Courses tagged with "Multiplying+and+factoring+expressions" (233)

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3 votes
Open.Michigan Initiative, University of Michigan Free Health and Welfare trauma care Connectivism Continuous+learning Control Logix programming Laplace transform Managerial Accounting

This course addresses essential learning outcomes in normal growth, development and nutrition across the lifespan, inclusive of aging. Its focus is on normal function rather than disease. Level: First Year Medical Students Unless otherwise noted this Work, Human Growth and Development, by Brent Williams is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike license.

4 votes
Open.Michigan Initiative, University of Michigan Free Health and Welfare Alcohols Bargaining Fair use Multiplying+and+factoring+expressions Nursing research Projects & Discovery Lab

The Patients and Populations sequence focuses on genetics, principles of disease, epidemiology, information gathering and assessment. The sequence features two modules: Medical Genetics and Medical Decision-Making. In this module, students will: Construct well-defined clinical questions from case scenarios, designed to improve general knowledge about a topic, and to help make decisions regarding the use of diagnostic tests. Understand the differences between foreground and background questions and the implications for the types of information resources best suited to answer these questions. Become familiar with the U-M information environment, and learn to effectively search several core biomedical resources to answer specific clinical questions. Develop an understanding of the basic foundations of biostatistics, research design and epidemiology to begin to apply scientific data to the understanding of clinical conditions. Effectively and logically apply probabilistic reasoning to diagnostic questions that arise in patient case scenarios. Level: First Year Medical Students Unless otherwise noted, this Work, Patients and Populations: Medical Decision-Making, by Rajesh Mangrulkar, Stephen Gruber is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike license.

2 votes
Open.Michigan Initiative, University of Michigan Free Health and Welfare Emergency medicine Excel classes Multiplying+and+factoring+expressions Nursing research Public health Thermodynamics

The Patients and Populations sequence focuses on genetics, principles of disease, epidemiology, information gathering and assessment. The sequence features two modules: Medical Genetics and Medical Decision-Making. The growing awareness of the central role of genetic factors in the causation of human disease has made genetics one of the most rapidly developing fields in medicine. Much of this progress has been propelled by advances in the area of molecular genetics and genomics, advances that, in turn, have been applied directly to the diagnosis and management of disease. The objective of this course is to present the basic principles of medical genetics and their application to clinical medicine, with the intent of providing students the necessary background to understand ongoing developments in genetics and their application to clinical problems. The elucidation of the human genome, and the genomes of multiple other organisms, will change the way medicine is practiced. In order for physicians to understand these developments and utilize them for the benefits of their patients, they will have to be conversant with molecular genetic technologies and the technologies for acquiring, organizing, and interpreting new information. Level: First Year Medical Students Unless otherwise noted, this Work, Patients and Populations: Medical Genetics, by Thomas D. Gelehrter is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike license.

3 votes
Open.Michigan Initiative, University of Michigan Free Health and Welfare Art History Bundling Diploma-in-programming-in-c-final-assessment Framework Free.htm%253Fdatetype%253Dadded&.htm%3Fcategoryid%3D10 Multiplying+and+factoring+expressions

This sequence addresses the various structural components in the kidney are specialized for processing of the filtrate and production of urine. It also covers homeostatic mechanisms involved in the control and regulation of fluid, electrolyte and acid-base balance, as well as metabolic processes in eliminating nitrogenous waste such as urea and uric acid. Level: First Year Medical Students Unless otherwise noted this Work, Renal, by Tamara Stein is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike license.

2 votes
Open.Michigan Initiative, University of Michigan Free Health and Welfare Applied+Math Banking and Money BrownX China Credit Crisis

This sequence provides a comprehensive introduction to diseases of the cardiovascular system, how they present, how they are diagnosed, how they are prevented, and how they are treated. Students learn to identify the integral links between anatomy, physiology, pathology, and basic sciences with clinical medicine and other essential aspects of patient care for ambulatory and hospitalized patients who have cardiovascular disorders. Level: Second Year Medical Students Unless otherwise noted this Work, Cardiovascular, by Kim A. Eagle, Ph.D. is licensed under a Creative Commons Attribution-ShareAlike license.

