CBSE Class 9 Science Syllabus 2026-27
CBSE Class 9 Science Session 2026-27. This syllabus integrates Biology, Chemistry, Physics, and Earth Science to build a comprehensive understanding of the natural and physical world. It focuses on developing scientific inquiry skills, fostering a scientific temper, and encouraging creativity. Students will delve into the atomic structure of matter, chemical reactions, and the properties of various substances. The curriculum also covers fundamental physical concepts like motion, gravitation, optics, electricity, work, energy, and sound, alongside the interconnected systems of Earth. The biological component explores life from the cellular level, covering life processes, heredity, variation, and evolution. A key emphasis is placed on the relationships between living organisms and their environment, as well as the connections between scientific knowledge and other subjects like social sciences and ethics.
Quick info
| Board | CBSE |
|---|---|
| Class | 9 |
| Subject | Science |
| Session | 2026-27 |
| Language | English |
| Type | Syllabus |
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SCIENCE Subject Code – 086 Classes IX (2026-27)
Introduction
Science is the study of the natural and physical world around us through a systematic process of observing, questioning, forming hypotheses, testing hypotheses through experiment, analysing evidence, and continuously revising our knowledge. It develops essential skills like curiosity, creativity, evidence-based thinking, and sound decision-making that help us lead rational and fulfilling lives. Learning Science provides valid knowledge about the world, and builds scientific values and capacities. It draws knowledge from Biology, Chemistry, Physics, Earth Science, Mathematics, Computational Sciences, and sometimes Social Science and Vocational Education to offer an interdisciplinary understanding of the role of science.
Science Education helps students to develop an understanding of the natural and physical world through systematic inquiry. Learning Science also develops important capacities, such as observation, questioning, analysis, inference, etc. This helps individuals to meaningfully participate in society and the world of work with a scientific temper, critical and evidence- based thinking, asking relevant questions, analysing practices and norms, and acting for necessary change.
Science Education aims to achieve:
Scientific understanding of the natural and physical world;
Capacities for scientific inquiry;
<math>\blacktriangle</math> Understanding the evolution of scientific knowledge;
<math>\blacktriangle</math> Interdisciplinary understanding between Science and other curricular areas;
Understanding of the relationship between Science, Technology, and Society;
Scientific temper, and
Creativity.
Together, the NEP 2020 and NCF-SE 2023 envision science classrooms that encourage curiosity, creativity, collaboration and connection with the real world, ultimately nurturing not just future scientists, but responsible, informed and critically thinking citizens.
Learning standards (Curricular Goals and Competencies) describe what students should know, understand, and be able to do in Science. In Grades 9 – 10, Science is taught using an integrated approach that combines Biology, Chemistry, Physics, and Earth Science. This helps students understand the connections between disciplines and relate Science to their observations and experiences. At this stage, scientific inquiry skills are developed alongside conceptual understanding, with content selected both for disciplinary relevance and real-life usefulness. Students must deepen their understanding of the world, explore scientific questions through discussion and experimentation, and communicate their learning in various ways. It is important to note that the Curricular Goals are interdependent and not separate.
Learning standards are organised into four levels: broad curricular aims define the overall objectives for Science Learning by the end of each schooling stage; more specific Curricular Goals guide the design of the science curriculum for each stage and topic; Competencies
represent measurable scientific skills and knowledge-based on these goals, assessed at the end of each stage; and detailed Learning Outcomes (LOs) are granular milestones of learning and usually progress in a sequence leading to the attainment of a competency. These LOs enable teachers to plan their content, pedagogy, and assessments towards achieving specific competencies.
Curricular Goals (CGs) and Competencies (Cs)
CG 1 – Explores the world of matter, its interactions, and properties at the atomic level
C 1.1 – Describes classification of elements in the Periodic Table, and explains how compounds (including carbon compounds) are formed based on the atomic structure (Bohr's model) and properties (valency).
