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Biology, Genetics, Mendel's Experiments and Heredity, Characteristics and Traits
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By the end of this section, you will be able to:Explain the relationship between genotypes and phenotypes in dominant and recessive gene systemsDevelop a Punnett square to calculate the expected proportions of genotypes and phenotypes in a monohybrid crossExplain the purpose and methods of a test crossIdentify non-Mendelian inheritance patterns such as incomplete dominance, codominance, recessive lethals, multiple alleles, and sex linkage

Subject:
Applied Science
Biology
Life Science
Material Type:
Module
Date Added:
07/10/2017
Biology, Genetics, Mendel's Experiments and Heredity, Laws of Inheritance
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By the end of this section, you will be able to:Explain Mendel’s law of segregation and independent assortment in terms of genetics and the events of meiosisUse the forked-line method and the probability rules to calculate the probability of genotypes and phenotypes from multiple gene crossesExplain the effect of linkage and recombination on gamete genotypesExplain the phenotypic outcomes of epistatic effects between genes

Subject:
Applied Science
Biology
Life Science
Material Type:
Module
Date Added:
07/10/2017
Biology, Genetics, Mendel's Experiments and Heredity, Mendel’s Experiments and the Laws of Probability
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By the end of this section, you will be able to:Describe the scientific reasons for the success of Mendel’s experimental workDescribe the expected outcomes of monohybrid crosses involving dominant and recessive allelesApply the sum and product rules to calculate probabilities

Subject:
Applied Science
Biology
Life Science
Material Type:
Module
Date Added:
07/10/2017
Biology, Genetics, Modern Understandings of Inheritance, Chromosomal Basis of Inherited Disorders
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By the end of this section, you will be able to:Describe how a karyogram is createdExplain how nondisjunction leads to disorders in chromosome numberCompare disorders caused by aneuploidyDescribe how errors in chromosome structure occur through inversions and translocations

Subject:
Applied Science
Biology
Life Science
Material Type:
Module
Date Added:
07/10/2017
Biology, Genetics, Modern Understandings of Inheritance, Chromosomal Theory and Genetic Linkage
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By the end of this section, you will be able to:Discuss Sutton’s Chromosomal Theory of InheritanceDescribe genetic linkageExplain the process of homologous recombination, or crossing overDescribe how chromosome maps are createdCalculate the distances between three genes on a chromosome using a three-point test cross

Subject:
Applied Science
Biology
Life Science
Material Type:
Module
Date Added:
07/10/2017
Biology I
Unrestricted Use
CC BY
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An introduction to cellular and molecular biology. Major topics include the biochemical basis of life, cell biology, photosynthesis, respiration, mitosis, meiosis, genetics, DNA structure and replication and protein synthesis. Students engage the scientific method by designing, conducting and evaluating laboratory experiences that include selected topics in cell structure and function, enzymes, respiration, photosynthesis, genetics and molecular biology. NOTE: Students may receive credit for BIO 119 or BIO 126, but not for both.

Subject:
Biology
Life Science
Material Type:
Full Course
Provider:
Greenfield Community College
Author:
Amanda Hyde
Date Added:
05/06/2019
Biology Online Genetics Lab:  Genetic Counseling Case Study
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This resource is a genetics case study adapted from the National Center for Case Study Teaching in Science for use as a laboratory exercise in an introductory online biology course. It utilizes a fillable form pdf lab answer sheet created by the instructor, Tina B. Jones.

Attributions and references are provided at the end of the laboratory write-up.

Please refer to the "Completing Lab Reports in Canvas Orientation Exercise" in OER Commons also authored by Tina B. Jones for student instructions on downloading, completing, and uploading the fillable form answer sheets in Canvas.

*Lab answer sheet created by instructor using Adobe Acrobat DC Pro.

Subject:
Biology
Life Science
Material Type:
Activity/Lab
Case Study
Date Added:
06/04/2019
Biology, Preface to Biology, Preface to Biology
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Biology is designed for multi-semester biology courses for science majors. It is grounded on an evolutionary basis and includes exciting features that highlight careers in the biological sciences and everyday applications of the concepts at hand. To meet the needs of today’s instructors and students, some content has been strategically condensed while maintaining the overall scope and coverage of traditional texts for this course. Instructors can customize the book, adapting it to the approach that works best in their classroom. Biology also includes an innovative art program that incorporates critical thinking and clicker questions to help students understand—and apply—key concepts.