5 votes
Open.Michigan Initiative, University of Michigan Free Health and Welfare Avatars Dreamweaver Information services Multiplying+and+factoring+expressions Nursing research

This sequence's activities have been designed to correlate basic science with clinical dermatologic phenomena. Dermatology as a clinical specialty is very visual, and accordingly, students will be exposed to images of real skin diseases and findings. Level: Second Year Medical Students Unless otherwise noted this Work, Dermatology, by Regents of the University of Michigan is licensed under a Creative Commons Attribution license.

1 votes
Open.Michigan Initiative, University of Michigan Free Health and Welfare Cambridge IGCSE as level physics Contracts Drawing & Animation GMOOC Multiplying+and+factoring+expressions Nursing research

The M2 Gastrointestinal Diseases sequence is a 2 1/2 week block of lectures, laboratory exercises, case presentations and a Multidisciplinary Conference that are designed to introduce students to the scientific foundations of diseases that affect the gastrointestinal tract. Level: Second Year Medical Students Unless otherwise noted this Work, Gastrointestinal Diseases, by Rebecca Van Dyke is licensed under a Creative Commons Attribution-ShareAlike license.

Starts : 2015-11-02
No votes
Coursera Free Health and Welfare English BabsonX Curriculum Multiplying+and+factoring+expressions Nutrition

Illustrates the principles of public health applied to depressive disorder, including principles of epidemiology, transcultural psychiatry, health services research, and prevention.

Starts : 2016-06-14
No votes
edX Free Closed [?] English Error occured ! We are notified and will try and resolve this as soon as possible.
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Humans have leveraged the power of cells for millennia to produce staples such as bread, cheese, beer and wine. Yet only recently have we begun to utilize cells as factories for the production of protein therapeutics.

These biologic drugs are able to treat otherwise untreatable diseases. In this course, you will learn how these life saving medicines are made.

We will connect the engineering fundamentals to real-world application by showing real pieces of biomanufacturing equipment in action and listening to experts describe real-world engineering challenges.

Starts : 2016-10-20
No votes
edX Free Closed [?] English Brain stem Business Multiplying+and+factoring+expressions Nutrition

Addiction is such a common problem today that people experiencing alcohol, nicotine or other drug problems present in many different healthcare settings. The challenge of linking people experiencing addiction to the right response is a serious one, and much depends on understanding addiction and recognising the role that we all play in the pathway to recovery.

This course is intended to help you meet this challenge by increasing your understanding of the biology of addiction and the available treatment options in the different stages of the recovery journey.

Key questions we will look at in this course include:

  • When do we call “excessive use” addiction?
  • Why is it so difficult to change addictive behaviour?
  • Who can play a role to get people on the track to recovery?
  • How do you respond to people with mild to moderate problems?
  • How can you assess and increase motivation to change?
  • What sort of interventions can support a person experiencing severe addiction?
  • What is my role as a professional, either within or outside of addiction care?
  • How can I identify the best of the many options available?
  • What are hurdles to get the right support to manage addiction around the world?

This course explores the “Recovery Pathway,” an easy-to-use framework for helping people with addiction move successfully from addiction to recovery. It helps plan a pathway through screening and assessment, to withdrawal and long-term relapse prevention. The course will examine a range of psychosocial interventions and medication-assisted treatments. You will review the biological basis of behaviour and treatment related to the stage of recovery, as well as evidence-based and service delivery considerations. This course is an ideal starting-point for healthcare professionals who want to get to grips with effective approaches to treating addiction.