C 1.2 – Investigates the nature and properties of chemical substances (distillation, crystallisation, chromatography, centrifugation, types and properties of mixtures, solutions, colloids, and suspensions)
C 1.3 – Describes and represents chemical interactions and changes using symbols and chemical equations (acid and base, metal and non-metal, reversible and irreversible)
CG 2 – Explores the physical world around them, and understands scientific principles and laws based on observations and analysis
C 2.1 – Applies Newton's laws to explain the effect of forces (change in state of motion — displacement and direction, velocity and acceleration, uniform circular motion, acceleration due to gravity) and analyses graphical and mathematical representations of motion in one dimension
C 2.2 – Explains the relationship between mass and weight using universal law of gravitation, and connect it to the laws of motion
C 2.3 – Manipulates the position of object and properties of lenses (focus, centre of curvature) to observe image characteristics and correspondence with a ray diagram, and extends this understanding to a combination of lenses (telescope, microscope)
C 2.4 – Manipulates and analyses different characteristics of the circuit (current, voltage, resistance) and mathematises their relationship (Ohm's law), and applies it to everyday usage (electricity bill, short circuit, safety measures)
C 2.5 - Defines work in scientific terms, and represents the relationship between potential and kinetic energy (conservation of energy) in mathematical expressions
C 2.6 – Demonstrates the principle of mechanical advantage by constructing simple machines (system of levers and pulleys)
C 2.7 – Describes the origin and properties of sound (wavelength, frequency, amplitude) and differences in what we hear as it propagates through different instruments
C 2.8 – *Explores interconnected systems and phenomena that support and affect life on Earth (hydrosphere, biosphere, atmosphere, geosphere, cryosphere and their
interrelationships, earth processes, hazards, etc.)
*Additional Competency for Earth Science
CG 3 – Explores the structure and function of the living world at the cellular level
C 3.1 – Explains the role of cellular components (nucleus, mitochondria, endoplasmic reticulum, vacuoles, chloroplast, cell wall), including the semi-permeability of cell membrane in making cell the structural basis of living organisms and functional basis of life processes
C 3.2 - Analyses similarities and differences in the life processes involved in nutrition (photosynthesis in plants; absorption of nutrients in fungi; digestion in animals), transport (transport of water in plants; circulation in animals), exchange of materials (respiration and excretion), and reproduction
C 3.3 – Describes the mechanisms of heredity (in terms of DNA, genes, chromosomes) and variation (as changes in the sequence of DNA)
CG 4 – Explores interconnectedness between organisms and their environment
C 4.1 – Applies the knowledge of cellular diversity in organisms along with the ecological role organisms play (autotrophic or heterotrophic nutrition) to classify them into five kingdoms
C 4.2 – Illustrates different levels of organisations of living organisms (from molecules to organisms)
C 4.3 – Analyses different levels of biological organisation from organisms to ecosystems and biomes along with interactions that take place at each level
C 4.4 – Analyses patterns of inheritance of traits in terms of Mendel's laws and its consequences at a population level (using models and/or simulations)
C 4.5 – Analyses evidences of biological evolution demonstrating the consequences of the process of natural selection in terms of changes — in allele frequency in population, structure, and function of organisms
CG 5 – Draws linkages between scientific knowledge and knowledge across other curricular areas
C 5.1 – Explores how literature and arts have influenced Science
C 5.2 – Examines a case study related to the use of Science in human life from the perspective of Social Sciences and Ethics (for example, Marie Curie, Jenner, treatment of patients with mental illnesses, the story of the atomic bomb, green revolution and GMOs, conservation of biodiversity)
C 5.3 – Applies scientific principles to explain phenomena in other subjects (sound pitch, octave, and amplitude in music; use of muscles in dance form and sports)
CG 6 – Understands and appreciates the contribution of India through history, and the present time to the overall field of Science, including the disciplines that constitute it
C 6.1 – Knows and explains the significant contributions of India to all matters (concepts, explanations, methods) that are studied within the curriculum in an integrated manner
