2.1. Skill Education Components
Effective implementation of skill education for all students from classes VI to X will require the following components to be in place.
• Curriculum – The curriculum will be provided by CBSE in alignment with the curriculum/textbook provided by NCERT.
• Teacher Training & Staffing – Teachers need to be identified and/or hired specifically for imparting skill education. These teachers will be trained on pedagogy of skill education, curriculum, practical and technical aspects.
• Time Table – Schools needs to incorporate 110 hrs of Skill Education annually in their time table for classes VI to X.
• Composite Skill Lab (CSL) – The guidelines for the setting up of the Composite Skill Lab is covered in subsequent chapters in this guide.
• Industry Partnership – Skill coordinators of respective schools will facilitate work place exposure initiatives such as industry visits relevant to the skill subject, guest expert sessions in schools and internships, etc.
2.2. About Composite Skill Lab and Expenditure on setting up of CSL
Composite Skill Lab allows a school to efficiently use one lab to teach multiple sectors across classes. The setting up of the CSL may cost about Rs. 3-6 lakhs depending on the skill subjects chosen, size of lab and type of furniture, etc. Schools may need more quantities of tools depending on the number of students in classes VI to X. This costing is only suggestive, and schools may want to invest more in branded equipment or more specialised equipment/furniture, etc.
2.3. Alignment with NEP 2020 & NCF 2023
The concept of Composite Skills Labs aligns with both the National Education Policy (NEP) 2020 and the National Curriculum Framework for School Education (NCF-SE) 2023, fostering practical learning, creativity, and employability.
·
Hands-on exposure to multiple sectors– CSL provides a single, integrated lab space where
students can explore multiple sectors, develop varied skills, and understand
cross-sectoral applications and career pathways.
·
Theory in Action– CSL will bridge classroom knowledge with real life applications through
hands-on activities and projects making students more employable and career
ready.
·
Interdisciplinary Learning– CSL will facilitate cross-sector projects like Agri-tech,
sustainable fashion, entrepreneurship through the combination of digital,
financial and technical skills, to promote holistic learning and employability.
·
21st Century Skill Development– CSL will foster critical thinking, communication,
collaboration and problem-solving, equipping students with essential 21st
century skills as emphasized in NEP 2020.
·
Inclusivity & Accessibility– CSL are designed to promote equitable participation,
ensuring all students gain practical skills and thrive in supportive
environments, as outlined in NEP 2020.
·
Technology Integration– CSL will emphasize the inevitable inclusion of technology
in all sectors and use of videos, apps to aid teaching and learning through a
multimedia approach.
2.4. Setting up a Composite Skill Lab
1.
Identification– Space & Sector Identification
2.
Infrastructure Readiness– Developing Infrastructure
3.
Finalise the lab design– Fixing the layout of the room based on its
dimension
4. Tools
and furniture– Installation of the requisite tools-equipment &
furniture for selected sectors
5.
Ensuring Safety– Enable all safety measures and put up directions and signs
1: Identifying the skill subjects and activities relevant to the local context,
aspirations, industry and resources in and around the school
➢ It is recommended that the Composite Skill Lab should aid teaching skill education in at least three skill subjects as recommended by NCF-SE 2023.
➢ These skill subjects should cover all three forms of ‘work’ (Life forms, Machines & Material and Human Services).
➢ Principles for choosing skill subjects/activities:
▪ Understanding the local context of the school and the relevant skill subjects/activities.
▪ Mapping the availability of resources for teaching the skill subjects – tools, equipment and raw material,
teacher qualification, etc.
▪ Access to local business for work-place exposure – field visits, guest experts from
business/Industries to teach specific skills and also about availability of
work or academic avenues for the specific skill subjects.
2: Identify a room that fits the following pre-requisites
➢ One room of minimum 600 sq. ft space for class VI-XII or two rooms of minimum 400 sq. ft space, one for classes VI-X & one for classes XI-XII (as per Circular No. Skill-75/2024).
➢ The room/s should have enough space for conducting requisite practical work with safety and ease for the batch of 25 – 40 students.
➢ Room/s should be properly ventilated with windows and exhaust fans.
➢ Room/s should have at least two clear walls for peg boards & poster displays.
➢Room/s should have proper electrical wiring, lights and fans.
➢Room/s should have access to water and proper drainage of water from sink (if required).
➢ Room/s should preferably be close to an open area where some activities such as gardening can be done.
3: Fix the layout of the room based on its exact dimensions and available space
➢ It is recommended that the Composite Skill Lab be made modular to create flexibility in both the use of workstations and in the choice of skill subjects that the school chooses to offer.
➢ Schools will pick skill subjects that are relevant to its local context and aspirations of the students and management. These choices may change over time and the modular structure with toolkit-approach will help the lab remain relevant & dynamic.
➢ Lab spaces can be reconfigured to adapt to emerging demands of skills or emerging technologies. Some illustrative/ model/ sample layout plans for Composite Skill. Lab are being shared for reference.
4: Installation of tools-equipment and furniture to complete the lab design Based on the skill subjects chosen, room-size and layout, the infrastructure is to be provided/procured:
A. Flooring of Composite Skill Lab:
a. Material:
Preferably use concrete flooring or rubber mats to withstand vibrations and heavy loads.
b. Durability:
Avoid vitrified tiles or stone flooring as they may not endure prolonged use with heavy tools.
c. Versatility:
Flooring should be adaptable to the needs of different skill subjects.
