YourStateStandards

West Virginia K–6 science standards

West Virginia writes its own science standards. They are published as West Virginia College- and Career-Readiness Standards for Science, adopted 2022 and are not a version of a national framework. 110 of 111 are matched to a national standard.

Framework
West Virginia College- and Career-Readiness Standards for Science
Adopted
2022
Source last checked
August 2, 2026
Read the official document

111 standards, kindergarten through 6th grade

  • S.K.11K

    Ask questions, make observations, and gather information about a situation people want to change to define a simple problem that can be solved through the development of a new or improved object or tool.

  • S.K.12K

    Develop a simple sketch, drawing, or physical model to illustrate how the shape of an object helps it function as needed to solve a given problem.

  • S.K.13K

    Analyze data from tests of two objects designed to solve the same problem to compare the strengths and weaknesses of how each performs.

  • S.K.1K

    Plan and conduct an investigation to compare the effects of different strengths or different directions of pushes and pulls on the motion of an object.

  • S.K.2K

    Analyze data to determine if a design solution works as intended to change the speed or direction of an object with a push or a pull.

  • S.K.3K

    Use observations to describe patterns of what plants and animals (including humans) need to survive.

  • S.K.4K

    Construct an argument supported by evidence for how plants and animals (including humans) can change the environment to meet their needs.

  • S.K.5K

    Use a model to represent the relationship between the needs of different plants or animals (including humans) and the places they live.

  • S.K.6K

    Communicate solutions that will reduce the impact of humans on the land, water, air, and/or other living things in the local environment.

  • S.K.7K

    Use and share observations of local weather conditions to describe patterns over time.

  • S.K.8K

    Ask questions to obtain information about the purpose of weather forecasting to prepare for, and respond to, severe weather.

  • S.K.9K

    Make observations to determine the effect of sunlight on Earth's surface.

  • S.K.10K

    Use tools and materials to design and build a structure that will reduce the warming effect of sunlight on an area.

  • S.1.101

    Ask questions, make observations, and gather information about a situation people want to change to define a simple problem that can be solved through the development of a new or improved object or tool.

  • S.1.111

    Develop a simple sketch, drawing, or physical model to illustrate how the shape of an object helps it function as needed to solve a given problem.

  • S.1.121

    Analyze data from tests of two objects designed to solve the same problem to compare the strengths and weaknesses of how each performs.

  • S.1.11

    Plan and conduct investigations to provide evidence that vibrating materials can make sound and that sound can make materials vibrate.

  • S.1.21

    Make observations to construct an evidence-based account that objects can be seen only when illuminated.

  • S.1.31

    Plan and conduct an investigation to determine the effect of placing objects made with different materials in the path of a beam of light.

  • S.1.41

    Use tools and materials to design and build a device that uses light or sound to solve the problem of communicating over a distance.

  • S.1.51

    Read texts and use media to determine patterns in behavior of parents and offspring that help offspring survive.

  • S.1.61

    Make observations to construct an evidence-based account that young plants and animals are like, but not exactly like, their parents.

  • S.1.71

    Use materials to design a solution to a human problem by mimicking how plants and/or animals use their external parts to help them survive, grow, and meet their needs.

  • S.1.81

    Use observations of the sun, moon, and stars to describe patterns that can be predicted.

  • S.1.91

    Make observations at different times of year to relate the amount of daylight to the time of year.

  • S.2.122

    Ask questions, make observations, and gather information about a situation people want to change to define a simple problem that can be solved through the development of a new or improved object or tool.

  • S.2.132

    Develop a simple sketch, drawing, or physical model to illustrate how the shape of an object helps it function as needed to solve a given problem.

  • S.2.142

    Analyze data from tests of two objects designed to solve the same problem to compare the strengths and weaknesses of how each performs.

  • S.2.12

    Plan and conduct an investigation to describe and classify different kinds of materials by their observable properties.

  • S.2.22

    Analyze data obtained from testing different materials to determine which materials have the properties that are best suited for an intended purpose.

  • S.2.32

    Make observations to construct an evidence-based account of how an object made of a small set of pieces can be disassembled and made into a new object.

  • S.2.42

    Construct an argument with evidence that some changes caused by heating or cooling can be reversed and some cannot.

  • S.2.52

    Plan and conduct an investigation to determine if plants need sunlight and water to grow.

  • S.2.62

    Develop a simple model that mimics the function of an animal in dispersing seeds or pollinating plants.

  • S.2.72

    Make observations of plants and animals to compare the diversity of life in different habitats.

