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Alik [6]
3 years ago
12

According to Freud, the superego develops during the ________ stage of psychosexual development, and the ego develops during the

________ stage.
Social Studies
1 answer:
joja [24]3 years ago
5 0

According to Freud, the superego develops during the <u>phallic</u> stage of psychosexual development, and the ego develops during the <u>an-al</u> stage.

Sigmund Freud was born on the 6th of May, 1856 in Moravia.

He was an Austrian physiologist, neurologist, medical doctor and the founder of psychoanalysis. Sigmund Freud died on the 23rd of September, 1939 in London, United Kingdom.

Sigmund Freud was popularly known around the world for his works on psychoanalytic theory of personality development.

In 1923, Freud developed the personality theory, wherein, he strongly argued that a person’s personality (human psyche) is structured into three (3) main parts and these are:

  • The Id (instincts).
  • Ego (reality).
  • Superego (morality).

The sequential order of Freud's stages of psychosexual development include the following:

1. Oral.

2. An-al.

3. Phallic.

4. Genital.

According to Sigmund Freud, the superego is developed during the <u>phallic</u> stage of psychosexual development while the ego develops during the <u>an-al</u> stage.

Read more here: brainly.com/question/17029159

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For the total population of a large southern city mean family is income 34,000 with a standard deviation for the population of 5
Debora [2.8K]

Answer: If we imagine a normal curve and draw a line at the $33,000 point

and another line at the $34,000 point (which happens to be the population

mean) we can then visually see the area where question 10a is referring.

What percentage of cases in our sample is expected to fall in this area

(between $33,000 and the mean of $34,000). That number will be the

probability that our sample mean would fall in this area (the answer to 10a).

So, since the mean is $34,000, all we have to do is determine the Z score

for $33,000, look at the table of Z scores and examine the percentage

score found under column B which is the area between Z and the mean.

What makes this problem more difficult is that we need to use a slightly

different formula in order to calculate the Z score since we have

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formula is the second formula provided in the learning check.

Substituting this formula for the formula above it (used when we have a

sample but don’t have information about the whole population) would be easy

to do except that you are only just learning the terminology. Consequently,

this slightly different formula uses terms that you are less familiar with

which makes it difficult to figure out how to plug numbers into the formula.

So, the learning check states “However, because here we are dealing with a

sampling distribution” (actually a sample of 200 that we will treat as if it

were a sampling distribution) “replace Y with the sample mean (or $33,000)

and replace ‘Y mean’ with the sampling distribution’s mean (actually the

population’s mean since we know that a sampling distribution’s mean is

equivalent to the population’s mean and we have the population mean

available), and the standard deviation with the standard error of the mean.”

So first we may want to calculate the standard error of the mean. This is

accomplished by taking the square root of the sample N (200) and then

dividing it into the population’s standard deviation (the formula is provided in

the learning check—it is found in the bottom formula, and within this

formula is the bottom half).

That is, the standard error of the mean = $5,000/ sqrt of 200 = $353.55

By fitting the SE ($353.55) into the whole formula we can then obtain the

Z score for a sample mean of $33,000.

<u>Z = $33,000 - $34,000/ 353.55 = -2.83</u>

The area between the Z score of 2.83 (converted from $33,000) and the

mean ($34,000) is about .4977 which is also the probability of a mean

between $33,000 and $34,000. That is, there is a 49.8% probability that

our sample mean would fall between $33,000 and $34,000.

To take this a step beyond the question being asked, what would be the

probability that our sample mean would fall between $35,000 and the mean

($34,000)? This is really easier than it looks. Since $33,000 is $1,000 less

than the mean and $35,000 is $1,000 more than the mean, their percentages

will be the same (.4977) with $33,000 drawn to the right of the mean

(34,000) and $35,000 drawn to the left of the mean.

7 0
3 years ago
A school is considering a major change to its grading system. It recognizes that even though students work hard and do well for
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Answer: Mean Central Tendency

Explanation:

Central tendency means the measures in which we use in finding  the average value of a statistical series of quantitative data.The mean gives the arithmetic average of a group of scores that is the scores from a data are totaled and divided by the number of scores. Mean as a measure for central tendency is   easy to understand, calculate and utilizes all scores of a distribution, However,  it tends to be affected by extreme scores giving absurd negative values for example, a couple of extremely low scores can skew the mean so that the average score appears much more lower than most of the scores actually are.

Here, Even though students work hard and do well for most of the grading period, sometimes students get overwhelmed and do poorly on one test, which affects their overall grades-->this is because mean central tendency can give negative absurd values for extreme scores ( in this case, low scores ) in its observation, affecting a student's overall grade.

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Answer:

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saveliy_v [14]

I believe the answer is: The Rorschach test

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3 years ago
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