№ files_lp_4_process_3_082642
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This document outlines key topics in cell biology, including cell structure, diffusion, osmosis, protein synthesis, and cell division.
Year:
Not specified
Region / City:
Not specified
Subject:
Biology, Cell Biology
Document Type:
Lecture Outline
Institution:
Not specified
Author:
Not specified
Target Audience:
Students of Biology
Period of Effectiveness:
Not specified
Approval Date:
Not specified
Date of Changes:
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:
2018
Region / City:
Syracuse, NY
Subject:
Reverse Osmosis Water Purification System for Veterans Affairs
Document Type:
Solicitation
Agency:
Department of Veterans Affairs
Target Audience:
Small Business Suppliers
Period of Validity:
30 days after award
Approval Date:
06-12-2018
Modification Date:
N/A
Type of document:
Laboratory handout
Subject:
Cell biology
Educational level:
Introductory college biology
Learning objectives:
Use of light microscope; identification of cell structures; examination of eukaryotic multicellular cells; demonstration of osmosis in plant cells; interpretation of the animated short film The Inner Life of the Cell
Topics:
Prokaryotic and eukaryotic cells; microscopy; staining techniques; multicellularity; osmosis
Activities:
Microscope practice with prepared slides; simple staining of human cheek cells; sketching and labeling of observed specimens
Organisms mentioned:
Bacteria; Archaea; Protists; Fungi; Plants; Animals; Humans
Materials:
Compound light microscope; prepared slides; toluidine blue stain; toothpicks; coverslips
Assessment requirements:
Labeled biological sketches with total magnification indicated
Note:
Year
Topic:
Cell biology, osmosis
Document type:
Educational lab procedure
Target audience:
Students, educators
Year:
N/A
Region / City:
N/A
Topic:
Osmosis, Plant Biology
Document Type:
Scientific Experiment
Author:
N/A
Target Audience:
N/A
Period of Action:
N/A
Approval Date:
N/A
Date of Changes:
N/A
Note:
Year
Subject:
Biology
Document type:
Examination paper
Target audience:
Students
Duration:
1 hour
Experiment details:
Investigating osmosis in potato tissue
Year:
1970s
Region / City:
Middletown, DE, USA
Subject:
Plant physiology, diffusion, osmosis
Document Type:
Laboratory report
Institution:
Appoquinimink High School
Author:
Not specified
Target Audience:
High school biology students
Experiment Date:
Not specified
Materials:
Russet potatoes, dialysis tubing, sucrose solutions, glucose Testape®, IKI solution, beakers, peeler, knife, cork borer, metric ruler, balance
Methods:
Observation of mass changes in potato tissue to determine sucrose concentration and water potential
Results:
Percent change in mass, ranking of sucrose solutions, water potential calculated as -7.70 bars, isotonic point approximately 0.305 M
Key Concepts:
Diffusion, osmosis, water potential, isotonic point, solute concentration
Year:
2015
Region / City:
United States
Subject:
Antimicrobial Susceptibility Testing
Document Type:
Template
Organization:
Regional Medical Center
Author:
N/A
Target Audience:
Laboratory personnel involved in AST testing
Effective Period:
N/A
Approval Date:
N/A
Modification Date:
N/A
Year:
2026
Region / Institution:
Multicenter / International Working Group
Subject:
Spinal Cord Injury, Diffusion Tensor Imaging
Document Type:
Imaging Protocol
Target Audience:
Radiologists, MRI Technicians, Neurologists
MRI Field Strength:
1.5 T or 3 T
Acquisition Plane:
Axial
Sequence Type:
Reduced FOV EPI SE DTI
Parameters Included:
TR, TE, FA, FOV, Matrix size, Slices, Voxel size, Phase encoding, Fat suppression, Bandwidth, 2DRF tilt, Echo train length, b-values
Note:
Year
Topic:
Cell biology, osmosis
Document type:
Educational lab procedure
Target audience:
Students, educators
Year:
2026
Region / city:
Cambridge, UK
Document type:
Research study
Organization / institution:
University of Cambridge
Author:
Thais Minett, Li Su, Elijah Mak, Guy Williams, Michael Firbank, Rachael A. Lawson, Alison J. Yarnall, Gordon W. Duncan, Adrian M. Owen, Tien K. Khoo, David J. Brooks, James B. Rowe, Roger A. Barker, David Burn, John T. O’Brien
Target audience:
Researchers, medical professionals, clinicians
Study period:
18 months
Date of approval:
Not provided
Date of changes:
Not provided
Funding sources:
Parkinson’s UK, Lockhart Parkinson’s Disease Research Fund, NIHR, Wellcome Trust, Alzheimer’s Research UK
Supplemental Data:
SupplData 1, Table e-1
Context:
Longitudinal study examining white matter changes in Parkinson’s disease patients using diffusion tensor imaging to predict cognitive and motor decline.
