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This deck focuses on Magnetic Solution Criteria, giving you a quick way to review the definitions, rules, and examples that matter most for 3rd Grade Science.
Study Magnetic Solution Criteria 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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Which term means "a limit such as time, materials, or safety" in a magnetic design?
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Constraint. Constraints are restrictions like available resources or rules.
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This deck focuses on Magnetic Solution Criteria, 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: Constraint. Constraints are restrictions like available resources or rules.
Answer: A limit on how big or small the solution can be. Size restrictions limit design possibilities.
Answer: Only classroom materials may be used. This limits available resources for building.
Answer: Finish building and testing within the set time. Time limits restrict how long you can work.
Answer: Criterion. This measures success (sorting ability), not a limit.
Answer: Criterion. This measures success (lifting ability), not a limit.
Answer: Correctly separates magnetic from nonmagnetic items. Performance criteria measure how well it works.
Answer: It must collect the required number of metal items. Performance criteria measure success.
Answer: It must work the same way each time it is used. Reliability ensures consistent performance.
Answer: A) Finish in 15 minutes. Time limits restrict how long you can work.
Answer: It must not include hazards such as sharp parts. Safety constraints prevent harm to users.
Answer: Use only the allowed materials provided. This limits what resources can be used.
Answer: Constraint. This restricts which materials can be used.
Answer: It must fit within a required size or space. Size limits restrict physical dimensions.
Answer: Must pick up 10 paper clips. This states a goal to achieve, not a limitation.
Answer: Constraint. This limits the number of magnets allowed.
Answer: Must pick up paper clips quickly. Speed of collection is a performance goal.
Answer: Criteria judge success; constraints limit what you can do. Criteria are goals to achieve; constraints are rules to follow.
Answer: Criteria are goals; constraints are limits. Goals describe what to achieve; limits restrict how.
Answer: A requirement the solution must meet to be successful. Criteria define what makes a solution successful.
Answer: Constraint. These are restrictions on resources or conditions.
Answer: A limit on what materials can be used to build it. This restricts which supplies you can use.
Answer: State the problem and what the solution must do. Understanding the problem guides all decisions.
Answer: Must lift 5 washers. Lifting ability is a performance goal to meet.
Answer: Must be made only from cardboard and 1 magnet. Material limits are constraints, not goals.
Answer: Test it and compare results to each criterion. Testing verifies if goals are met.
Answer: B) Separate nails from rice. Separating materials is a goal, not a limit.
Answer: Constraint. This limits resources (number of magnets allowed).
Answer: The solution must stay within the budget limit. This constraint sets a spending limit for your project.
Answer: Must be safe to use and not cause injury. Safety rules limit how solutions can be designed.
Answer: Must separate iron nails from sand. This states what the tool must accomplish.
Answer: Criterion. Separating objects is a performance goal.
Answer: No small parts or sharp edges; use safely. Safety rules limit design to protect users.
Answer: A requirement used to judge how well the solution works. Criteria measure how well your solution meets the goal.
Answer: Must pick up 10 paper clips. This is a goal to achieve, not a limitation.
Answer: You may use only the allowed materials provided. This constraint limits which supplies you can use.
Answer: The solution must fit within a specified space. This constraint limits the physical dimensions allowed.
Answer: It must attract only the intended magnetic objects. This criterion ensures the magnet selects correct materials.
Answer: Criterion. Portability is a goal the device should meet.
Answer: Criterion. This describes a desired outcome or achievement.
Answer: Must be safe. Safety is a rule that limits design choices.
Answer: It must work the same way each time it is used. This criterion ensures consistent performance over time.
Answer: A limit or rule the solution must follow. Constraints restrict what you can do or use.
Answer: Criterion. Criteria evaluate if your solution achieves its purpose.
Answer: B) Lift 5 screws. Lifting screws measures success; cardboard is a material constraint.
Answer: Criterion. Being easy to use is a goal for success.
Answer: A limit on the solution, such as materials, time, or cost. Constraints restrict how you can solve the problem.
Answer: A limit or rule the solution must follow. Constraints are boundaries that restrict your design choices.
Answer: B) Must use only tape and a magnet. Material limits are constraints; lifting ability is a criterion.
Answer: A requirement the solution must meet to be successful. Criteria define what makes a solution successful.
Answer: To define success and limits before designing and testing. Clear goals and limits guide effective design.
Answer: Constraint. Not damaging objects limits how it works.
Answer: It must pick up the required number of paper clips. This criterion measures if the magnet is strong enough.
Answer: The solution must be built and tested within the time limit. This constraint sets deadlines for completion.
Answer: State the problem and what the solution must do. Understanding the problem helps identify needed criteria and constraints.
Answer: Must fit in a 10 cm box. Size limits what you can build, making it a constraint.
Answer: Constraint. This limits time allowed, making it a constraint.