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This deck focuses on Testing Forces And Motion, giving you a quick way to review the definitions, rules, and examples that matter most for 3rd Grade Science.
Study Testing Forces And Motion in 3rd Grade Science with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
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Identify the control condition in a push test where you compare no push, small push, and big push.
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No push (the baseline condition). Control shows what happens without the tested variable.
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This deck focuses on Testing Forces And Motion, giving you a quick way to review the definitions, rules, and examples that matter most for 3rd Grade Science.
Work through these flashcards in short sessions. Try to answer each prompt before flipping the card, then revisit any cards you miss until the explanation feels automatic.
Answer: No push (the baseline condition). Control shows what happens without the tested variable.
Answer: A force that opposes motion when surfaces rub. Friction slows objects by converting motion to heat.
Answer: Ruler or meter stick. These tools have marked units for measuring length.
Answer: To make results more reliable and reduce random error. Multiple trials help identify patterns vs. one-time accidents.
Answer: A testable prediction about what will happen. Based on observations before testing begins.
Answer: Keep the ramp stable and keep objects away from faces and edges. Safety prevents injuries during hands-on experiments.
Answer: Factors kept the same so only the force changes. Keeping other factors constant ensures a fair test.
Answer: Distance the car rolls. What you measure (distance) is the dependent variable.
Answer: State the question you will test. Clear questions guide the entire investigation.
Answer: Stopwatch or timer. These devices precisely track elapsed time.
Answer: The factor you change on purpose. You control this to see its effect on motion.
Answer: The factor you measure (how the motion changes). Motion change is the result you observe and record.
Answer: Sandpaper. Rough surfaces create more friction than smooth ones.
Answer: Use the same number of rubber bands each time. Rubber bands provide measurable, repeatable force amounts.
Answer: Centimeters (cm) or meters (m). These metric units work well for small to medium distances.
Answer: A force that resists motion between touching surfaces. Rough surfaces create more friction than smooth ones.
Answer: Greater friction on carpet slows the car more. Different surfaces create different amounts of friction.
Answer: A testable prediction about how force will affect motion. States what you think will happen before testing.
Answer: A ruler or meter stick. Rulers directly measure linear distance in standard units.
Answer: The factor you measure (how the motion changes). This is what you observe and record as your results.
Answer: Use the same object and the same push each time. Only surface type should change between trials.
Answer: To record measurements clearly and consistently. Organized data helps identify patterns.
Answer: Greater force increased distance traveled. Data shows force and distance are related.
Answer: A force that pulls objects toward Earth. This invisible force affects all objects near Earth.
Answer: A bar graph or line graph. Shows relationship between two variables visually.
Answer: Write a testable question about force and motion. A clear question guides the entire investigation.
Answer: Increasing force increased distance traveled in this test. Data shows direct relationship between force and distance.
Answer: If the force increases, then the motion will change because forces affect motion. If-then-because format clearly states prediction and reasoning.
Answer: Toy car and ramp height. These factors stay constant while push strength varies.
Answer: Keep the push the same and change only the surface type. Controls push force so surface is the only variable.
Answer: Seconds (s). Standard unit for measuring duration of events.
Answer: The factor you change on purpose (the applied force). You control this variable to see its effect on the outcome.
Answer: Surface type. What you change (surface) is the independent variable.
Answer: Repeat trials and average or compare the results. Multiple trials reduce errors and show consistent patterns.
Answer: Repeat trials and use the average result. Multiple trials reduce random errors.
Answer: Push strength; Trial 1 distance; Trial 2 distance; Trial 3 distance. Headers organize data for multiple trials per condition.
Answer: How does push strength change distance traveled. Specific, measurable questions lead to better investigations.
Answer: Distance traveled after leaving the ramp. Height affects speed, which affects distance.
Answer: The factor you change on purpose (the force applied). You control the force to see its effect on motion.
Answer: A ruler, meter stick, or measuring tape. These tools give precise length measurements.
Answer: Change only one variable and keep all others the same. This ensures results are due to the tested variable only.
Answer: Use a clear track and keep hands and faces away. Prevents objects from hitting people.
Answer: If I change the force, then the motion will change. Uses if-then format to link cause and effect.
Answer: A stopwatch or timer. Accurately tracks how long motion takes.
Answer: Measure distance traveled in a set time. Distance shows how far objects move from forces.
Answer: A force that pulls objects downward. Earth's gravity always pulls toward the center.
Answer: A change in position over time. Objects move when their location changes from one place to another.
Answer: Change only the push; keep all other factors the same. Fair tests isolate one variable at a time.
Answer: A factor kept the same to make the test fair. Keeping these constant ensures only one factor affects results.
Answer: Distance traveled for each push strength. Distance shows how push strength affects motion.
Answer: Factors kept the same in every trial. Ensures only one variable affects the results.
Answer: A push or a pull that can change an object's motion. Forces cause objects to start, stop, or change direction.
Answer: Type of surface. The surface is what you're changing on purpose.
Answer: A stopwatch or timer. Stopwatches precisely measure elapsed time in seconds.
Answer: A push or pull that can change an object's motion. Forces cause changes in speed, direction, or both.
Answer: Line graph. Line graphs show continuous relationships between variables.
Answer: One complete test run using the planned steps once. Each trial tests the same conditions to check consistency.
Answer: The factor you measure or observe. This changes as a result of the independent variable.