№ files_lp_3_process_7_083028
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This document is a scientific report comparing three different aseptic transfer protocols for bacterial growth.
Year:
2026
Region / City:
Not specified
Topic:
Bacterial growth, aseptic transfer protocols
Document Type:
Scientific report
Organization / Institution:
Not specified
Author:
Not specified
Target Audience:
Researchers, students in microbiology
Period of validity:
Not specified
Approval Date:
Not specified
Date of amendments:
Not specified
Price: 8 / 10 USD
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The product description is provided for reference. Actual content and formatting may differ slightly.
Year:
2023
Region / City:
Not specified
Subject:
Early Childhood Education
Document Type:
Rubric
Institution:
California Early Childhood Education Program
Author:
Not specified
Target Audience:
Early Childhood Education students and instructors
Effective Period:
Not specified
Approval Date:
Not specified
Date of Changes:
Not specified
Note:
Year
Document Type:
Educational Planning Template
Target Audience:
Educators, Early Childhood Professionals
Note:
Year
Topic:
Child Development
Document Type:
Observation Template
Target Audience:
Educators, Researchers
Year:
2006-2017
Region / city:
Skagway Glacier, Alaska
Topic:
Geoscience, GPS Data, Glaciers
Document type:
Educational Activity
Organization:
Community College of Rhode Island, San Jose City College
Author:
Karen M. Kortz, Jessica J. Smay
Target audience:
Students, Geoscience learners
Period of validity:
Not specified
Approval date:
Not specified
Modification date:
Not specified
Contextual description:
Educational activity designed for students to analyze and interpret vertical GPS data related to glacier movement, supporting the development of scientific hypotheses.
Year:
2023
Region / City:
Converse County
Theme:
Education
Document Type:
Instructional Guide
Organization / Institution:
Converse County School District #1
Author:
Not specified
Target Audience:
Parents of students
Period of Validity:
Ongoing
Approval Date:
Not specified
Date of Changes:
Not specified
Education level:
Year 6
Subject:
Science
Document type:
Classroom investigation worksheet
Framework:
Predict, Reason, Observe, Explain (PROE)
Purpose:
Recording and reflecting on a scientific investigation
Sections included:
Predict; Reason; Observe; Explain
Observation guidance:
Visual, auditory and smell observations; written notes, drawings or photos
Investigation field:
Name of investigation
Year:
2026
Type of Document:
Personal journal / observation log
Author:
Unspecified
Target Audience:
Self
Period Covered:
Daily routine
Topics:
Observation planning, daily activities
Format:
Text table
Year:
2021
Region / City:
United Kingdom
Subject:
Health economics, antimicrobial evaluation
Document type:
Final report
Organization / Institution:
Centre for Health Economics, University of York; Health Economics and Decision Science, University of Sheffield
Author:
Sue Harnan, Ben Kearns, Alison Scope, Laetitia Schmitt, Dina Jankovic, Jean Hamilton, Ruth Wong, Tushar Srivastava, Harry Hill, Chu Chang Ku, Kate Ren, Claire Rothery, Laura Bojke, Mark Sculpher, Beth Woods
Target audience:
Healthcare professionals, policymakers, researchers
Period of validity:
2016 - ongoing
Approval date:
October 2021
Date of last modification:
October 2021
Document type:
Supplementary material
Scientific field:
Molecular biology
Research focus:
Anticalin selection and affinity maturation
Target protein:
Membrane-bound Hsp70
Methodology:
Bacterial surface display
Techniques:
FACS screening, affinity maturation, directed evolution, SPR, CD spectroscopy, flow cytometry
Biological models:
E. coli, FaDu cells, OPM-2 cells
Authors:
Lars Friedrich; Petra Kornberger; Claudia T. Mendler; Gabriele Multhoff; Markus Schwaiger; Arne Skerra
Figures included:
Figures S1–S7
Related publication:
Main research article on Anticalin selection against Hsp70
Experimental scope:
In vitro binding analysis and cellular characterization
Document type:
Laboratory exercise instructions
Subject area:
Microbiology
Educational level:
Undergraduate laboratory
Focus:
Bacterial growth media and culturing techniques
Topics covered:
Normal flora, aseptic technique, selective and differential media, colony morphology, hemolysis
Media discussed:
TSY agar, MacConkey’s agar, Mannitol Salt agar, Blood agar
Biological concepts:
Normal flora, bacterial colonies, hemolysis, Gram-positive and Gram-negative bacteria
Laboratory context:
Teaching laboratory
Associated organisms:
Staphylococcus, Streptococcus, Enterobacteriaceae
Intended audience:
Students enrolled in a microbiology laboratory course
Temporal context:
Multi-week laboratory sequence
Instructional purpose:
Observation and analysis of bacterial growth on culture media
Year:
2023
Region / City:
Not specified
Topic:
Microbiology, Genetic Engineering
Document Type:
Supplementary Information
Organization / Institution:
Not specified
Author:
Wolf M, Geczi A, Simon O, Borriss R
Target Audience:
Researchers in microbiology and genetic engineering
Effective Period:
Not specified
Approval Date:
Not specified
Date of Changes:
Not specified
Year:
2026
Institution:
University of Leicester
College:
College of Life Sciences
School/Department:
LeMID
Funding:
CLS / HPRU Grant studentship
First Supervisor:
Prof Julie Morrissey
Second Supervisor:
