6.SP.4:
Statistics And Probability
Summarize And Describe Distributions.
Display numerical data in plots on a number line, including dot plots, histograms, and box plots.
6.SP.5:
Statistics And Probability
Summarize And Describe Distributions.
Summarize numerical data sets in relation to their context, such as by:
- Reporting the number of observations.
- Describing the nature of the attribute under investigation, including how it was measured and its units of measurement.
- Giving quantitative measures of center (median and/or mean) and variability (interquartile range and/or mean absolute deviation), as well as describing any overall pattern and any striking deviations from the overall pattern with reference to the context in which the data were gathered.
- Relating the choice of measures of center and variability to the shape of the data distribution and the context in which the data were gathered.
6.SP.5a:
Statistics And Probability
Summarize And Describe Distributions.
Reporting the number of observations.
6.SP.5c:
Statistics And Probability
Summarize And Describe Distributions.
Giving quantitative measures of center (median and/or mean) and variability (interquartile range and/or mean absolute deviation), as well as describing any overall pattern and any striking deviations from the overall pattern with reference to the context in which the data were gathered.
6.EE.9:
Expressions And Equations
Represent And Analyze Quantitative Relationships Between Dependent And Independent Variables.
Use variables to represent two quantities in a real-world problem that change in relationship to one another; write an equation to express one quantity, thought of as the dependent variable, in terms of the other quantity, thought of as the independent variable. Analyze the relationship between the dependent and independent variables using graphs and tables, and relate these to the equation. For example, in a problem involving motion at constant speed, list and graph ordered pairs of distances and times, and write the equation d = 65t to represent the relationship between distance and time.