Virtual Lab: Exploring Varieties of Transporter Proteins in Cell Membrane and Transport Processes
Explore the composition and roles of cellular membranes through the process of launching cargo molecules at a simulated cell.
Our STEM catalog offers course packages designed to enhance the teaching of science, technology, engineering, and mathematics. Each simulation is developed specifically to match your STEM curriculum, providing students with immersive, real-world scenarios to deepen their understanding. With full LMS integration, faculty and students can easily access these simulations and track progress, all within your existing academic systems.
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Explore the composition and roles of cellular membranes through the process of launching cargo molecules at a simulated cell.
Explore the composition and operation of cellular membranes by propelling cargo molecules towards a simulated cell. Employ the knowledge gained in the laboratory to enhance the well-being of artificial cells, which the principal investigator intends to utilize for insulin production.
Join a cell biology research team to explore the potential cancer therapy applications of a toxic compound found in yew trees. Immerse yourself in an animated representation of a human cell and utilize light and fluorescence microscopy to investigate the process of cell division.
Experience the dynamics of a cell culture laboratory firsthand. Acquire proficiency in applying aseptic techniques to safeguard your cell cultures from contamination, and delve into the essentials of maintaining their vitality.
Employ medical assessments to collect data on patients and assess their cardiovascular systems reactions to varying levels of exercise intensity.
Observe three dives undertaken by a Weddell seal in the Antarctic region to determine the duration it can remain submerged while utilizing its stored oxygen reserves.
Have you ever been curious about the nature of starch? Explore the composition of complex carbohydrates and find out how you can conduct tests to detect the presence of these compounds in food samples.
Assist basketball players in comprehending the conversion of dietary nutrients into energy, involving glycolysis, the Krebs cycle, and the electron transport chain. Employ a mouse model to investigate the impact of exercise intensity on oxygen and glucose utilization.
Acquire knowledge about various organ systems, their primary functions, and their locations within body cavities. Apply this acquired knowledge to assist in responding to medical emergencies. Are you able to correlate a patients symptoms with a potentially malfunctioning organ system?
In this virtual laboratory, you will apply your newly acquired understanding of body planes and sections to assist in rehabilitating an injured chimpanzee for its return to the wild.
Exploring a Hypothetical Approach to Identifying Hazardous Group 3 Microorganisms in a Containment Level 3 (Biosafety Level 3, BSL3) Research Laboratory.
Embark on a Quest to Uncover the Metabolic Pathway Responsible for Producing an Antimalarial Compound in an Uncommon Plant. Can You Initiate the Journey Towards Developing a New Antimalarial Medication?
Employ the method of serial dilution to measure the impact of a new antibiotic compound on the growth of bacteria.
Embark on a journey to an Antarctic research station and collaborate with scientist Nicolas to investigate bacteria thriving in melting water. Delve into the essential survival traits of these microorganisms and draw comparisons with bacteria residing in diverse environments.
Assist a microbiologist in creating a pristine culture for the identification of an infection-causing microbe. Employ proper aseptic techniques to prevent sample contamination, prioritize your safety, and minimize unexpected lab incidents, such as fires.
Explore the fundamentals of antibodies, antigens, the ABO blood group system, and the Rhesus factor, and their critical roles in blood transfusions. Next, assist a young couple in assessing the potential risk of Rhesus disease in their upcoming child.