Starts : 2014-10-02
No votes
Stanford Online. OpenEdX Free Closed [?] IEEEx Multiplying+and+factoring+expressions Surface+integrals+and+Stokes'+theorem

Interdisciplinary course exploring the future of medical education. Featuring thought leaders, educators, innovators, physicians and technologists.

Starts : 2016-10-01
No votes
edX Free Closed [?] English ACT+Math Brain stem Business Information policy Multiplying+and+factoring+expressions Nutrition

If you are seeking CME credit, you must register with Charlotte Area Healthcare Education Center: CLICK HERE to register for CME

This medical course includes six modules which cover various areas of medical genomics including:

  • Introduction to Genomics
  • Variation
  • Microbiome
  • Pharmacogenomics
  • in vitro (IVF) and Fetal medicine
  • Oncology

Each module defines common terms, shows examples of data, and how healthcare is changing due to genomic insights. Each module also contains ethical, legal, and social implications of genomics in medical treatment. All modules contain five multiple choice questions to assess learning gains.

Interspersed in each module are multiple interviews with practicing healthcare workers who have first hand experience with medical genomics and how the standards of care are changing. This continuing medical education course contains information that satisfies the American Board of Medical Specialties six core competencies: Practice-based learning and improvement; Patient care and procedural skills; Systems-based practice; Medical knowledge; Interpersonal and communication skills; and Professionalism.

Course eligible for CME credit:
2.0 AMA PRA Category 1 Credits

  • This activity has been planned and implemented in accordance with the accreditation requirements and policies of the Accreditation Council for Continuing Medical Education (ACCME) through the joint providership of Carolinas HealthCare System/Charlotte AHEC and Davidson College . Carolinas HealthCare System/Charlotte AHEC is accredited by the ACCME to provide continuing medical education for physicians.
  • Carolinas HealthCare System/Charlotte AHEC designates this Enduring Material for a maximum of 2 AMA PRA Category 1 Credit(s)™. Physicians should claim only the credit commensurate with the extent of their participation in the activity.

This course has been created in joint partnership with the Charlotte AHEC.

 

Courses offered via edX.org are not eligible for academic credit from Davidson College. A passing score in a DavidsonX course(s) will only be eligible for a verified certificate generated by edX.org.

 

Starts : 2016-01-04
97 votes
Coursera Free Closed [?] Health and Welfare English BabsonX Brain stem Multiplying+and+factoring+expressions Nutrition Sap fico online training

Explore the structure and function of the human central nervous system. Learn why knowledge of human neuroanatomy, neurophysiology, neural plasticity, and new discovery in the brain sciences matters for clinical practice in the health professions.

Starts : 2016-03-23
No votes
edX Free Closed [?] English Brain stem Business Multiplying+and+factoring+expressions Nutrition

It is highly likely that you, a member of your family, or a close friend will face the decision of whether to use a medication to treat a diagnosed psychiatric disorder. Do you have the skills and knowledge to participate in the decision to use a drug as therapy?

This course prepares you to be an effective collaborator with your physician, psychiatrist, or psychologist when deciding if a medication is appropriate treatment. The course introduces fundamental principles for the use of drugs as therapy. It encourages students to have realistic goals regarding the strengths and limitations of psychiatric medications. It provides basic understanding of how a drug acts upon the brain to improve behavioral symptoms. You will learn how new drugs are developed to become viable options for treatment, and how they are ultimately approved for being prescribed. Additionally, this course provides perspective on the proper use of psychiatric medication as a part of a multifactor treatment program.

Altogether, you will acquire a working knowledge to gain confidence that a psychiatric medication is being used wisely to give the best advantage for a successful improvement of symptoms while minimizing risk of side effects.  

Starts : 2017-03-13
No votes
edX Free Closed [?] English ACT+Math Business Diencephalon Multiplying+and+factoring+expressions Nutrition

This medicinal chemistry course explores how chemists modify a molecule’s structure to design a safe and effective drug.

