Difference between revisions of "HS-LS1-4"
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| + | ! style="padding: 0.5em 1.5em;" | Exam | ||
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| + | | rowspan="3" style="background-color:white;" | [[August 2026 Life Science: Biology Exam|August 2026]] | ||
| + | | style="background-color:white;" | [[Questions:Star of the Tide Pool|Star of the Tide Pool]] | ||
| + | | style="background-color:white;" | [[Questions:Star of the Tide Pool#q3|Question 3]] | ||
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| + | | style="background-color:white;" | [[Questions:Humongous Fungus|Humongous Fungus]] | ||
| + | | style="background-color:white;" | [[Questions:Humongous Fungus#q2|Question 14]] | ||
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| + | | style="background-color:white;" | [[Questions:Frog Development|Frog Development]] | ||
| + | | style="background-color:white;" | [[Questions:Frog Development#q1|Question 26]] | ||
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| + | | style="background-color:white;" | [[January 2026 Life Science: Biology Exam|January 2026]] | ||
| + | | style="background-color:white;" | [[Questions:Two Kinds of Twins|Two Kinds of Twins]] | ||
| + | | style="background-color:white;" | [[Questions:Two Kinds of Twins#q2|Question 2]] | ||
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| + | | rowspan="3" style="background-color:white;" | [[August 2025 Life Science: Biology Exam|August 2025]] | ||
| + | | style="background-color:white;" | [[Questions:Keratin – A Very Versatile Protein|Keratin – A Very Versatile Protein]] | ||
| + | | style="background-color:white;" | [[Questions:Keratin – A Very Versatile Protein#q2|Question 25]] | ||
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| + | | style="background-color:white;" | [[Questions:The Human Journey from One Cell to 30 Trillion|The Human Journey from One Cell to 30 Trillion]] | ||
| + | | style="background-color:white;" | [[Questions:The Human Journey from One Cell to 30 Trillion#q2|Question 38]] | ||
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| + | | style="background-color:white;" | [[Questions:The Human Journey from One Cell to 30 Trillion|The Human Journey from One Cell to 30 Trillion]] | ||
| + | | style="background-color:white;" | [[Questions:The Human Journey from One Cell to 30 Trillion#q4|Question 40]] | ||
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| + | | style="background-color:white;" | [[June 2025 Life Science: Biology Exam|June 2025]] | ||
| + | | style="background-color:white;" | [[Questions:Nature or Nurture?|Nature or Nurture?]] | ||
| + | | style="background-color:white;" | [[Questions:Nature or Nurture?#q5|Question 47]] | ||
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== {{Dimensionsheading}} == | == {{Dimensionsheading}} == | ||
Revision as of 22:22, 20 September 2026
Use a model to illustrate cellular division (mitosis) and differentiation.
Clarification statement: Emphasis should be on the outcomes of mitotic division and cell differentiation on growth and development of complex organisms and possible implications for abnormal cell division (cancer) and stem cell research.
Assessment boundary: Assessment does not include specific gene control mechanisms or recalling the specific steps of mitosis.
Performance Level Descriptions
PLDs communicate the knowledge and skills expected of students to demonstrate proficiency in each Learning Standard. NYS assessments classify student performance into one of five levels.
Resources
Examples and discussion of resources for the learning, teaching, and assessment of HS-LS1-4.
Assessment
What assessment of HS-LS1-4 might look like on a NY state exam.
NGSS Dimensions
Performance expectation HS-LS1-4 was developed using the following elements from the NRC document A Framework for K-12 Science Education:
- Developing and Using Models
- Use a model based on evidence to illustrate the relationships between systems or between components of a system.
- LS1.B: Growth and Development of Organisms
- In multicellular organisms individual cells grown and then divide via a process called mitosis, thereby allowing the organism to grow. The organism begins as a single cell (fertilized egg) that divides successfully to produce many cells, with each parent cell passing identical genetic material (two variants of each chromosome pair) to both daughter cells. Cellular division and differentiation produce and maintain a complex organism, composed of systems of tissues and organs that work together to meet the needs of the whole organism.
- Systems and System Models
- Models (e.g., physical, mathematical, computer models) can be used to simulate systems and interactions - including energy, matter, and information flows – within and between systems at different scales.