  • S.2.82

    Use information from several sources to provide evidence that Earth events can occur quickly or slowly.

  • S.2.92

    Compare multiple solutions designed to slow or prevent wind or water from changing the shape of the land.

  • S.2.102

    Develop a model to represent the shapes and kinds of land and bodies of water in an area.

  • S.2.112

    Obtain information to identify where water is found on Earth and that it can be solid or liquid.

  • S.3.163

    Define a simple design problem reflecting a need or a want that includes specified criteria for success and constraints on materials, time, or cost.

  • S.3.173

    Generate and compare multiple possible solutions to a problem based on how well each is likely to meet the criteria and constraints of the problem.

  • S.3.183

    Plan and carry out fair tests in which variables are controlled and failure points are considered to identify aspects of a model or prototype that can be improved.

  • S.3.13

    Plan and conduct an investigation to provide evidence of the effects of balanced and unbalanced forces on the motion of an object.

  • S.3.23

    Make observations and/or measurements of an object's motion to provide evidence that a pattern can be used to predict future motion.

  • S.3.33

    Ask questions to determine cause and effect relationships of electric or magnetic interactions between two objects not in contact with each other.

  • S.3.43

    Define a simple design problem that can be solved by applying scientific ideas about magnets.

  • S.3.53

    Support an argument that the gravitational force exerted by Earth on objects is directed toward the center of the Earth.

  • S.3.63

    Construct an argument that some animals form groups that help members survive.

  • S.3.73

    Construct an argument with evidence that in a particular habitat some organisms can survive well, some survive less well, and some cannot survive at all.

  • S.3.83

    Make a claim about the merit of a solution to a problem caused when the environment changes and the types of plants and animals that live there may change.

  • S.3.93

    Develop models to describe that organisms have unique and diverse life cycles but all have in common birth, growth, reproduction, and death.

  • S.3.103

    Analyze and interpret data to provide evidence that plants and animals have traits inherited from parents and that variation of these traits exists in a group of similar organisms.

  • S.3.113

    Use evidence to support the explanation that traits can be influenced by the environment.

  • S.3.123

    Use evidence to construct an explanation for how the variations in characteristics among individuals of the same species may provide advantages in surviving, finding mates, and reproducing.

  • S.3.133

    Represent data in tables and graphical displays to describe typical weather conditions expected during a particular season.

  • S.3.143

    Obtain and combine information to describe climates in different regions of the world.

  • S.3.153

    Make a claim about the merit of a design solution that reduces the impacts of a weather-related hazard.

  • S.4.144

    Define a simple design problem reflecting a need or a want that includes specified criteria for success and constraints on materials, time, or cost.

  • S.4.154

    Generate and compare multiple possible solutions to a problem based on how well each is likely to meet the criteria and constraints of the problem.

  • S.4.164

    Plan and carry out fair tests in which variables are controlled and failure points are considered to identify aspects of a model or prototype that can be improved.

  • S.4.14

    Use evidence to construct an explanation relating the speed of an object to the energy of that object.

  • S.4.24

    Make observations to provide evidence that energy can be transferred from place to place by sound, light, heat, and electric currents.

  • S.4.34

    Ask questions and predict outcomes about the changes in energy that occur when objects collide.

  • S.4.44

    Apply scientific ideas to design, test, and refine a device that converts energy from one form to another.

  • S.4.54

    Develop a model of waves to describe patterns in terms of amplitude and wavelength and that waves can cause objects to move.

  • S.4.64

    Generate and compare multiple solutions that use patterns to transfer information.

  • S.4.74

    Develop a model to describe that light reflecting from objects and entering the eye allows objects to be seen.

  • S.4.84

    Construct an argument that plants and animals have internal and external structures that function to support survival, growth, behavior, and reproduction.

  • S.4.94

    Use a model to describe that animals receive different types of information through their senses, process the information in their brain, and respond to the information in different ways.

  • S.4.104

    Identify evidence from patterns in rock formations and fossils in rock layers to support an explanation for changes in a landscape over time.

  • S.4.114

    Analyze and interpret data from fossils to provide evidence of the organisms and the environments in which they lived long ago.

  • S.4.124

    Make observations and/or measurements to provide evidence of the effects of weathering or the rate of erosion by water, ice, wind, or vegetation.

  • S.4.134

    Analyze and interpret data from maps to describe patterns of Earth's geological features.