This course opens with a brief history of drug discovery and introduces the modern drug approval process. Then, we will transition to learning about receptors and enzymes, the body’s molecules most often targeted by drugs. We will also discuss the topics of pharmacokinetics (drug adsorption, elimination, and half-life) and metabolism. The course closes with units on how potential drug molecules are identified and subsequently optimized into safe and effective drugs.

Starts : 2015-05-05
No votes
edX Free Closed [?] English Book distribution Business Fetal Circulation Game+development Multiplying+and+factoring+expressions Nutrition

Medicine is in the midst of a shift never before seen. Information and technology are advancing at rates faster than our ability to adapt. These changes, along with social forces such as the health 2.0 movement, are redefining the role of the doctor and patient. This course offers participants an engaging, never-before-seen view of medicine and healthcare. 

"Medicine in the Digital Age" features in-depth interviews with thought leaders in digital health, including:

Dr. Eric Topol, author of The Creative Destruction of Medicine (2012) and The Patient Will See You Now (2015) 
Dr. Roni Zeiger, former Chief Health Strategist for Google and CEO and Co-founder of Smart Patients 
Dr. Peter Killoran, Biomedical informatics and EHR usability expert
Fred Trotter, Data Journalist and Author of ​Meaningful Use​ and Beyond (2011) 
Dr. David Wetter, Director of Innovation for Behavioral Health on Mobile Data to Knowledge (MD2K) center, for NIH Big Data to Knowledge (BD2K) Initiative 

The course is intended for a general audience and is relevant to anyone working or interested in the emerging healthcare environment. At the end of the course, participants will have the knowledge to successfully engage with the future of digital medicine. 

Medicine in the Digital Age maps out the challenges and opportunities facing healthcare in the networked age. We will explore the role of social media in healthcare communication, the uses of wearable technologies, the potential for big data to reshape health behaviors, the ethics of personalized medicine, and the impact of these new developments on the doctor-patient relationship. Participants will gain an understanding of the connected health revolution and tools to critically analyze this evolving ecosystem. Medicine in the Digital Age will launch a fresh conversation about what the future of medicine should be, and how we should get there. Join us!

What background is required to participate in this course?
No specific background is required for this course, but it is aimed at professionals who have (or would like to have) some amount of decision-making capability in their organization. This course is for leaders and aspiring leaders in healthcare and allied sectors including telecommunications, health insurance, biotechnology, pharmaceuticals, device manufacturing, policy and government, investment, consulting and innovation.

Is this course part of a series?
Not yet, but watch for future announcements!

Can I still enroll if the course has started?
Yes, but look for additional announcements from course staff about assessments that will need to be completed to qualify for the RiceX Certificate.

What types of certificates does RiceX offer?
Upon successful completion of RiceX courses, learners will be awarded a RiceX Certificate from Rice University.

How are certificates determined?
Earning a certificate is determined by the individual course. Generally, learners must complete all course requirements at a level pre-determined by the course instructor to earn a certificate.

What happens if I do not pass or cannot complete a course?
There is no limit on the number of times you can enroll in RiceX courses. Many of RiceX courses are offered on a routine basis and you will be able to enroll in the next offering.

How can I earn a certificate for the series?
Some RiceX courses are part of a series. Usually you can enroll in just one course or the entire series.  Often you do not have to decide to complete the full series when you begin. Participants can earn a series certificate if they satisfactorily fulfill the requirements for completing the series.

What happens after I sign up?
Once you have registered and paid for a course, you will receive a confirmation email from RiceX.

What time is the class?'
Courses materials are available 24 hours a day once the course has officially opened.  Some courses include live webcasts with instructors scheduled at a specific time. The webcasts are recorded and available to participants who are not able to join.  

What if I have a question or concern for the instructor?
You will be part of a dynamic global learning community of fellow professional participants available 24-7 to help within the framework of the honor code. Course engagement managers monitor the discussion forum and can address your questions or forward to the instructor.

