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Learning Objectives

At the end of this simulation, you will be able to:
  • Describe the underlying principles of various ELISA techniques.
  • Utilize sandwich ELISA for the quantification of protein samples.
  • Evaluate the standard curve obtained from an ELISA experiment.
  • Comprehend the roles of reagents and equipment employed in ELISA.
  • Outline the fundamental steps for diagnosing and resolving issues that may arise during an ELISA procedure.

How do virtual labs work?

Enhance students' involvement in science by immersing them in interactive learning scenarios. Create simulations for experiments, provide hands-on training in laboratory techniques, and convey theoretical concepts through captivating visual experiences to improve their overall long-term learning outcomes.

  • Access web-based simulations that are compatible with laptops, Chromebooks, tablets, and iPads, eliminating the need for software installation.
  • Incorporate a teacher dashboard for automated grading and monitoring of student progress.
  • Utilize embedded quizzes to assist students in mastering scientific content.
  • Comprehensive repository of educational materials, including learning resources, lab reports, videos, theory pages, graphics, and more.

Relevant Course Packages All Course Packages

Virtual Lab: Exploring the Electron Transport Chain in Cellular Respiration

Explore the inner workings of a mitochondrion to gain a comprehensive understanding of the electron transport chain (ETC) and then share your discoveries with the basketball team so they can also benefit from this knowledge!

Virtual Lab: Organic Chemistry Reactivity Rules

Mastering the fundamental principles of organic chemistry reactions allows you to ascertain the result of a chemical interaction between two organic compounds.

Virtual Lab: Identifying Unknown Bacteria to Assist in Preventing an Epidemic Affecting Baby Kuppelfangs

Embark on a journey to the exoplanet Astakos IV, where the Kuppelfang population faces a bacterial infection crisis. Employ staining techniques, differential media, and biochemical tests to identify the responsible bacteria and help save the Kuppelfangs from extinction through timely treatment.

Virtual Lab: Protein Separation Based on Molecular Weight Using SDS-PAGE

Explore every aspect of SDS-PAGE, starting from the choice of gel and sample preparation, through chamber assembly, and delving into the intricate processes that occur when the current is activated. This procedure enables the separation of proteins based solely on their molecular weight, moving us closer to the identification of the target protein.

Virtual Lab - Practical Uses of Buoyancy: Exploring Floatation

Join iXGenie at the lake and discover the factors that determine whether an object will float or sink. Explore how the density of a liquid plays a crucial role in an objects buoyancy and the proportion of a floating object submerged beneath the surface.

Virtual Lab: Exploring States of Matter

Immerse yourself in water at the molecular level to gain insights into how molecules behave in the three distinct states of matter: solid, liquid, and gas. Explore the bonding interactions among molecules throughout various phase transitions.

LMS Integration

imaginX seamlessly integrates with leading LMS (Learning Management Systems), enabling educators to track student performance and allowing students to maintain their work records. It is compatible with popular platforms such as Canvas, Blackboard, Moodle, Google Classroom, Schoology, Sakai, Brightspace/D2L, and can also be used independently of an LMS.

Platform Features

Unlimited users faculty & students
Unlimited users faculty & students
Simulations
Simulations
Pedagogy Experts
Pedagogy Experts
Gamification
Gamification
Multiplayer
Multiplayer
Networking
Networking
Assignments
Assignments
Auto Grading
Auto Grading
AI
AI
LMS Integartion
LMS Integartion
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