SC.3.N.1.7

Explain that empirical evidence is information, such as observations or measurements, that is used to help validate explanations of natural phenomena.
General Information
Subject Area: Science
Grade: 3
Body of Knowledge: Nature of Science
Idea: Level 3: Strategic Thinking & Complex Reasoning
Big Idea: The Practice of Science -

A: Scientific inquiry is a multifaceted activity; The processes of science include the formulation of scientifically investigable questions, construction of investigations into those questions, the collection of appropriate data, the evaluation of the meaning of those data, and the communication of this evaluation.

B: The processes of science frequently do not correspond to the traditional portrayal of "the scientific method."

C: Scientific argumentation is a necessary part of scientific inquiry and plays an important role in the generation and validation of scientific knowledge.

D: Scientific knowledge is based on observation and inference; it is important to recognize that these are very different things. Not only does science require creativity in its methods and processes, but also in its questions and explanations.

Date Adopted or Revised: 02/08
Date of Last Rating: 05/08
Status: State Board Approved
Assessed: Yes

Related Courses

This benchmark is part of these courses.
5020040: Science - Grade Three (Specifically in versions: 2014 - 2015, 2015 - 2022, 2022 and beyond (current))
7720040: Access Science Grade 3 (Specifically in versions: 2014 - 2015, 2015 - 2018, 2018 - 2023, 2023 and beyond (current))
5020100: STEM Lab Grade 3 (Specifically in versions: 2016 - 2022, 2022 and beyond (current))

Related Access Points

Alternate version of this benchmark for students with significant cognitive disabilities.
SC.3.N.1.In.1: Ask questions, explore, observe, and identify outcomes.
SC.3.N.1.Su.1: Ask literal questions, explore, observe, and share information.
SC.3.N.1.Pa.1: Explore, observe, and recognize common objects in the natural world.

Related Resources

Vetted resources educators can use to teach the concepts and skills in this benchmark.

Lesson Plans

Physical Science Unit: Water Beach Vacation Lesson 1 Observations:

Students learn that making observations is an important aspect of scientific study. Students will review concepts about water by making observations based on different properties and states of matter of water. Students will also review how to measure volume, mass and temperature as they will use these skills throughout the unit.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit of SaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit  https://www.cpalms.org/page818.aspx.

Type: Lesson Plan

Physical Science Unit: Water Beach Vacation Lesson 12 Engineering Design Problem: Beat the Heat Part 3: Testing a Cooler:

In this engineering design problem, students will have the opportunity to apply what they
learned about the changes water undergoes when it changes state through heating and
cooling by designing their own cooler. Students will be asked to use the engineering design
process to design a cooler that will reduce the melting of frozen water in hot temperatures
at the beach. Students will need to design and build their cooler, test their materials, and
justify their design decisions. In this lesson students will test their cooler’s effectiveness in
keeping ice from melting. In subsequent lessons students will improve their designs.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit of SaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx.

 

Type: Lesson Plan

Physical Science Unit: Water Beach Vacation Lesson 13 Engineering Design Problem: Beat the Heat Part 4: Improve a Cooler:

In this engineering design problem, students will have the opportunity to apply what they
learned about the changes water undergoes when it changes state through heating and
cooling by designing their own cooler. Students will be asked to use the engineering design
process to design a cooler that will reduce the melting of frozen water in hot temperatures
at the beach. Students will need to design and build their cooler, test their materials, and
justify their design decisions. In this lesson students will improve their cooler designs.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit of SaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx.

Type: Lesson Plan

Physical Science Unit: Water Beach Vacation Lesson 10 Engineering Design Problem: Beat the Heat Part 1: Design a Cooler:

In this engineering design problem, students will have the opportunity to apply what they learned about the changes water undergoes when it changes state through heating and cooling by designing their own cooler. Students will be asked to use the engineering design process to design a cooler that will reduce the melting of frozen water in hot temperatures at the beach. Students will need to design and build their cooler, test their materials, and justify their design decisions. This lesson is the first of several lessons based on engineering design; in subsequent lessons, students will build and test their designs with ice.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit of SaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx.

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Type: Lesson Plan

Physical Science Unit: Water Beach Vacation Lesson 6 Condensation Experiment:

Students set up an experiment and gather data to investigate the condensation of water.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit of SaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx.

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Type: Lesson Plan

Physical Science Unit: Water Beach Vacation Lesson 5 Evaporation Experiment:

Students set up an experiment and gather data to investigate the evaporation of water.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit ofSaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx.

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Type: Lesson Plan

Physical Science Unit: Water Beach Vacation Lesson 4 Melting Experiment:

Students set up an experiment and gather data to investigate the melting of solid water.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit ofSaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx.

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Type: Lesson Plan

Physical Science Unit: Water Beach Vacation Lesson 2 Changes to Water: Boiling and Freezing:

Students learn water can change state of matter through the addition or removal of heat.
Students will learn the boiling and freezing points of water at standard pressure. Students
will also review how data can be used to create line graphs and these graphs can show
patterns and changes to temperature over time.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit of SaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit  https://www.cpalms.org/page818.aspx.

