Bacteriophage vectors Bacteriophage WHY BACTERIOPHAGE AS A VECTOR? M13 phage Genome of m13 phage Life cycle and dna replication of m13 CONSTRUCTION M13 AS PHAGE VECTOR M13 MP 2 vector M13MP7 VECTOR Selection of recombinants Lambda replacement vectors LAMBDA EMBL 4 VECTOR P1 PHAGE GENOME OF P1 PHAGE P1 PHAGE AS VECTOR P1 phage vector system]]>
Mon, 04 May 2015 23:47:32 GMT /slideshow/bacteriophage-47756940/47756940 Priya63@slideshare.net(Priya63) Bacteriophage vectors Priya63 Bacteriophage vectors Bacteriophage WHY BACTERIOPHAGE AS A VECTOR? M13 phage Genome of m13 phage Life cycle and dna replication of m13 CONSTRUCTION M13 AS PHAGE VECTOR M13 MP 2 vector M13MP7 VECTOR Selection of recombinants Lambda replacement vectors LAMBDA EMBL 4 VECTOR P1 PHAGE GENOME OF P1 PHAGE P1 PHAGE AS VECTOR P1 phage vector system <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/bacteriophage-150504234732-conversion-gate02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Bacteriophage vectors Bacteriophage WHY BACTERIOPHAGE AS A VECTOR? M13 phage Genome of m13 phage Life cycle and dna replication of m13 CONSTRUCTION M13 AS PHAGE VECTOR M13 MP 2 vector M13MP7 VECTOR Selection of recombinants Lambda replacement vectors LAMBDA EMBL 4 VECTOR P1 PHAGE GENOME OF P1 PHAGE P1 PHAGE AS VECTOR P1 phage vector system
Bacteriophage vectors from priyanka raviraj
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Bacterial plasmids /slideshow/bacterial-plasmids-47691970/47691970 bacterialplasmids-150503041040-conversion-gate02
plasmids history properties classification ColE1 plasmid characteristics replication regulation application Sv 40 plasmid history properties applications PMB 9 Plasmid construction application]]>

plasmids history properties classification ColE1 plasmid characteristics replication regulation application Sv 40 plasmid history properties applications PMB 9 Plasmid construction application]]>
Sun, 03 May 2015 04:10:40 GMT /slideshow/bacterial-plasmids-47691970/47691970 Priya63@slideshare.net(Priya63) Bacterial plasmids Priya63 plasmids history properties classification ColE1 plasmid characteristics replication regulation application Sv 40 plasmid history properties applications PMB 9 Plasmid construction application <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/bacterialplasmids-150503041040-conversion-gate02-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> plasmids history properties classification ColE1 plasmid characteristics replication regulation application Sv 40 plasmid history properties applications PMB 9 Plasmid construction application
Bacterial plasmids from priyanka raviraj
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Third Generation Sequencing /slideshow/whole-genome-analysis-47691732/47691732 wholegenomeanalysis-150503035502-conversion-gate01
whole genome analysis history needs steps involved human genome data NGS pyrosequencing illumina SOLiD Ion torrent PacBio applications problems benefits]]>

whole genome analysis history needs steps involved human genome data NGS pyrosequencing illumina SOLiD Ion torrent PacBio applications problems benefits]]>
Sun, 03 May 2015 03:55:02 GMT /slideshow/whole-genome-analysis-47691732/47691732 Priya63@slideshare.net(Priya63) Third Generation Sequencing Priya63 whole genome analysis history needs steps involved human genome data NGS pyrosequencing illumina SOLiD Ion torrent PacBio applications problems benefits <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/wholegenomeanalysis-150503035502-conversion-gate01-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> whole genome analysis history needs steps involved human genome data NGS pyrosequencing illumina SOLiD Ion torrent PacBio applications problems benefits
Third Generation Sequencing from priyanka raviraj
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Sericulture /slideshow/sericulture-47373253/47373253 sericulture-150424083453-conversion-gate01
Introduction Sericulture, or silk farming, is the rearing of silkworms for the production of silk. Species of silkworm Mulberry silkworm Tasar silkworm Muga silkworm Eri silkworm Oak silkworm Giant silkworm History Types of silk Tasar Eri Mulberry Muga Life cycle Advantages Uses Diseases Pebrene Grasserie Flacherie Muscardine Production of silk India Research Institutes Artificial production In vitro culture of embryo Tissue culture media- Grace’s medium Cell line production Nutrition production]]>

Introduction Sericulture, or silk farming, is the rearing of silkworms for the production of silk. Species of silkworm Mulberry silkworm Tasar silkworm Muga silkworm Eri silkworm Oak silkworm Giant silkworm History Types of silk Tasar Eri Mulberry Muga Life cycle Advantages Uses Diseases Pebrene Grasserie Flacherie Muscardine Production of silk India Research Institutes Artificial production In vitro culture of embryo Tissue culture media- Grace’s medium Cell line production Nutrition production]]>
Fri, 24 Apr 2015 08:34:52 GMT /slideshow/sericulture-47373253/47373253 Priya63@slideshare.net(Priya63) Sericulture Priya63 Introduction Sericulture, or silk farming, is the rearing of silkworms for the production of silk. Species of silkworm Mulberry silkworm Tasar silkworm Muga silkworm Eri silkworm Oak silkworm Giant silkworm History Types of silk Tasar Eri Mulberry Muga Life cycle Advantages Uses Diseases Pebrene Grasserie Flacherie Muscardine Production of silk India Research Institutes Artificial production In vitro culture of embryo Tissue culture media- Grace’s medium Cell line production Nutrition production <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/sericulture-150424083453-conversion-gate01-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Introduction Sericulture, or silk farming, is the rearing of silkworms for the production of silk. Species of silkworm Mulberry silkworm Tasar silkworm Muga silkworm Eri silkworm Oak silkworm Giant silkworm History Types of silk Tasar Eri Mulberry Muga Life cycle Advantages Uses Diseases Pebrene Grasserie Flacherie Muscardine Production of silk India Research Institutes Artificial production In vitro culture of embryo Tissue culture media- Grace’s medium Cell line production Nutrition production
Sericulture from priyanka raviraj
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