Nurs 80 Wk3

  

Assignment

Becoming Familiar With the DNP Scholarly Project and PhD Dissertation

As a doctoral candidate, you will complete either a DNP Scholarly Project or a PhD Dissertation. Are you curious about what will be required of you? For this 

Assignment, you locate and read materials that pertain to your doctoral program at Walden University, and begin thinking about your DNP Scholarly Project or PhD Dissertation.

To prepare:

DNP students:

Review the DNP section of the Walden University website (http://researchcenter.waldenu.edu/DNP-Doctoral-Study-Program.htm.

Carefully review the requirements for the DNP Scholarly Project process.

Consider the steps and timeline you will work through to complete the DNP Scholarly project.

To complete:

Write a 1-page paper outlining the steps, timeline for completing the project / dissertation, and the documents you will use for  the DNP Scholarly Project . Include the main guide document that identifies the processes and procedures for the appropriate doctoral project.

Summarize the purpose of the DNP Scholarly Project.

Briefly describe a project that would be of interest to you and how you might go about completing that project.

IMPORTANT: PROJECT OF INTEREST: INTRAPROFESSIONAL NURSING COLLABORATION AND COMMUNICATION: BEDSIDE ROUNDING

REFERENCE

Zaccagnini, M. E., & White, K. W. (2014). The doctor of nursing practice essentials: A new model for advanced practice nursing (2nd ed.). Sudbury, MA: Jones & Bartlett. [Vital Source e-reader]

[For DNP students ONLY]

Chapter 9, “Emerging Roles for the DNP”

Chapter 4, “Finding Problems and Writing Questions”

Institute of Medicine (IOM). (2010a). The future of nursing: Leading change, advancing health[Consensus report]. Washington, DC: National Academies Press. Retrieved from https://web.archive.org/web/20150211165201/http://iom.edu/Reports/2010/The-Future-of-Nursing-Leading-Change-Advancing-Health.aspx

Institute of Medicine (IOM). (2010b). The future of nursing: Leading change, advancing health[Report brief]. Retrieved from https://web.archive.org/web/20150203150734/http://iom.edu/~/media/Files/Report%20Files/2010/The-Future-of-Nursing/Future%20of%20Nursing%202010%20Report%20Brief.pdf

 
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Nurs Wk 6 Assgn 18707369

  

Week Six – Correlations Exercises

Correlations are used to describe the strength and direction of a relationship between two variables. A correlation between two variables is known as a bivariate correlation. In this module the Pearson Product-Moment Correlation will be used when running a correlation matrix. The Pearson correlation coefficient ranges from a value of -1.0 to 1.0. A correlation coefficient is never above 1.0 or below -1.0. A perfect positive correlation is 1.0 and a perfect negative correlation is -1.0. The size of the coefficient determines the strength of the relationship and the sign (i.e., + or -) determines the direction of the relationship. The closer the value is to zero the weaker the relationship and the closer the value is to 1.0 or -1.0 the stronger the relationship. A correlation coefficient of zero indicates no relationship between the variables.

A scatterplot is used to depict the relationship between two variables. The general shape of the collection of points indicates whether the correlation is positive or negative. A positive relationship will have the data points group into a cluster from the lower left hand corner to the upper right hand corner of the graph. A negative relationship will be depicted by points clustering in the lower right hand corner to the upper left hand corner of the graph. When the two variables are not related the points on the scatterplot will be scattered in a random fashion. 

Using Polit2SetB dataset, create a correlation matrix using the following variables: Number of visits to the doctor in the past 12 months (docvisit), body mass index (bmi), Physical Health component subscale (sf12phys) and Mental Health component subscale (sf12ment). Run means and descriptives for each variable as well as the correlation matrix. 

Follow these steps using SPSS:

1.Click Analyze, then correlate, then bivariate. 

2.Select each variable and move them into the box labeled “Variables.” 

3.Be sure the Pearson and two-tailed box is checked.

4.Click on the options tab (upper right corner) and check “means and standard deviations.” The exclude cases pairwise should also be checked. Click continue.

5.Click OK

To run descriptives for docvisit, bmi, sf12phys and sf12ment do the following in SPSS: 

1.Click Analyze then click Descriptives Statistics, then Descriptives.