How can I meet/find other course participants?
Every RiceX course includes a Participant Discussion Forum where you can interact with other participating professionals. The Forum is guided by an honor code. You can also connect through Google+ Hangouts and interactive activities like live webcasts that may be included in a course.

Is there an exam at the end?
No, there is no exam. Instead, there is a final project at the end of the course.

Starts : 2014-06-24
No votes
Class2Go Free Closed [?] IEEEx Multiplying+and+factoring+expressions Physics

Provides a firm grounding in the foundations of probability and statistics, the course focuses on real examples from the medical literature and popular press.

Starts : 2015-10-12
No votes
Coursera Free English BabsonX Curriculum Multiplying+and+factoring+expressions Nutrition

This course is designed to help you develop a broader understanding of mental health and illness from a global perspective. Over five weeks you will be guided in exploring how and why the current challenges faced in mental health care vary globally.

Starts : 2015-02-23
No votes
Iversity Free Closed [?] English History+of+Math Multiplying+and+factoring+expressions

Course Summary

Over the past decades world hunger has been joined by a second nutrition problem: chronic over nutrition and lack of exercise in industrialized and developing countries. The ensuing overweight and obesity pose a severe health problem. Picking the most relevant examples, this short course will analyze the biochemical basis of the development of diseases associated with the so called metabolic syndrome. Among others, the steps towards the development of type 2 diabetes and atherosclerosis will be discussed.

This course is divided into 4 chapters. In each chapter one particular nutrition-related disease will be discussed on three levels.

What will I learn?

Level 1: Basic understanding of how poor lifestyle impacts on the regulation of physiological processes.

Level 2: Understanding of the major biochemical principles underlying selected examples of nutrition-related diseases.

Level 3: Sound understanding, which experimental evidence supports the current views on the development of certain nutrition-related diseases.

What do I need to know?

Level 1: Basic knowledge in biology

Level 2: Basic knowledge of biochemical principles

Level 3: Advanced knowledge in biochemistry

Course Structure

Chapter 1: Insulin Resistance.
You will learn, how overweight and obesity cause insulin resistance in the different organs.

Chapter 2: Type 2 Diabetes.
You will learn about the current ideas, how reversible insulin resistance irreversibly proceeds to type 2 diabetes and how the late complications of type 2 diabetes develop.

Chapter 3: Dyslipidemias.
You will learn, how lipids are carried in our blood and distributed throughout the body, what controls their levels and how this control is impaired in disease.

Chapter 4: Atherosclerosis.
You will learn, how different risk factors, among others type 2 diabetes, dislipidemia and hypertension, contribute to the development of atherosclerosis and its consequences like stroke and heart attack.

Workload

Approximately 2- hours per week for watching video lectures, taking quizzes and completing homework assignments.

Starts : 2017-08-15
No votes
edX Free Closed [?] English product differentiation and variety Brain stem Business Information policy Multiplying+and+factoring+expressions Nutrition

In Part 3 of 7.28x, you’ll explore translation of mRNA to protein, a key part of the central dogma of biology. Do you know how RNA turnover or RNA splicing affects the outcome of translation? Although not official steps in the central dogma, the mechanisms of RNA processing strongly influence gene expression.

Are you ready to go beyond the “what" of scientific information presented in textbooks and explore how scientists deduce the details of these molecular models?

Take a behind-the-scenes look at modern molecular biology, from the classic experimental events that identified the proteins and elements involved in translation and RNA splicing to cutting-edge assays that apply the power of genome sequencing. Do you feel confident in your ability to design molecular biology experiments and interpret data from them? We've designed the assessments in this course to build your experimental design and data analysis skills.

Let’s explore the limits of our current knowledge about the translation machinery and mechanisms of RNA turnover and splicing. If you are up for the challenge, join us in 7.28.3x Molecular Biology: RNA Processing and Translation.

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