TX Science Standards (Grade 6)

49 standards in this set. Click any domain to expand.

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📌 Earth and space 7 standards
6.9A
Model and illustrate how the tilted Earth revolves
Model and illustrate how the tilted Earth revolves around the Sun, causing changes in seasons.
6.9B
Describe and predict how the positions of the
Describe and predict how the positions of the Earth, Sun, and Moon cause daily, spring, and neap cycles of ocean tides due to gravitational forces.
6.10A
Differentiate between the biosphere, hydrosphere, atmosphere, and geosphere
Differentiate between the biosphere, hydrosphere, atmosphere, and geosphere and identify components of each system.
6.10B
Model and describe the layers of Earth, including
Model and describe the layers of Earth, including the inner core, outer core, mantle, and crust.
6.10C
Describe how metamorphic, igneous, and sedimentary rocks form
Describe how metamorphic, igneous, and sedimentary rocks form and change through geologic processes in the rock cycle.
6.11A
Research and describe why resource management is important
Research and describe why resource management is important in reducing global energy poverty, malnutrition, and air and water pollution.
6.11B
Explain how conservation, increased efficiency, and technology can
Explain how conservation, increased efficiency, and technology can help manage air, water, soil, and energy resources.
📌 Force, motion, and energy 6 standards
6.7A
Identify and explain how forces act on objects
Identify and explain how forces act on objects, including gravity, friction, magnetism, applied forces, and normal forces, using real-world applications.
6.7B
Calculate the net force on an object in
Calculate the net force on an object in a horizontal or vertical direction using diagrams and determine if the forces are balanced or unbalanced.
6.7C
Identify simultaneous force pairs that are equal in
Identify simultaneous force pairs that are equal in magnitude and opposite in direction that result from the interactions between objects using Newton's Third Law of Motion.
6.8A
Compare and contrast gravitational, elastic, and chemical potential
Compare and contrast gravitational, elastic, and chemical potential energies with kinetic energy.
6.8B
Describe how energy is conserved through transfers and
Describe how energy is conserved through transfers and transformations in systems such as electrical circuits, food webs, amusement park rides, or photosynthesis.
6.8C
Explain how energy is transferred through transverse and
Explain how energy is transferred through transverse and longitudinal waves.
📌 Matter and energy 5 standards
6.6A
Compare solids, liquids, and gases in terms of
Compare solids, liquids, and gases in terms of their structure, shape, volume, and kinetic energy of atoms and molecules.
6.6B
Investigate the physical properties of matter to distinguish
Investigate the physical properties of matter to distinguish between pure substances, homogeneous mixtures (solutions), and heterogeneous mixtures.
6.6C
Identify elements on the periodic table as metals
Identify elements on the periodic table as metals, nonmetals, metalloids, and rare Earth elements based on their physical properties and importance to modern life.
6.6D
Compare the density of substances relative to various
Compare the density of substances relative to various fluids.
6.6E
Identify the formation of a new substance by
Identify the formation of a new substance by using the evidence of a possible chemical change, including production of a gas, change in thermal energy, production of a precipitate, and color change.
📌 Organisms and environments 6 standards
6.12A
Investigate how organisms and populations in an ecosystem
Investigate how organisms and populations in an ecosystem depend on and may compete for biotic factors such as food and abiotic factors such as availability of light and water, range of temperatures, or soil composition.
6.12B
Describe and give examples of predatory, competitive, and
Describe and give examples of predatory, competitive, and symbiotic relationships between organisms, including mutualism, parasitism, and commensalism.
6.12C
Describe the hierarchical organization of organism, population, and
Describe the hierarchical organization of organism, population, and community within an ecosystem.
6.13A
Describe the historical development of cell theory and
Describe the historical development of cell theory and explain how organisms are composed of one or more cells, which come from pre-existing cells and are the basic unit of structure and function.
6.13B
Identify and compare the basic characteristics of organisms
Identify and compare the basic characteristics of organisms, including prokaryotic and eukaryotic, unicellular and multicellular, and autotrophic and heterotrophic.
6.13C
Describe how variations within a population can be
Describe how variations within a population can be an advantage or disadvantage to the survival of a population as environments change.