2.Click the first continuous variable you wish to obtain descriptives for (docvisit) and then click on the arrow button and move it into the Variables box. Then click bmi and then click on the arrow button and move it into the Variables box. Then click sf12phys and then click on the arrow button and move it into the Variables box. Then click sf12ment and then click on the arrow button and move it into the Variables box.

3.Click the Options button in the upper right corner. Click mean and standard deviation.

4.Click continue and then click OK. 

Assignment: Answer the following questions about the correlation matrix.

1.What is the strongest correlation in the matrix? (Provide correlation value and names of variables)

2.What is the weakest correlation in the matrix? (Provide correlation value and names of variables)

3.How many original correlations are present on the matrix?

4.What does the entry of 1.00 indicate on the diagonal of the matrix?

5.Indicate the strength and direction of the relationship between body mass index and physical health component subscale? 

6.Which variable is most strongly correlated with body mass index? What is the correlational coefficient? What is the sample size for this relationship? 

7.What is the mean and standard deviation for bmi and doctor visits?

Part II

Using Polit2SetB dataset, create a scatterplot using the following variables: x-axis = body mass index (bmi) and the y-axis = weight-pounds (weight).

Follow these steps in SPSS:

1.Click Graphs, then click on Legacy Dialogs, then click “Scatter/Dot”. 

2.Click “Simple Scatter” and then click “Define.” 

3.Click on weight-pounds and move it to the Y-axis box and then click on body mass index and move it to the x-axis box. 

4.Click OK.

To run descriptives for bmi and weight do the following in SPSS:

5.Click Analyze then click Descriptives Statistics, then Descriptives.

6.Click the first continuous variable you wish to obtain descriptives for (body mass index) and then click on the arrow button and move it into the Variables box. Then click weight-pounds and then click on the arrow button and move it into the Variables box.

7.Click the Options button in the upper right corner. Click mean and standard deviation.

8.Click continue and then click OK. 

Assignment:

1.What is the mean and standard deviation for weight and bmi?

2.Describe the strength and direction of the relationship between weight and bmi?

3.Describe the scatterplot? What information does it provide to a researcher?

References 3 references required

  

Required Media

Walden University. (n.d.). Correlations. Retrieved August 1, 2011, from http://streaming.waldenu.edu/hdp/researchtutorials/educ8106_player/educ8106_correlations.html

Required Readings

Gray, J.R., Grove, S.K., & Sutherland, S. (2017). Burns and Grove’s the practice of nursing research: Appraisal, synthesis, and generation of evidence (8th ed.). St. Louis, MO: Saunders Elsevier.

Chapter 23, “Using Statistics to Examine Relationships”

Statistics and Data Analysis for Nursing Research

Chapter 4, “Bivariate Description: Crosstabulation, Risk Indexes, and Correlation” (pp. 59–61 and 68–78)

Chapter 9, “Correlation and Simple Regression” (pp. 197–209)

 
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Nurs 80 Wk 7 Disc

  

Logistic Regression in Nursing Practice

To prepare:

Review the three articles in this week’s Learning Resources and evaluate their use of logistic regression. Select one article that interests you to examine more closely in this Discussion

Critically analyze the article you selected considering the following questions:

What are the goals and purposes of the research study the article describes?

How is logistic regression used in the study? What are the results of its use?

What other quantitative and statistical methods could be used to address the research issue discussed in the article?

What are the strengths and weaknesses of the study?

How could the weaknesses of the study be remedied?

How could findings from this study contribute to evidence-based practice, the nursing profession, or society?

Post 4 paragraph that addresses the following:

1.In the first line of your posting, identify the article you examined, providing its correct APA citation.

2. Post your critical analysis of the article as outlined above.

3.Propose potential remedies to address the weaknesses of each study.

4.Analyze the importance of this study to evidence-based practice, the nursing profession, or society.

Provide 3 references

1.Gray, J.R., Grove, S.K., & Sutherland, S. (2017). Burns and Grove’s the practice of nursing research: Appraisal, synthesis, and generation of evidence (8th ed.). St. Louis, MO: Saunders Elsevier.

