YourStateStandards

Louisiana K–6 science standards

Louisiana writes its own science standards. They are published as Louisiana Student Standards for Science (2017), adopted 2017 and are not a version of a national framework. Every one is matched to a national standard.

Framework
Louisiana Student Standards for Science (2017)
Adopted
2017
Source last checked
July 25, 2026
Read the official document

91 standards, kindergarten through 6th grade

  • K-PS2-1K

    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.

  • K-PS2-2K

    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.

  • K-PS3-1K

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

  • K-PS3-2K

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

  • K-LS-1-1K

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

  • K-ESS2-1K

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

  • K-ESS2-2K

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

  • K-ESS3-1K

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

  • K-ESS3-2K

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

  • K-ESS3-3K

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

  • 1-PS4-11

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

  • 1-PS4-21

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

  • 1-PS4-31

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

  • 1-PS4-41

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

  • 1-LS1-11

    Use tools and 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.

  • 1-LS1-21

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

  • 1-LS3-11

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

  • 1-ESS1-11

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

  • 1-ESS1-21

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

  • 2-PS1-12

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

  • 2-PS1-22

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

  • 2-PS1-32

    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.

  • 2-PS1-42

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

  • 2-LS2-12

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

  • 2-LS2-22

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

  • 2-LS4-12

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

  • 2-ESS1-12

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

  • 2-ESS2-12

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

  • 2-ESS2-22

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

  • 2-ESS2-32

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

  • 3-PS2-13

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

  • 3-PS2-23

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

  • 3-PS2-33

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

  • 3-PS2-43

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

  • 3-LS1-13

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

  • 3-LS2-13

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

  • 3-LS3-13

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

  • 3-LS3-23

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

  • 3-LS4-13

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

  • 3-LS4-23

    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.

  • 3-LS4-33

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

  • 3-LS4-43

    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.

  • 3-ESS2-13

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

  • 3-ESS2-23

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

  • 3-ESS3-13

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

  • 4-PS3-14

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

  • 4-PS3-24

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

  • 4-PS3-34

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

  • 4-PS3-44

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

  • 4-PS4-14

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

  • 4-PS4-24

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

  • 4-LS1-14

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

  • 4-LS1-24

    Construct an explanation to describe how animals receive different types of information through their senses, process the information in their brains, and respond to the information in different ways.

  • 4-ESS1-14

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

  • 4-ESS2-14

    Plan and conduct investigations on the effects of water, ice, wind, and vegetation on the relative rate of weathering and erosion.

  • 4-ESS2-24

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

  • 4-ESS2-34

    Ask questions that can be investigated and predict reasonable outcomes about how living things affect the physical characteristics of their environment.

  • 4-ESS3-14

    Obtain and combine information to describe that energy and fuels are derived from renewable and non-renewable resources and how their uses affect the environment.

  • 4-ESS3-24

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

  • 5-PS1-15

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

  • 5-PS1-25

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

  • 5-PS1-35

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

  • 5-PS1-45

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

  • 5-PS2-15

    Support an argument that the gravitational force exerted by the Earth is directed down.

  • 5-PS3-15

    Use models to describe that energy in animals’ food (used for body repair, growth, motion, and to maintain body warmth) was once energy from the sun.

  • 5-LS1-15

    Ask questions about how air and water affect the growth of plants.

  • 5-LS2-15

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

  • 5-ESS1-15

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

  • 5-ESS1-25

    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.

  • 5-ESS2-15

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

  • 5-ESS2-25

    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.

  • 5-ESS3-15

    Generate and compare multiple solutions about ways individual communities can use science to protect the Earth’s resources and environment.

  • 6-MS-PS1-16

    Develop models to describe the atomic composition of simple molecules and extended structures.

  • 6-MS-PS2-16

    Apply Newton’s Third Law to design a solution to a problem involving the motion of two colliding objects.

  • 6-MS-PS2-26

    Plan an investigation to provide evidence that the change in an object’s motion depends on the sum of the forces on the object and the mass of the object.

  • 6-MS-PS2-36

    Ask questions about data to determine the factors that affect the strength of electric and magnetic forces.

  • 6-MS-PS2-46

    Construct and present arguments using evidence to support the claim that gravitational interactions are attractive and depend on the masses of interacting objects.

  • 6-MS-PS2-56

    Conduct an investigation and evaluate the experimental design to provide evidence that fields exist between objects exerting forces on each other even though the objects are not in contact.

  • 6-MS-PS3-16

    Construct and interpret graphical displays of data to describe the relationships of kinetic energy to the mass of an object and to the speed of an object.

  • 6-MS-PS3-26

    Develop a model to describe that when the arrangement of objects interacting at a distance changes, different amounts of potential energy are stored in the system.

  • 6-MS-PS4-16

    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 and how the frequency and wavelength change the expression of the wave.

  • 6-MS-PS4-26

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

  • 6-MS-ESS1-16

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

  • 6-MS-ESS1-26

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

  • 6-MS-ESS1-36

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

  • 6-MS-ESS3-46

    Construct an argument supported by evidence for how increases in human population and per-capita consumption of natural resources impact Earth’s systems.

  • 6-MS-LS1-16

    Conduct an investigation to provide evidence that living things are made of cells, either one or many different numbers and types.

  • 6-MS-LS1-26

    Develop and use a model to describe the function of a cell as a whole and ways parts of cells contribute to the function.

  • 6-MS-LS2-16

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

  • 6-MS-LS2-26

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

  • 6-MS-LS2-36

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

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