  • S.5.65

    Use models to describe that energy in animals' food (used for body repair, growth, motion, and maintenance of body warmth) originated as energy from the sun.

  • S.5.95

    Obtain and combine information about ways individual communities use science ideas to protect the Earth's resources and environment.

  • S.5.105

    Develop a model using an example to describe ways the geosphere, biosphere, hydrosphere, and/or atmosphere interact.

  • S.5.115

    Obtain and combine information to describe that energy and fuels are derived from natural resources and their uses affect the environment.

  • S.5.135

    Support an argument that differences in the apparent brightness of the sun compared to other stars is due to their relative distances from Earth.

  • S.5.145

    Represent data in graphical displays to reveal patterns of daily changes in length and direction of shadows, day and night, and the seasonal appearance of some stars in the night sky.

  • S.5.155

    Define a simple design problem reflecting a need or a want that includes specified criteria for success and constraints on materials, time, or cost.

  • S.5.165

    Generate and compare multiple possible solutions to a problem based on how well each is likely to meet the criteria and constraints of the problem.

  • S.5.175

    Plan and carry out fair tests in which variables are controlled and failure points are considered to identify aspects of a model or prototype that can be improved.

  • S.5.15

    Make observations and measurements to identify materials based on their properties.

  • S.5.25

    Develop a model to describe that matter is made of particles too small to be seen.

  • S.5.35

    Measure and graph quantities to provide evidence that regardless of the type of change that occurs when heating, cooling, or mixing substances, the total weight of matter is conserved.

  • S.5.45

    Conduct an investigation to determine whether the mixing of two or more substances results in new substances.

  • S.5.55

    Support an argument that plants get the materials they need for growth chiefly from air and water.

  • S.5.75

    Develop a model to describe the movement of matter among plants, animals, decomposers, and the environment.

  • S.5.85

    Describe and graph the amounts and percentages of water and fresh water in various reservoirs to provide evidence about the distribution of water on Earth.

  • S.5.125

    Generate and compare multiple solutions to reduce the impacts of natural Earth processes on the human population.

  • S.6.206

    Define the criteria and constraints of a design problem with sufficient precision to ensure a successful solution.

  • S.6.216

    Analyze data from tests to determine similarities and differences among several design solutions to identify the best characteristics of each.

  • S.6.16

    Construct an explanation that predicts patterns of interactions among organisms across multiple ecosystems.

  • S.6.26

    Evaluate competing design solutions for maintaining biodiversity and ecosystem services.

  • S.6.36

    Construct a scientific explanation based on evidence for the role of photosynthesis in the cycling of matter and flow of energy into and out of organisms.

  • S.6.46

    Develop a model to describe how food is rearranged through chemical reactions forming new molecules that support growth and/or release energy as this matter moves through an organism.

  • S.6.56

    Analyze and interpret data to provide evidence for the effects of resource availability on organisms and populations of organisms in an ecosystem.

  • S.6.66

    Develop a model to describe the cycling of matter and flow of energy among living and nonliving parts of an ecosystem.

  • S.6.76

    Construct an argument supported by empirical evidence that changes to physical or biological components of an ecosystem affect populations.

  • S.6.86

    Develop models to describe the relationship between atoms and molecules.

  • S.6.96

    Utilize the periodic table as an informational tool to identify elements.

  • S.6.106

    Use mathematical representations to describe a simple model for waves that includes how the amplitude of a wave is related to the energy in a wave.

  • S.6.116

    Develop and use a model to describe that waves are reflected, absorbed, or transmitted through various materials.

  • S.6.126

    Integrate qualitative scientific and technical information to support the claim that digitized signals are a more reliable way to encode and transmit information than analog signals.

  • S.6.136

    Develop and use a model of the Earth-sun-moon system to describe the cyclic patterns of lunar phases, eclipses of the sun and moon, and seasons.

  • S.6.146

    Develop and use a model to describe the role of gravity in the motions within galaxies and the solar system.

  • S.6.156

    Analyze and interpret data to determine scale properties of objects in the solar system.

  • S.6.166

    Collect data to provide evidence for how the motions and complex interactions of air masses results in changes in weather conditions.

  • S.6.176

    Develop and use a model to describe how unequal heating and rotation of the Earth cause patterns of atmospheric and oceanic circulation that determine regional climates.

  • S.6.186

    Ask questions to clarify evidence of the factors that have caused the change in global temperatures over the past century.

  • S.6.196

    Analyze and interpret data on natural hazards to forecast future catastrophic events and inform the development of technologies to mitigate their effects.

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