conducts experiments in which seeds from cherry tomatoes are exposed to a series of pulsations of ultra-violet radiation with the aim of triggering a genetic mutation to increase lycopene production. It is well established from past experiments that the lycopene content for untreated cherry tomatoes is 12.7 mg/100g. A random sample of 36 treated seeds from a population of seeds of an identical variant was selected and were planted and grown in identical conditions. The mean lycopene content of the treated seeds was determined via mass spectrometry to be 13.1 mg/100g and a standard deviation of 1.2. A histogram indicates that the distribution of the lycopene content appears to be roughly normally distributed. Select the appropriate set of hypotheses to determine if the radiation treatment effectively increases lycopene content in cherry tomatoes. Select one: Оа. Но : д >12.7 vs. HA : д — 12.7 Ob. Но : д — 12.7 vs. HA : и > 12.7 Ос. Но : д — 12.7 vs. Ha : д < 12.7 O d. Ho : µ = 13.1 vs. HA : µ # 13.1 Ho : ē = 12.7 vs. HA : > 12.7 O f. Ho : µ = 12.7 vs. HA : µ = 13.1 O g. Ho : µ = 13.1 vs. HA : µ > 13.1 O h. Ho : = 13.1 vs. HA : T > 13.1 Determine the distribution of the test statistic for the appropriate hypothesis test follows assuming the null hypothesis is true. Select one: O a. The test statistic follows a t-distribution with 35 degrees of freedom if H, is true. O b. The test statistic follows a normal distribution with 35 degrees of freedom if H, is true. Oc. The test statistic follow a z-distribution (standard normal) if the Ho is true. O d. The test statistic follows a t-distribution which is centered at u if Ho is true. O . This distribution cannot be determined with the given information.

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Lycopene is a bright red pigment which has been shown to have powerful antioxidant and anticarcinogenic properties. A biological research company
conducts experiments in which seeds from cherry tomatoes are exposed to a series of pulsations of ultra-violet radiation with the aim of triggering a
genetic mutation to increase lycopene production. It is well established from past experiments that the lycopene content for untreated cherry
tomatoes is 12.7 mg/100g. A random sample of 36 treated seeds from a population of seeds of an identical variant was selected and were planted
and grown in identical conditions. The mean lycopene content of the treated seeds was determined via mass spectrometry to be 13.1 mg/100g and a
standard deviation of 1.2. A histogram indicates that the distribution of the lycopene content appears to be roughly normally distributed.
Select the appropriate set of hypotheses to determine if the radiation treatment effectively increases lycopene content in cherry tomatoes.
Select one:
Oa.
Но : д> 12.7 vs. Hд : д — 12.7
ОБ. Но : д — 12.7 vs. Hд : > 12.7
Oc.
Ho : µ = 12.7 vs. HA : µ < 12.7
Od. Ho : д — 13.1 vs. HA : д + 13.1
O e
Но : а — 12.7 vs. HA : > 12.7
O f. Ho : µ = 12.7 vs. HA : µ = 13.1
O g. Ho : µ = 13.1 vs. HA : µ > 13.1
O h. Ho : = 13.1 vs. HA :ī > 13.1
Determine the distribution of the test statistic for the appropriate hypothesis test follows assuming the null hypothesis is true.
Select one:
The test statistic follows a t-distribution with 35 degrees of freedom if H, is true.
O b. The test statistic follows a normal distribution with 35 degrees of freedom if Ho is true.
O c. The test statistic follow a z-distribution (standard normal) if the H, is true.
O d. The test statistic follows a t-distribution which is centered at u if H, is true.
O e. This distribution cannot be determined with the given information.
Transcribed Image Text:Lycopene is a bright red pigment which has been shown to have powerful antioxidant and anticarcinogenic properties. A biological research company conducts experiments in which seeds from cherry tomatoes are exposed to a series of pulsations of ultra-violet radiation with the aim of triggering a genetic mutation to increase lycopene production. It is well established from past experiments that the lycopene content for untreated cherry tomatoes is 12.7 mg/100g. A random sample of 36 treated seeds from a population of seeds of an identical variant was selected and were planted and grown in identical conditions. The mean lycopene content of the treated seeds was determined via mass spectrometry to be 13.1 mg/100g and a standard deviation of 1.2. A histogram indicates that the distribution of the lycopene content appears to be roughly normally distributed. Select the appropriate set of hypotheses to determine if the radiation treatment effectively increases lycopene content in cherry tomatoes. Select one: Oa. Но : д> 12.7 vs. Hд : д — 12.7 ОБ. Но : д — 12.7 vs. Hд : > 12.7 Oc. Ho : µ = 12.7 vs. HA : µ < 12.7 Od. Ho : д — 13.1 vs. HA : д + 13.1 O e Но : а — 12.7 vs. HA : > 12.7 O f. Ho : µ = 12.7 vs. HA : µ = 13.1 O g. Ho : µ = 13.1 vs. HA : µ > 13.1 O h. Ho : = 13.1 vs. HA :ī > 13.1 Determine the distribution of the test statistic for the appropriate hypothesis test follows assuming the null hypothesis is true. Select one: The test statistic follows a t-distribution with 35 degrees of freedom if H, is true. O b. The test statistic follows a normal distribution with 35 degrees of freedom if Ho is true. O c. The test statistic follow a z-distribution (standard normal) if the H, is true. O d. The test statistic follows a t-distribution which is centered at u if H, is true. O e. This distribution cannot be determined with the given information.
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