Dr Emma Marczylo, UK Health Security Agency (UKHSA)
Additional Supervisors:
Kate Jones, Health and Safety Executive; Emma-Jane Goode
Project Type:
PhD research project
Field:
Microbiology / Public Health
Focus:
Metal exposure, bacterial persistence, antimicrobial resistance
Target Organisms:
Staphylococcus aureus (CA-MRSA and HA-MRSA)
Training Provided:
Molecular microbiology, tissue culture, omics, microscopy
Collaborating Organizations:
Health Protection Research Unit, National Institute of Health Research (NIHR), Health and Safety Executive, UKHSA
Note:
Year
Topic:
Blood culture, bacterial infection, microbiology
Document type:
Procedure
Target audience:
Medical professionals, laboratory technicians
Year:
2023
Region / City:
Salt Lake City, Utah, United States
Subject:
Bacterial diversity, chemical ecology, natural products
Document Type:
Scientific Research Paper
Organization / Institution:
University of Utah, Scripps Institution of Oceanography, University of California at San Diego
Author:
Elijah R. Bring Horvath, William J. Brazelton, Min Cheol Kim, Reiko Cullum, Matthew A. Mulvey, William Fenical, Jaclyn M. Winter
Target Audience:
Researchers in microbiology, marine biology, and chemical ecology
Period of Validity:
N/A
Approval Date:
N/A
Date of Changes:
N/A
Year:
2018
Region / City:
Not specified
Topic:
Gene expression in biofilm and planktonic bacteria
Document type:
Scientific article
Organization / Institution:
Not specified
Author:
Not specified
Target audience:
Researchers in microbiology and molecular biology
Effective period:
Not specified
Approval date:
Not specified
Modification date:
Not specified
Document type:
Supporting information
Related article title:
Organic fertilizers shape the bacterial communities harboring pqqC and phoD genes by altering organic acids, leading to improved phosphorus utilization
Authors:
Liying Zhi; Bangxiao Zheng; Yunjie Xu; Jiayang Xu; Josep Peñuelas; Jordi Sardans; Yixiao Chang; Shuquan Jin; Hong Ying; Kai Ding
Affiliations:
Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen, China; College of JunCao Science and Ecology, Fujian Agriculture and Forestry University, Fuzhou, China; School of Environmental Science and Engineering, Xiamen University of Technology, Xiamen, China; Bureau of Agriculture and Rural Affairs, Wencheng, China; University of Chinese Academy of Sciences, Beijing, China; CSIC, Global Ecology Unit, CREAF-CSIC-UAB, Bellaterra, Spain; CREAF, Cerdanyola del Vallès, Spain; Institute of Ecological Environment, Ningbo Academy of Agricultural Sciences, Ningbo, China; Yangtze Delta Region Healthy Agricultural Institute (Zhejiang) Co., Ltd, Tongxiang, China
Number of pages:
12
Number of figures:
9
Number of tables:
5
Subject area:
Soil microbiology
Keywords:
organic fertilizer; inorganic fertilizer; pqqC gene; phoD gene; bacterial community; soil physicochemical properties; organic acids; phosphorus activation rate
Experimental design:
Fertilizer treatment groups including chemical and organic amendments
Analytical methods:
PCOA based on Bray-Curtis dissimilarity; Spearman correlation analysis; quantitative PCR; soil physicochemical and enzyme assays
Gene targets:
16S rRNA; pqqC; phoD
Measured parameters:
Soil pH; SOC; TN; TP; TK; AN; AP; AK; organic acid content; enzyme activities (ACP, ALP)
Year:
2006
Region / city:
Los Angeles, California
Subject:
Water quality, bacteria standards
Document type:
Amendment
Authority / institution:
Regional Water Quality Control Board, State Water Resources Control Board, U.S. Environmental Protection Agency
Author:
Not specified
Target audience:
Environmental professionals, policymakers, water quality regulators
Effective period:
June 8, 2006, and subsequent revisions
Approval date:
June 8, 2006
Revision date:
June 7, 2012, and later revisions
Context:
This document presents the revision of the Total Maximum Daily Load (TMDL) for bacterial indicator densities in water bodies in the Los Angeles region, with specific provisions for different water types and recreation uses.
Year:
Not specified
Region / City:
Not specified
Subject:
Bacterial meningitis diagnosis
Document type:
Laboratory protocol / Standard operating procedure
Institution:
Not specified
Target audience:
Laboratory personnel / medical staff
Specimen type:
Cerebrospinal fluid
Methods included:
Cell counts, macroscopic examination, Gram staining, Giemsa staining, India ink staining
Applicable age groups:
Neonates, infants, children, adults, immunocompromised
Pathogens covered:
Group B Streptococci, E. coli, Listeria monocytogenes, Haemophilus influenzae type B, Neisseria meningitidis, Streptococcus pneumoniae, Cryptococcus neoformans, Mycobacterium tuberculosis, Streptococcus suis
Safety precautions:
Class II biosafety cabinet use, aseptic handling
Reference tables/appendices:
Appendix 1 (normal CSF cell counts), Table 1 (organism identification)
Laboratory equipment:
Fuchs-Rosenthal counting chamber, centrifuge, microscope
Year:
2023
Region / city:
Seattle, WA, USA
Topic:
Microbiology, Epidemiology, Infectious Diseases
Document type:
Research Article
Organization / institution:
University of Washington, Fred Hutchinson Cancer Research Center
Author:
Kayla A. Carter, Molly D. Fischer, Mariya I. Petrova, Jennifer E. Balkus
Target audience:
Researchers, Public Health Professionals
Period of validity:
Not specified
Date of approval:
Not specified
Date of changes:
Not specified