B. Civil Work:
a. Ventilation: Ensure the lab has windows or vents for proper airflow.
b. Electrical Wiring: Install a combination of 15-ampere and 5-ampere switches and sockets preferably on all walls for operating machines and tools.
c. Proper Lighting and Fans: Ensure that the room has adequate lights and fans to work comfortably and with precision.
d. Sink Area: Provide a sink with a water tap and drainage outlet, if you have selected skill subjects that require flowing water on regular basis for conducting activities/ practical. This is optional for other schools.
C. Walls and Colouring
a. Base Paint: Walls may be painted white or in light shades for a clean and bright look.
b. Accent Colours: Use tiles or contrasting paint up to 3 feet above the floor for durability and visual appeal.
c. Murals: Encourage schools to paint murals or skilling visuals on walls to enhance the learning environment. Bright & warm colours will make the room inviting to students.
d. The lab should provide a positive & fun filled learning environment for the students.
D. Furniture for Composite Skill Lab
a) Working Tables
Working tables form the backbone of the Composite Skill Lab. The following considerations are important:
• Working area should enable working in small groups.
• It should have strong, safe and reliable working platforms so as to have durability.
• Easy maintenance and ensure long-term usability in practical environments.
• If needed, heavy tools should be mounted for ease of use and to avoid accidents.
• The tables should have a sturdy wooden top to withstand wear and tear from tools and materials.
• Some tools may also be needed to be fitted on the top of the tables for effective use.
• The tables should be appropriately sized to accommodate small groups of students working collaboratively. Depending on the
size of the room, tables can be 5ft x 4ft or 6ft x 4ft.
• Ensure that the edges of the tables are smooth and rounded to avoid injuries.
b) Teacher Table:
Provide a table and chair for the use of the teacher/trainer
c)
Storage:
• Since the
lab would have tools and equipment for a variety of skill subjects, it is
important that they are stored safely, as well as accessible easily. Use large
sized cupboards with adjustable shelves ensuring adaptability to various tools
and materials and optimizing space usage.
• Types
of Storage: Use a
mix of cupboards, shelves, and racks to cater to different storage needs.
Consider mobile storage units for flexibility.
• Labelling: Clearly label all storage units and their contents to
facilitate easy access and inventory management, can consider using pictures of
contents as labels.
• It is also
important that tools are not only accessible but readily visible during the
practical work. Hence lower display shelves, peg boards can be used.
d) Tools
Storage – Cupboards and Open Cupboards:
a. Size: Use large-sized cupboards with
adjustable shelves to adapt to different storage needs. Shelves should be
capable of holding heavy
tools and equipment securely. A typical cupboard could
be 6.5ft x 3ft x 2ft.
b.
Design: Include
transparent or labelled doors for easy identification of contents.
c.
Positioning:
Cupboards should be positioned along the walls to optimize floor space. Ensure
they are accessible but not obstructive. Proper placement avoids workspace
congestion and maintains a neat environment.
e)
Containers:
a. Label
containers – Store materials in labelled containers within the cupboards to
enhance organization.
b. Stackable
containers – Maximize space utilization by using stackable containers.
Organized containers prevent mix-ups and ensure efficient use of cupboard space.
f)
Storage unit for teachers – Provide a small cupboard to store stationery, students’ handbooks, and
other teaching materials for the teachers.
g)
Display:
Proper display of tools foster pride in
students’ work and encourage peer learning and inspire innovation and healthy
competition.
h)
Shelves:
Use tall,
adjustable racks or low shelves depending on the space available to store large
equipment or display students work. The lab will be used by students from
classes VI to X and therefore, a mix of heights can serve all students.
i)
Pegboard
• Pegboards may be provided for displaying
tools so that students learn visually and remember over time.
• Tool Display: Install peg boards on
walls to hang tools in an organized and visually appealing manner.
•
Learning Aid: Displaying tools on pegboards helps students familiarize
themselves with tool names and functions.
• Customization:
Arrange tools by category or usage to streamline learning and retrieval.
j)
Projection 36 Inches
·
Equipment:
Install an LED screen or projector for presentations, tutorials, and
demonstrations. Choose a device with high resolution and compatibility with
multiple input formats.
·
Placement:
Position the equipment to ensure visibility for all students. Use a retractable
screen or wall-mounted display for efficient use of space.
·
Connectivity:
Provide HDMI, USB, and wireless connectivity for seamless integration with
laptops and other devices.
·
Maintenance:
Ensure regular cleaning and servicing of the projector or screen to ensure
optimal performance. Keep spare bulbs or parts readily available.
·
Internet Connectivity: Internet connectivity may be provided to enable online
interaction with mentors.
5: Ensure
safety protocols are well laid-out and practised
·
Safety
of the students and teachers is of paramount importance. Therefore, the
Composite Skill Lab should be designed considering all safety protocols.
·
The
Lab should have a dedicated safety corner as well as have safety provisions
embedded in installation.
·
See
Chapter 4 for safety guidelines, roles and expectations, equipment and some
sample posters/illustrations.