CG 7 – Develops awareness of the most current discoveries, ideas, and frontiers in all areas of scientific knowledge in order to appreciate that Science is ever evolving, and that there are still many unanswered questions
C 7.1 – States concepts that represent the most current understanding of the matter being studied, ranging from mere familiarity to conceptual understanding of the matter as appropriate to the developmental stage of the students
C 7.2 – States questions related to matters in the curriculum for which current scientific understanding is well-recognised
CG 8 – Explores the nature of Science by doing Science
C 8.1 – Develops accurate and appropriate models (including geometric, mathematical, graphical) to represent real-life events and phenomena using scientific principles, and use these models to manipulate variables and predict results
C 8.2 – Designs and implements a plan for scientific inquiry (formulates hypotheses, makes predictions, identifies variables, accurately uses scientific instruments, represents data— primary and secondary — in multiple modes, draws inferences based on data, and understanding of scientific concepts, theories, laws and principles, and communicates findings using scientific terminology)
COURSE OUTLINE
CLASS IX (2026-27)
Cell
No. of Periods: 12
Key Concepts Learning Outcomes
Discovery of cell C-3.1 • Differentiate between plant and animal cell,
Plant and animal cells prokaryote and eukaryote Prokaryotic and Describe the structural and functional features of
eukaryotic cells cells Cell as a structural and Explain the role of cells in the structure and
functional unit of life; functions of organisms structure and function of Explain activities inside the cell and its interactions
key organelles (nucleus, with the environment mitochondria, Demonstrate osmosis in cells chloroplast, endoplasmic Prepare slides to observe cell structure reticulum, vacuoles, plasma membrane, cell C-3.2 • Differentiate between diffusion and osmosis wall) Permeability of cell C-3.3 Explain the role of cell division mitosis and meiosis
membranes in creating similarities and variations Cellular division and C-4.2 • Identify and describe the role of biomolecules in the
cancer structure and function of cell Recent advancement in cell biology C-5.2 • Cite case study related to the use of science in
human life, for example, Leigh Syndrome and
mitochondrial dysfunction C-5.3 Apply learning of a structure and function of
muscles cells or joints in dance form and/or sports
C-6.1 Discuss significant contributions of India, for
example, Professor Arun Kumar Sharma for his
work on chromosomes and methods for its studies
C-7.1 Recognise that the cell is a structural unit of life
and functional unit of life processes C-7.2 Pose questions, such as — Can we create artificial
cell which behaves exactly like a natural living cell?
Frequently asked questions
What is the main approach to teaching Science in Class 9 for 2026-27?
Science in Class 9 for 2026-27 is taught using an integrated approach that combines Biology, Chemistry, Physics, and Earth Science.
What are the key aims of Science Education according to the syllabus?
The aims include scientific understanding of the natural and physical world, capacities for scientific inquiry, understanding the evolution of scientific knowledge, interdisciplinary understanding, understanding the relationship between Science, Technology, and Society, scientific temper, and creativity.
What kind of skills does learning Science develop?
Learning Science develops essential skills like curiosity, creativity, evidence-based thinking, sound decision-making, observation, questioning, analysis, and inference.
What specific areas are covered under the 'Matter' curricular goal?
This goal covers the classification of elements in the Periodic Table, formation of compounds based on atomic structure and properties, and the nature and properties of chemical substances like mixtures and solutions.
What topics are included in the 'Physical world' curricular goal?
This goal includes Newton's laws of motion, universal law of gravitation, optics (lenses), electricity (Ohm's law), work, energy, sound, and simple machines.
How does the syllabus address the living world?
It covers the structure and function of living organisms at the cellular level, life processes, heredity, variation, biological evolution, and the interconnectedness of organisms with their environment.
Does the syllabus include connections to other subjects?
Yes, it aims to draw linkages between scientific knowledge and knowledge across other curricular areas, including exploring how literature and arts have influenced Science, and examining case studies related to the use of Science in human life from social science and ethics perspectives.
CBSE Class 9 Science syllabus 2026-27. Last updated 10 Aug 2026.