Answer:
the answer is -punctuated equilibrium-
Explanation:
Hope this helps--koki
The lines were _____.
adjusted
preserved
transferred
imitated
Save
Answer:
I would put "preserver" because the lines have even preserved for 2,000 years and still exist to this day
b. Across months only
C. Across many years
d. Across hours only
Please select the best answer from the choices provided
Answer: Option C
Explanation: In a line graph, you can use the time scale that you want or need, it can be measured in hours or years, meaning that if the graph shows something that is happening quickly, maybe its better to use hours, and if the graph shows something that happens slowly is better to use a bigger measure, like days, weeks or more.
So the right answer is C; a graph can show information across many years (and in between, of course)
In a line graph, you can use any time scale you want or need; it can be measured in hours or years and paragraph and spacing.
Thus, If the graph shows something happening quickly, perhaps using hours is preferable; if the graph shows something happening slowly, perhaps using days, weeks, or more is preferable and line graph.
The distance between each line in a paragraph is known as line spacing.
There are other settings besides those under the Line and Paragraph Spacing menu for line spacing. Select Line Spacing Options from the menu to open the Paragraph dialog box and fine-tune the spacing. After that, you'll have a couple more options for customizing spacing.
Thus, In a line graph, you can use any time scale you want or need; it can be measured in hours or years and paragraph and spacing.
Learn more about Paragraph, refer to the link:
#SPJ6
Answer
Training workers to recognize and avoid unsafe conditions
Explanation A hazard is anything that has potential to cause harm either an incident or or an accident. OSHA which is a an occupational safety and healthy agency requires that employers and workers to come up with the information concerning the hazards which are in a work place or the potential ones that may occur during the working period. This is done by conducting inspections on the work place. And Train the workers to recognize and avoid unsafe conditions during the working period.
Answer:
7/3 mi
Explanation:
1+3/4=7/4
3/4=1 so 1:3/4 as x:7/4
=
then cross multiply
(3/4)x=7/4
x=7/4(4/3)
x=7/3
mountains
rift valleys
volcanoes
island chains
Answer:
A:mountains
Explanation:
x-2*0.25=25-2*0.25 = ____ (type an integer or a decimal do not round)
Answer:
Confidence levels are expressed as a percentage (for example, a 95% confidence level). It means that should you repeat an experiment or survey over and over again, 95 percent of the time your results will match the results you get from a population (in other words, your statistics would be sound!). Confidence intervals are your results…usually numbers. For example, you survey a group of pet owners to see how many cans of dog food they purchase a year. You test your statistics at the 99 percent confidence level and get a confidence interval of (200,300). That means you think they buy between 200 and 300 cans a year. You’re super confident (99% is a very high level!) that your results are sound, statistically.
Confidence Interval For a Sample: Steps
Question:
A group of 10 foot surgery patients had a mean weight of 240 pounds. The sample standard deviation was 25 pounds. Find a confidence interval for a sample for the true mean weight of all foot surgery patients. Find a 95% CI.
Step 1: Subtract 1 from your sample size. 10 – 1 = 9. This gives you degrees of freedom, which you’ll need in step 3.
Step 2: Subtract the confidence level from 1, then divide by two.
(1 – .95) / 2 = .025
Step 3: Look up your answers to step 1 and 2 in the t-distribution table. For 9 degrees of freedom (df) and α = 0.025, my result is 2.262.
Step 4: Divide your sample standard deviation by the square root of your sample size.
25 / √(10) = 7.90569415
Step 5: Multiply step 3 by step 4.
2.262 × 7.90569415 = 17.8826802
Step 6: For the lower end of the range, subtract step 5 from the sample mean.
240 – 17.8826802 = 222.117
Step 7: For the upper end of the range, add step 5 to the sample mean.
240 + 17.8826802 = 257.883
That’s how to find the confidence interval for a sample, hope that helped!