Subject:
Semiconductor physics
Topic:
Excess carrier transport
Type of document:
Scientific theoretical exposition
Physical context:
n-type semiconductor under uniform electric field
Main equation:
Carrier diffusion equation with drift and recombination terms
Key variables:
Δp(x,t), D, μ, E, G, τ, σ
Phenomena analyzed:
Diffusion, recombination, drift, carrier generation
Mathematical methods:
Partial differential equations, Gaussian approximation, exponential solution
Related experiment:
Haynes–Shockley experiment
Field of study:
Solid-state electronics
Field:
Neuroimaging
Topic:
Diffusion tensor imaging metrics and white matter lesions in cerebral small vessel disease
Document type:
Literature review
Data sources:
MEDLINE; EMBASE
Imaging methods:
Diffusion Tensor Imaging (DTI); Magnetic Resonance Imaging (MRI)
Key metrics:
Fractional anisotropy (FA); Mean diffusivity (MD)
Medical conditions discussed:
Cerebral small vessel disease; stroke; Alzheimer’s disease; Parkinson’s disease; aging-related white matter changes
Anatomical focus:
White matter; white matter lesions; normal appearing white matter
Research objective:
Examination of how DTI-derived microstructural measures relate to white matter lesions of presumed vascular origin
Analytical approach:
Targeted database review, synthesis of findings, and critical appraisal of reported associations
Main variables:
WML burden; FA values; MD values; lesion location; disease context
The Can Challenge: Understanding the Best Ways to Incentivise Recycling through a Diffusion Approach
Year:
2024
Region / City:
United Kingdom
Subject:
Recycling behaviour and monetary incentives
Document Type:
Research article
Institution:
University of East Anglia, Norwich City Council, Norfolk County Council
Authors:
Michael Brock, Lucia M. Murgia, Stefania Sitzia, Jiwei Zheng
Target Audience:
Environmental policy makers, researchers in behavioural economics and sustainability
Methodology:
Field experiment
Locations:
Student accommodation, residential housing, workplace offices
Duration:
20 weeks (10-week monitoring phase, 10-week incentive phase)
Key Focus:
Drinks can recycling, aluminium recycling rates
Model Used:
Bass Diffusion Model
Policy Relevance:
Circular economy, waste management strategies
Year:
2018
Region / City:
London Borough of Lewisham
Document Type:
Air Quality Monitoring Report
Prepared by:
AECOM Limited
Author:
James Berman
Reviewed by:
Zadie Astill
Approved by:
Gareth Collins
Project Number:
60194269
Date of Approval:
May 2019
Revision History:
Draft 29/03/2019, Final 30/05/2019
Monitoring Locations:
50 diffusion tube sites
Sampling Period:
January 2018 – December 2018
Analyzed by:
Gradko International Ltd
Target Pollutant:
Nitrogen Dioxide (NO2)
Methodology:
TEA in acetone diffusion tube method
Compliance Standards:
UK and EU NO2 objectives
Year:
2009
Region / City:
EU
Theme:
Fuel Cells, Hydrogen, Research
Document Type:
Guide
Organization / Institution:
Fuel Cells and Hydrogen Joint Undertaking (FCH JU)
Author:
FCH JU Governing Board
Target Audience:
Researchers, Institutions, SMEs, Industry
Period of Validity:
N/A
Approval Date:
15 May 2009
Amendments Date:
N/A
Year:
2023
Region / City:
Japan
Topic:
Pulmonary disease, stem cells, regenerative medicine
Document Type:
Research article
Organization / Institution:
Nagasaki University, Tokyo University
Author:
Mayumi Iwatake, Tokiko Nagamura-Inoue, Ryoichiro Doi, Yukinori Tanoue, Mitsutoshi Ishii, Hiroshi Yukawa, Tomoshi Tsuchiya
Target Audience:
Researchers, clinicians in regenerative medicine
Period of Validity:
N/A
Approval Date:
N/A
Date of Changes:
N/A
Cell culture:
Human umbilical cord mesenchymal stem cells (UC-MSCs)
Animal model:
C57BL/6 mice
Ethical compliance:
Nagasaki University Institutional Animal Care and Use Committee
Note:
Approval No. 1807101460-2
Year:
2014
Region / City:
Bethesda MD
Topic:
Blood transfusion, red blood cells, medical procedures
Document Type:
Manual
Organization / Institution:
AABB
Author:
MK Fung (Editor)
Target Audience:
Medical professionals, blood transfusion specialists
Period of Validity:
24 hours after preparation
Approval Date:
September 1, 2014
Date of Revision:
April 11, 2016, August 30, 2016
Procedure Code:
CSP.010, IM.002, IM.004
Related Standards:
Canadian Society for Transfusion Medicine, AABB Technical Manual
Keywords:
Washed red blood cells, transfusion, blood processing, medical procedure, IgA deficient patients
Note:
Contextual Description
Rapid Fabrication of Mesoporous TiO2 thin films by Pulsed Fibre Laser for Dye Sensitized Solar Cells
Year:
2026
Region / city:
Manchester, UK
Theme:
Solar Energy, Materials Science
Document Type:
Research Paper
Organization / Institution:
The University of Manchester
Author:
Aseel Hadi, Mansour Alhabradi, Qian Chen, Hong Liu, Wei Guo, Michele Curioni, Robert Cernik, Zhu Liu
Target Audience:
Researchers in material science and solar energy
Period of validity:
Not specified
Approval Date:
Not specified
Date of Changes:
Not specified
Year:
2026
Region / City:
London
Topic:
Smart Metering, Network Operators, Trust Anchor Cells
Document Type:
Engineering Recommendation
Organization:
Energy Networks Association
Author:
Energy Networks Association
Target Audience:
Energy suppliers, network operators
Effective Period:
Ongoing
Approval Date:
January 2026
Revision Date:
January 2026
Year:
2025
Region / city:
New South Wales
Topic:
Science, Education
Document Type:
Assessment Task
Organ / institution:
NSW Education Standards Authority (NESA)
Author:
NSW Education Standards Authority (NESA)
Target audience:
Teachers, Year 7 students
Period of validity:
February 2025 - ongoing
Approval date:
21 February 2025
Date of revisions:
N/A