Product Description
(Ribonucleic acid) Model showing R.N.A. molecule D.N.A. Template molecule of chromosome, role of messanger and transfer R.N.A. colour key and structural formula. Complete model arrange on board. Accurate and Detailed RepresentationThe model provides a precise depiction of the RNA structure, highlighting all major components with vivid color coding. Its double-helix backbone and clearly defined base pairs promote a comprehensive understanding of RNA for students and professionals alike.
Ready-to-Use and DurableDelivered pre-assembled on a robust stand, this model is designed for immediate use. It's manufactured from high-quality PVC, rubber, and acrylic, ensuring that it withstands frequent handling during educational sessions without compromising its accuracy or physical integrity.
Educational VersatilityPerfectly suited for various educational environments, this RNA model is an excellent resource for biology classes in schools, advanced lectures at colleges, and demonstrations in laboratory or hospital settings. Its clear 3D structure supports both teaching and self-study.
FAQ's of Model Of R.N.A:
Q: How is the RNA model constructed for educational use?
A: The RNA model is made from high-quality PVC and rubber, with color-coded bases and backbone, mounted on a durable stand. It features approximately 60 distinct pieces, each representing a component of the RNA structure, facilitating easy identification and understanding.
Q: What makes this RNA model suitable for classrooms and labs?
A: Its sturdy design, clear color coding, and accurate representation of RNA components make it ideal for demonstrations and hands-on learning in schools, colleges, and laboratory environments.
Q: When and where can this RNA model be utilized?
A: This model is suitable for year-round use in educational institutions, laboratories, and hospital training environments where understanding RNA structure is necessary.
Q: What is the process for maintaining the RNA model?
A: To maintain the model, simply dust it with a dry cloth and avoid exposure to direct sunlight to preserve its color and material integrity.
Q: How does the fixed design benefit demonstrations?
A: The non-rotatable, stable base ensures the model remains secure during demonstrations, allowing users to focus on the structural details and learning objectives without disruption.
Q: What are the key benefits of using a 3D physical RNA model?
A: A 3D model enables easier visualization and interaction, helping students grasp complex concepts such as base pairing and helix structure more effectively than with flat diagrams.