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The Scientific Method01:32

The Scientific Method

The scientific method is a detailed, empirical problem-solving process used by biologists and other scientists. This iterative approach involves formulating a question based on observation, developing a testable potential explanation for the observation (called a hypothesis), making and testing predictions based on the hypothesis, and using the findings to create new hypotheses and predictions.Generally, predictions are tested using carefully-designed experiments. Based on the outcome of these...
The Scientific Method02:40

The Scientific Method

Research is what makes the difference between facts and opinions. Facts are observable realities, and opinions are personal judgments, conclusions, or attitudes that may or may not be accurate. In the scientific community, facts can be established only using evidence collected through empirical research.
The Scientific Method03:50

The Scientific Method

Chemistry is an empirical science. Scientists often pose questions to understand the chemistry in everyday life and seek answers to these questions. To achieve this, scientists follow a definitive series of steps that together make up the Scientific Method. This approach involves making observations, asking questions, building a hypothesis, conducting experiments, analyzing results, and forming a conclusion.
Synthetic Biology02:55

Synthetic Biology

Synthetic biology is an interdisciplinary science that involves using principles from disciplines such as engineering, molecular biology, cell biology, and systems biology. It involves remodeling existing organisms from nature or constructing completely new synthetic organisms for applications such as protein or enzyme production, bioremediation, value-added macromolecule production, and the addition of desirable traits to crops, to name a few.
Golden rice
Golden rice is a genetically modified...
Electrochemical Systems01:24

Electrochemical Systems

Electrochemical systems provide a fascinating insight into the dynamic interplay of charged species within various phases. One notable example is the interaction between a membrane permeable to K⁺ ions but not to Cl⁻ ions, separating an aqueous KCl solution from pure water. As K⁺ ions diffuse through the membrane, they generate net charges on each phase, leading to a potential difference between them.Similarly, when a piece of Zn is immersed in an aqueous ZnSO₄ solution, the Zn metal, composed...
Methods to Assess Microbial Communities01:19

Methods to Assess Microbial Communities

Microbial communities, comprising bacteria, archaea, and eukaryotic microorganisms, inhabit diverse ecosystems and play crucial roles in environmental and biological processes. Their diversity is defined by three main parameters: species richness (the number of distinct species), species abundance (the relative quantity of each species), and species evenness (how uniformly individual species are distributed in various locations). These factors together shape the structure and ecological balance...

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Related Experiment Video

Updated: Jul 19, 2026

A Versatile Automated Platform for Micro-scale Cell Stimulation Experiments
12:21

A Versatile Automated Platform for Micro-scale Cell Stimulation Experiments

Published on: August 6, 2013

Method-centered digital communities on protocols.io for fast-paced scientific innovation.

Lori Kindler1, Alexei Stoliartchouk2, Leonid Teytelman2

  • 1Department of Agricultural and Biosystems Engineering, University of Arizona, Tucson, AZ, 85721, USA.

F1000Research
|August 1, 2017
PubMed
Summary

Scientists can now share and discover cutting-edge research methods through virtual communities on protocols.io. This platform enhances collaboration and knowledge dissemination for rapidly evolving scientific fields like virology.

Keywords:
bacteriophagebioinformaticsforummetagenomicsphageprotocolsvirtual communityvirus

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Last Updated: Jul 19, 2026

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Methodology for Establishing a Community-Wide Life Laboratory for Capturing Unobtrusive and Continuous Remote Activity and Health Data
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Area of Science:

  • * Scientific communication and methodology dissemination.
  • * Computational biology and bioinformatics.
  • * Virology and metagenomics.

Background:

  • * Traditional academic publishing limits the rapid dissemination and updating of scientific methods.
  • * Emerging fields like virology face challenges in sharing specialized techniques due to the static nature of current publishing models.
  • * Online social interactions for scientists have not fully addressed the need for dynamic method sharing.

Purpose of the Study:

  • * To develop and demonstrate new capabilities for creating virtual communities on protocols.io.
  • * To facilitate the sharing, feedback, and publication of methods at the forefront of scientific development.
  • * To establish a dedicated virtual community for virology researchers (VERVENet) to address specific field needs.

Main Methods:

  • * Implementation of virtual community features on the open-access platform protocols.io.
  • * Creation of VERVENet, a specialized forum for virology researchers.
  • * Integration of protocol sharing, annotation, optimization, and community discussion functionalities.

Main Results:

  • * Enhanced capabilities for researchers to discuss, share, and optimize protocols within virtual communities.
  • * Facilitation of connections among researchers for knowledge sharing, job postings, and conference announcements.
  • * Improved discovery of current literature and cutting-edge research through personalized recommendations.

Conclusions:

  • * Virtual communities on protocols.io provide a dynamic platform for scientific method dissemination and collaboration.
  • * The VERVENet example demonstrates the successful application of these features in a rapidly advancing field like virology.
  • * The platform enhances researchers' ability to connect, share knowledge, and stay abreast of innovative research.