Subject:
Applied Science
Material Type:
Module
Date Added:
07/10/2017
Biology of Human Reproduction
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CC BY
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This is a one-semester course covering various aspects of human reproduction, from anatomy and physiology of the reproductive systems to genetics to assisted

reproductive technologies, etc. The text currently in use is not only expensive but also dated,

with a publication date of 2005. I will redesign the course to include all topics listed in the

college course description, in module format. I

Subject:
Biology
Life Science
Material Type:
Full Course
Provider:
Bristol Community College
Author:
Susan Barrett
Date Added:
05/01/2019
Bioservers
Read the Fine Print
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This site contains user-friendly tools to launch DNA database searches, statistical analyses, and population modeling from a centralized workspace. Educational databases support investigations of an Alu insertion polymorphism on human chromosome 16 and single nucleotide polymorphisms (SNPs) in the human mitochondrial control region.

Subject:
Genetics
Life Science
Material Type:
Activity/Lab
Simulation
Provider:
Cold Spring Harbor Laboratory
Provider Set:
Dolan DNA Learning Center
Date Added:
02/16/2011
Biotechnology
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CC BY-NC
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What does a technology look like that will change the world? Biotechnology has the power to alter all of our lives. The ability to manipulate genes in ways that benefit people is a powerful technology.  In this lesson we will explore various benefits and applications of biotechnology.  You will analyze different perspectives in the race to create biotechnology.  From there you will decide how you feel about “playing with genes” and how that will impact your life.StandardsBio.B.3.2.4  Students will apply scientific thinking, processes, tools, and technologies in the study of genetics.

Subject:
Biology
Life Science
Material Type:
Lesson Plan
Author:
Bonnie Waltz
Deanna Mayers
Tracy Rains
Date Added:
10/08/2017
Biotechnology: Can It Help in Making the Desert Green?
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This learning video introduces high school students to a topic they would not ordinarily study in school, biotechnology, and to different applications of biotechnology that relate to the main theme of the module - making the desert greener. After reviewing traditional methods used for manipulating plants to produce desired traits, students will learn about the methods of making transgenic plants. Dr. Ziad discusses a real world problem that is critical in his country, Jordan, where much of the land is desert. A prerequisite to this video lesson is some background in biology.

Subject:
Botany
Genetics
Life Science
Material Type:
Lecture
Provider:
MIT
Provider Set:
MIT Blossoms
Author:
Ziad W. Jaradat, PhD
Date Added:
09/09/2015
Building Blocks of Life
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CC BY-SA
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All living beings are made up of cells. Some of them are made up of only one cell and others have many cells. Also in: Dutch | French | Hungarian | Spanish

Subject:
Biology
Life Science
Material Type:
Activity/Lab
Game
Lesson Plan
Provider:
Arizona State University
Provider Set:
Ask A Biologist
Author:
Dr. Biology
Shyamala Iyer
Date Added:
09/25/2009
CK-12 Biology (CA Textbook)
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Submitted as part of the California Learning Resource Network (CLRN) Phase 3 Digital Textbook Initiative (CA DTI3), CK-12 Foundation’s high school Biology FlexBook covers cell biology, genetics, evolution, ecology, botany, zoology, and physiology. This digital textbook was reviewed for its alignment with California content standards.

Subject:
Biology
Ecology
Genetics
Life Science
Material Type:
Textbook
Provider:
CK-12 Foundation
Provider Set:
CK-12 FlexBook
Author:
Douglas Wilkin Ph.D.
Date Added:
02/16/2011
CK-12 Life Science Concepts for Middle School
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CC BY-SA
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CK-12’s Life Science delivers a full course of study in the life sciences for the middle school student, relating an understanding of the history, disciplines, tools, and modern techniques of science to the exploration of cell biology, molecular biology, genetics, evolution, prokaryotes, protists,fungi, plants, animals, invertebrates, vertebrates, human biology, and ecology. This digital textbook was reviewed for its alignment with California content standards.

Subject:
Biology
Ecology
Genetics
Life Science
Material Type:
Textbook
Provider:
CK-12 Foundation
Provider Set:
CK-12 FlexBook
Author:
CK-12
Date Added:
11/29/2012
CK-12 Life Science For Middle School
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CC BY-SA
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CK-12’s Life Science delivers a full course of study in the life sciences for the middle school student, relating an understanding of the history, disciplines, tools, and modern techniques of science to the exploration of cell biology, genetics, evolution, prokaryotes, protists, fungi, plants, the animal kingdom, the human body, and ecology. This digital textbook was reviewed for its alignment with California content standards.

Subject:
Biology
Ecology
Genetics
Life Science
Material Type:
Textbook
Provider:
CK-12 Foundation
Provider Set:
CK-12 FlexBook
Author:
Douglas Wilkin, Ph.D.
Date Added:
02/29/2012