Chapter 24, “Using Statistics to Predict”

2. Statistics and Data Analysis for Nursing Research

Chapter 9, “Correlation and Simple Regression” (pp. 208–222)

3. Select One Article from below for your assignment discussion: 

Hoerster, K. D., Mayer, J. A., Gabbard, S., Kronick, R. G., Roesch, S. C., Malcarne, V. L., & Zuniga, M. L. (2011). Impact of individual-, environmental-, and policy-level factors on health care utilization among US farmworkers. American Journal of Public Health, 101(4), 685–692. doi:10.2105/AJPH.2009.190892

Tritica-Majnaric, L., Zekic-Susac, M., Sarlija, N., & Vitale, B. (2010). Prediction of influenza vaccination outcome by neural networks and logistic regression. Journal of Biomedical Informatics, 43(5), 774–781. doi:10.1016/j.jbi.2010.04.011

Xiao, Y., Griffin, M. P., Lake, D. E., & Moorman, J. R. (2010). Nearest-neighbor and logistic regression analyses of clinical and heart rate characteristics in the early diagnosis of neonatal sepsis. Medical Decision Making, 30(2), 258–266. doi:10.1177/0272989X09337791

 
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Nurs Wk 6 Assgn 18707365

  

Week Six – Correlations Exercises

Correlations are used to describe the strength and direction of a relationship between two variables. A correlation between two variables is known as a bivariate correlation. In this module the Pearson Product-Moment Correlation will be used when running a correlation matrix. The Pearson correlation coefficient ranges from a value of -1.0 to 1.0. A correlation coefficient is never above 1.0 or below -1.0. A perfect positive correlation is 1.0 and a perfect negative correlation is -1.0. The size of the coefficient determines the strength of the relationship and the sign (i.e., + or -) determines the direction of the relationship. The closer the value is to zero the weaker the relationship and the closer the value is to 1.0 or -1.0 the stronger the relationship. A correlation coefficient of zero indicates no relationship between the variables.

A scatterplot is used to depict the relationship between two variables. The general shape of the collection of points indicates whether the correlation is positive or negative. A positive relationship will have the data points group into a cluster from the lower left hand corner to the upper right hand corner of the graph. A negative relationship will be depicted by points clustering in the lower right hand corner to the upper left hand corner of the graph. When the two variables are not related the points on the scatterplot will be scattered in a random fashion. 

Using Polit2SetB dataset, create a correlation matrix using the following variables: Number of visits to the doctor in the past 12 months (docvisit), body mass index (bmi), Physical Health component subscale (sf12phys) and Mental Health component subscale (sf12ment). Run means and descriptives for each variable as well as the correlation matrix. 

Follow these steps using SPSS:

1.Click Analyze, then correlate, then bivariate. 

2.Select each variable and move them into the box labeled “Variables.” 

3.Be sure the Pearson and two-tailed box is checked.

4.Click on the options tab (upper right corner) and check “means and standard deviations.” The exclude cases pairwise should also be checked. Click continue.

5.Click OK

To run descriptives for docvisit, bmi, sf12phys and sf12ment do the following in SPSS: 

1.Click Analyze then click Descriptives Statistics, then Descriptives.

2.Click the first continuous variable you wish to obtain descriptives for (docvisit) and then click on the arrow button and move it into the Variables box. Then click bmi and then click on the arrow button and move it into the Variables box. Then click sf12phys and then click on the arrow button and move it into the Variables box. Then click sf12ment and then click on the arrow button and move it into the Variables box.

3.Click the Options button in the upper right corner. Click mean and standard deviation.

4.Click continue and then click OK. 

Assignment: Answer the following questions about the correlation matrix.

1.What is the strongest correlation in the matrix? (Provide correlation value and names of variables)

2.What is the weakest correlation in the matrix? (Provide correlation value and names of variables)

3.How many original correlations are present on the matrix?

4.What does the entry of 1.00 indicate on the diagonal of the matrix?

5.Indicate the strength and direction of the relationship between body mass index and physical health component subscale? 

6.Which variable is most strongly correlated with body mass index? What is the correlational coefficient? What is the sample size for this relationship? 

7.What is the mean and standard deviation for bmi and doctor visits?

