10 9- 8- 7- 6- 5- 4- 3. 1. 0.02 0,04 0,06 0.08 0.10 0.12 0.14 0.16 0,18 Spermatophore mass (g) Use the graph above to answer the following questions: The general shape of the graph in the 0.03-0.10 range is [ Select ] (symmetrical, asymmetrical) The mode falls in what range? [ Select ] (make sure you give a numeric range, but be as pecific as possible given the data on the graph) What is the highest observed frequency? [ Select ] (numeric value only) V [ Select ] symmetrical asymmetrical 0.06-0.08 What is the lowest observed freg (numeric value only) • Zero is almost never cons 0.06-0.07 Measurements or frequen letection limit" instead of zero. 0.07-0.08 One way to increase the d ger area or a greater number of 0.17-0.18 spermatophores If we were measuring the concentration below whicl 0.17 water, there would be some minimum w that the solute isn't there, we just know it is 1 below the detection limit. 10 What term would be used to des mean equency distribution? median [ Select ] mode outlier What is the largest measurement? [ Select ] (numeric value only) kɔuanba

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Can you answer all the parts to this question, on the second picture it as all the answe choices that are available to pick from for all the questions

10-
8-
7-
2
1
0+
0.02 0.04 0.06 0.08 0.10 0.12 0.14 0.16 0.18
Spermatophore mass (g)
Use the graph above to answer the following questions:
The general shape of the graph in the 0.03-0.10 range is
[ Select ]
- (symmetrical,
asymmetrical)
The mode falls in what range? [ Select ]
|(make sure you give a numeric range, but be as
specific as possible given the data on the graph)
What is the highest observed frequency? [ Select ]
(numeric value only)
What is the lowest observed frequency?
[ Select ]
(numeric value only)
• Zero is almost never considered an observation.
• Measurements or frequencies not observed are termed "below detection limit" instead of zero.
One way to increase the detection limit would be to survey a larger area or a greater number of
spermatophores
• If we were measuring the concentration of a solute dissolved in water, there would be some minimum
concentration below which we could not measure. We don't know that the solute isn't there, we just know it is
below the detection limit.
What term would be used to describe the largest measurement in the frequency distribution?
[ Select ]
What is the largest measurement?
[ Select ]
|(numeric value only)
Frequency
Transcribed Image Text:10- 8- 7- 2 1 0+ 0.02 0.04 0.06 0.08 0.10 0.12 0.14 0.16 0.18 Spermatophore mass (g) Use the graph above to answer the following questions: The general shape of the graph in the 0.03-0.10 range is [ Select ] - (symmetrical, asymmetrical) The mode falls in what range? [ Select ] |(make sure you give a numeric range, but be as specific as possible given the data on the graph) What is the highest observed frequency? [ Select ] (numeric value only) What is the lowest observed frequency? [ Select ] (numeric value only) • Zero is almost never considered an observation. • Measurements or frequencies not observed are termed "below detection limit" instead of zero. One way to increase the detection limit would be to survey a larger area or a greater number of spermatophores • If we were measuring the concentration of a solute dissolved in water, there would be some minimum concentration below which we could not measure. We don't know that the solute isn't there, we just know it is below the detection limit. What term would be used to describe the largest measurement in the frequency distribution? [ Select ] What is the largest measurement? [ Select ] |(numeric value only) Frequency
10
9-
8-
7-
2-
1
0+
0.02 0.04 0.06 0.08 0.10 0.12 0.14 0.16 0.18
Spermatophore mass (g)
Use the graph above to answer the following questions:
The general shape of the graph in the 0.03-0.10 range is
[ Select ]
- (symmetrical,
asymmetrical)
The mode falls in what range? L
[ Select ]
(make sure you give a numeric range, but be as
specific as possible given the data on the graph)
What is the highest observed frequency? [ Select ]
|(numeric value only)
v [ Select ]
symmetrical
asymmetrical
What is the lowest observed freg
(numeric value only)
0.06-0.08
• Zero is almost never cons
0.06-0.07
Measurements or frequen
letection limit" instead of zero.
0.07-0.08
One way to increase the d
er area or a greater number of
0.17-0.18
spermatophores
0.17
If we were measuring the
concentration below whicl
1
water, there would be some minimum
w that the solute isn't there, we just know it is
below the detection limit.
10
What term would be used to des
mean
equency distribution?
median
[
[ Select ]
mode
outlier
What is the largest measurement?
[ Select ]
(numeric value only)
Frequency
>
Transcribed Image Text:10 9- 8- 7- 2- 1 0+ 0.02 0.04 0.06 0.08 0.10 0.12 0.14 0.16 0.18 Spermatophore mass (g) Use the graph above to answer the following questions: The general shape of the graph in the 0.03-0.10 range is [ Select ] - (symmetrical, asymmetrical) The mode falls in what range? L [ Select ] (make sure you give a numeric range, but be as specific as possible given the data on the graph) What is the highest observed frequency? [ Select ] |(numeric value only) v [ Select ] symmetrical asymmetrical What is the lowest observed freg (numeric value only) 0.06-0.08 • Zero is almost never cons 0.06-0.07 Measurements or frequen letection limit" instead of zero. 0.07-0.08 One way to increase the d er area or a greater number of 0.17-0.18 spermatophores 0.17 If we were measuring the concentration below whicl 1 water, there would be some minimum w that the solute isn't there, we just know it is below the detection limit. 10 What term would be used to des mean equency distribution? median [ [ Select ] mode outlier What is the largest measurement? [ Select ] (numeric value only) Frequency >
Expert Solution
Step 1

We have given that the histogram on which the frequency is on vertical axis and Spermatophore mass(g) is on horizontal axis.

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