Type: Lesson Plan

Physical Science Unit: Water Beach Vacation Lesson 11 Engineering Design Problem: Beat the Heat Part 2: Build a Cooler:

In this engineering design problem, students will have the opportunity to apply what they
learned about the changes water undergoes when it changes state through heating and
cooling by designing their own cooler. Students will be asked to use the engineering design
process to design a cooler that will reduce the melting of frozen water in hot temperatures
at the beach. Students will need to design and build their cooler, test their materials, and
justify their design decisions. In this lesson students will build their cooler. In subsequent
lessons students will test their designs with ice and improve their designs.

This is a lesson in the Grade 3 Physical Science Unit on Water. This is a themed unit of SaM-1's adventures while on a Beach Vacation.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx.

 .

Type: Lesson Plan

Physical Science Unit: Properties Lesson 19 Sand Temperature Lab Investigation: Graphing Data for Evidence:

Students will create line graphs from the collected data on the temperature of shaded and non-shaded sand from the previous lesson. Students will use the data and graphs as evidence to make conclusions on if the shading had an impact on sand temperature. This lesson could also be taught using Math instructional time.

This is a lesson in the Grade 3 Physical Science Unit on Properties. This is a themed unit of SaM-1's adventures at the CPALMS Rehabilitation and Conservation Center.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx .

Type: Lesson Plan

Physical Science Unit: Properties Lesson 18 Sand Temperature Lab Investigation: Data Collection:

Students will set up the lab investigation that they planned in the previous lesson and collect data on the temperature of shaded and non-shaded sand. This lesson could also be taught using Math instructional time. 

This is a lesson in the Grade 3 Physical Science Unit on Properties. This is a themed unit of SaM-1's adventures at the CPALMS Rehabilitation and Conservation Center.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx .

Type: Lesson Plan

Thumb Wrestling:

Activity: You will measure thumb length, wrist circumference, and thumb circumference to determine which factor plays a bigger part in determining our class thumb-wrestling champion. You will develop a hypothesis based on physical data collected from classmates. You will then test your hypothesis by conducting a thumb wrestling championship. After making observations and analyzing the results, you will form a conclusion to answer the challenge question.

Type: Lesson Plan

Model Eliciting Activity (MEA) STEM Lesson

Physical Science Unit: Properties Lesson 23 Model Eliciting Activity: Researching Sea Turtle Nesting Temperatures:

In this MEA, students will have the opportunity to apply their knowledge of investigating the natural world, sources of energy, measuring, keeping records, graphing, and communicating information. Students will develop a hypothesis, design an experiment, and support their reasoning to determine how to best study different methods for cooling sea turtle nesting areas. In the optional part 2, students will carry out the experiment that they designed in part 1 and collect data to determine if their hypotheses are supported. 

This is a lesson in the Grade 3 Physical Science Unit on Properties. This is a themed unit of SaM-1's adventures at the CPALMS Rehabilitation and Conservation Center.  To see all the lessons in the unit please visit https://www.cpalms.org/page818.aspx .

Type: Model Eliciting Activity (MEA) STEM Lesson

Original Student Tutorial

Lesson 23 Video: MEA Researching Sea Turtle Nesting Temperatures :

In this video Sam-1 introduces a Model Eliciting Activity (MEA) challenge. Students will take their prior experiences from the properties unit and apply their knowledge of investigating sea turtle nesting temperatures.  

Students will develop a hypothesis, design an experiment, and support their reasoning to determine how to best study different methods for cooling sea turtle nesting areas.

Type: Original Student Tutorial

Teaching Idea

One Of These Things Is Not Like The Other:

As a result of this activity, students will be able to determine the characteristics that distinguish groups of organisms.

Type: Teaching Idea

Text Resource

Can You Read a Tree?:

This informational text resource is intended to support reading in the content area. The article explains how tree rings are used to determine the Earth's climate many years ago.

Type: Text Resource

Unit/Lesson Sequence

States of Matter | Inquiry in Action:

In the first activity of this unit, students consider how heating and cooling affect molecular motion. The subsequent activities extend this idea to explore the relationship between temperature and the state changes of water. After considering their own experiences with evaporation and condensation, students discover that adding heat to water increases the rate of evaporation and cooling water vapor increases the rate of condensation. Students then investigate what causes moisture to form on the outside of a cold cup. As an extension, students see that at even lower temperatures water vapor can condense on the outside of a container and then freeze to form ice.

Type: Unit/Lesson Sequence

Video/Audio/Animation

Plants In Motion:

Plants In Motion is a set of time-lapse movies (embedded in the website) that show how plants respond to stimuli (gravity, light, diurnal patterns). The movies allow students a way to visualize plant processes that take much longer to observe.

Type: Video/Audio/Animation

Student Resources

Vetted resources students can use to learn the concepts and skills in this benchmark.

Original Student Tutorial

Lesson 23 Video: MEA Researching Sea Turtle Nesting Temperatures :

In this video Sam-1 introduces a Model Eliciting Activity (MEA) challenge. Students will take their prior experiences from the properties unit and apply their knowledge of investigating sea turtle nesting temperatures.  

Students will develop a hypothesis, design an experiment, and support their reasoning to determine how to best study different methods for cooling sea turtle nesting areas.

Type: Original Student Tutorial

Parent Resources

Vetted resources caregivers can use to help students learn the concepts and skills in this benchmark.

Video/Audio/Animation

Plants In Motion:

Plants In Motion is a set of time-lapse movies (embedded in the website) that show how plants respond to stimuli (gravity, light, diurnal patterns). The movies allow students a way to visualize plant processes that take much longer to observe.

Type: Video/Audio/Animation