Part II

Using Polit2SetB dataset, create a scatterplot using the following variables: x-axis = body mass index (bmi) and the y-axis = weight-pounds (weight).

Follow these steps in SPSS:

1.Click Graphs, then click on Legacy Dialogs, then click “Scatter/Dot”. 

2.Click “Simple Scatter” and then click “Define.” 

3.Click on weight-pounds and move it to the Y-axis box and then click on body mass index and move it to the x-axis box. 

4.Click OK.

To run descriptives for bmi and weight do the following in SPSS:

5.Click Analyze then click Descriptives Statistics, then Descriptives.

6.Click the first continuous variable you wish to obtain descriptives for (body mass index) and then click on the arrow button and move it into the Variables box. Then click weight-pounds and then click on the arrow button and move it into the Variables box.

7.Click the Options button in the upper right corner. Click mean and standard deviation.

8.Click continue and then click OK. 

Assignment:

1.What is the mean and standard deviation for weight and bmi?

2.Describe the strength and direction of the relationship between weight and bmi?

3.Describe the scatterplot? What information does it provide to a researcher?

References 3 references required

  

Required Media

Walden University. (n.d.). Correlations. Retrieved August 1, 2011, from http://streaming.waldenu.edu/hdp/researchtutorials/educ8106_player/educ8106_correlations.html

Required Readings

Gray, J.R., Grove, S.K., & Sutherland, S. (2017). Burns and Grove’s the practice of nursing research: Appraisal, synthesis, and generation of evidence (8th ed.). St. Louis, MO: Saunders Elsevier.

Chapter 23, “Using Statistics to Examine Relationships”

Statistics and Data Analysis for Nursing Research

Chapter 4, “Bivariate Description: Crosstabulation, Risk Indexes, and Correlation” (pp. 59–61 and 68–78)

Chapter 9, “Correlation and Simple Regression” (pp. 197–209)

 
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Nurs 8 19288305

Open the attached file to read …..

 
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Nurs Wk 5 Discus

  

To prepare: Ethics

Reflect on ethical challenges that you have encountered in your nursing practice.

Think about the information the experts shared in this week’s media presentation, 

focusing on the ethical challenges they have encountered as nurse leaders or scientists, as well as information presented in other Learning Resources.

With this information in mind, consider what new ethical challenges you may face once you obtain your doctoral degree.

Post a  2 pages cohesive response that addresses the following:

Describe two or more significant ethical issues relevant to the DNP prepared nurse.

Explain how these issues might compare to the types of issues you have already encountered in your practice.

References

Campbell-Crofts, S., Field, J., & Fetherstonhaugh, D. (2013). Ethical considerations for nurses undertaking research with a potentially vulnerable population with chronic kidney disease. Renal Society of Australasia Journal, 9(2), 74–79. 

Milton, C. L. (2010). Nursing ethics and power in position. Nursing Science Quarterly, 23(1), 18–21.

Suhonen, R., Stolt, M., & Leino-Kilpi, H. (2013). Older people in long-term care settings as research informants: Ethical challenges. Nursing Ethics, 20(5), 551–567.

Peirce, A. G., & Smith, J. A. (2008). The ethics curriculum for doctor of nursing practice programs. Journal of Professional Nursing, 24(5), 270–274.

 
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Nurs 7

Open the attached files 

 
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Nurs Policy And Advocacy

see attachment

 
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Nurs 6660

 

Based on the YMH Boston Vignette 4 video, post answers to the following questions:

  • What did the practitioner do well?
  • In what areas can the practitioner improve?
  • At this point in the clinical interview, do you have any compelling concerns? If so, what are they?
  • What would be your next question, and why?
 
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Nurs Policy And Advocacy 19168945

  

Based on the health-related bill you selected, develop a 1- to 2-page 

Legislation Testimony/Advocacy Statement that addresses the following:

•Advocate a position for the bill you selected and write testimony in support of your position.

•Describe how you would address the opponent to your position. Be specific and provide examples.

•Recommend at least one amendment to the bill in support of your position.

HEALTH-RELATED BILL= High health care costs due to poor implementation of the Patient Protection Affordable Care Act

 
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