📌 Recurring themes and concepts 7 standards
6.5A
Identify and apply patterns to understand and connect
Identify and apply patterns to understand and connect scientific phenomena or to design solutions.
6.5B
Identify and investigate cause-and-effect relationships to explain scientific
Identify and investigate cause-and-effect relationships to explain scientific phenomena or analyze problems.
6.5C
Analyze how differences in scale, proportion, or quantity
Analyze how differences in scale, proportion, or quantity affect a system's structure or performance.
6.5D
Examine and model the parts of a system
Examine and model the parts of a system and their interdependence in the function of the system.
6.5E
Analyze and explain how energy flows and matter
Analyze and explain how energy flows and matter cycles through systems and how energy and matter are conserved through a variety of systems.
6.5F
Analyze and explain the complementary relationship between the
Analyze and explain the complementary relationship between the structure and function of objects, organisms, and systems.
6.5G
Analyze and explain how factors or conditions impact
Analyze and explain how factors or conditions impact stability and change in objects, organisms, and systems.
📌 Scientific and engineering practices 18 standards
6.1A
Ask questions and define problems based on observations
Ask questions and define problems based on observations or information from text, phenomena, models, or investigations.
6.1B
Use scientific practices to plan and conduct descriptive
Use scientific practices to plan and conduct descriptive, comparative, and experimental investigations and use engineering practices to design solutions to problems.
6.1C
Use appropriate safety equipment and practices during laboratory
Use appropriate safety equipment and practices during laboratory, classroom, and field investigations as outlined in Texas Education Agency-approved safety standards.
6.1D
Use appropriate tools such as graduated cylinders, metric
Use appropriate tools such as graduated cylinders, metric rulers, periodic tables, balances, scales, thermometers, temperature probes, laboratory ware, timing devices, pH indicators, hot plates, models, microscopes, slides, life science models, petri dishes, dissecting kits, magnets, spring scales or force sensors, tools that model wave behavior, satellite images, hand lenses, and lab notebooks or journals.
6.1E
Collect quantitative data using the International System of
Collect quantitative data using the International System of Units (SI) and qualitative data as evidence.
6.1F
Construct appropriate tables, graphs, maps, and charts using
Construct appropriate tables, graphs, maps, and charts using repeated trials and means to organize data.
6.1G
Develop and use models to represent phenomena, systems
Develop and use models to represent phenomena, systems, processes, or solutions to engineering problems.
6.1H
Distinguish between scientific hypotheses, theories, and laws
Distinguish between scientific hypotheses, theories, and laws.
6.2A
Identify advantages and limitations of models such as
Identify advantages and limitations of models such as their size, scale, properties, and materials.
6.2B
Analyze data by identifying any significant descriptive statistical
Analyze data by identifying any significant descriptive statistical features, patterns, sources of error, or limitations.
6.2C
Use mathematical calculations to assess quantitative relationships in
Use mathematical calculations to assess quantitative relationships in data.
6.2D
Evaluate experimental and engineering designs
Evaluate experimental and engineering designs.
6.3A
Develop explanations and propose solutions supported by data
Develop explanations and propose solutions supported by data and models and consistent with scientific ideas, principles, and theories.
6.3B
Communicate explanations and solutions individually and collaboratively in
Communicate explanations and solutions individually and collaboratively in a variety of settings and formats.
6.3C
Engage respectfully in scientific argumentation using applied scientific
Engage respectfully in scientific argumentation using applied scientific explanations and empirical evidence.
6.4A
Relate the impact of past and current research
Relate the impact of past and current research on scientific thought and society, including the process of science, cost-benefit analysis, and contributions of diverse scientists as related to the content.
6.4B
Make informed decisions by evaluating evidence from multiple
Make informed decisions by evaluating evidence from multiple appropriate sources to assess the credibility, accuracy, cost-effectiveness, and methods used.
6.4C
Research and explore resources such as museums, libraries
Research and explore resources such as museums, libraries, professional organizations, private companies, online platforms, and mentors employed in a science, technology, engineering, and mathematics (STEM) field to investigate STEM careers.