B) upward comparison.
C) facial feedback hypothesis.
D) Cannon-Bard theory.
Answering the question, Enzo is relying on the two-factor theory of emotion. This implies the correct answer is A.
The two-factor theory of emotion stipulates that the two crucial factors that determine emotion are physiological arousal and cognitive label. The two-factor theory of emotion was proposed by Stanley Schachter and Jerome E. Singer.
Both researchers believe that physiological arousal plays a significant role in emotions, that is, physical arousal will take place whenever an individual feels emotion.
The physiological arousal is the physical processes in an individual's body which could include your heart beating faster or when you are trembling.
The cognitive label is the process of interpreting the physiological reaction by accessing their environment to know what causes their present emotion, that is, looking at their environment to see what makes them feel the way they feel.
For example, if someone’s heart starts breathing faster, the person might take a look at the environment to see what causes it. If the person is in a party, he or she may likely attribute the cause to happiness but if the person is being insulted, the person may likely interpret such feelings as anger.
Therefore, Enzo is relying on the two-factor theory of emotion. This implies the correct answer is A.
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B) introversion
C) intelligence
D) conscientiousness
B) preoperational
C) concrete operational
D) formal operational
S- Cyclin as it passes through the S phase is low in early G1, it the rise slowly through late G1 and S, peaking in early G2 and then dropping sharply back to zero in early Mitosis phase.
Cell often moves to the next stage of the cell cycle. The cyclins that were active in the previous stage are reduced.
Cyclin plays a role of regulating the cell cycle when they are tightly bound to Cdks.
Interphase is made up of G1 phase (cell growth), S phase (DNA synthesis), and G2 phase (cell growth). At its end of interphase comes the mitotic phase,.
It is known to push the events of the cell cycle by partnering with a family of enzymes called the cyclin-dependent kinases (Cdks).
Conclusively,Cyclin levels is not stable during the cell cycle, which is the main regulation by transcriptional activation and proteolytic destruction.
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Answer:
Cyclin levers are relatively low but increases strongly when needed. Going deeper into the topic, we can say that G1 cyclin increases at the beginning of G1 and starts decreasing throughout the whole cycle. The G1/S cyclin level starts increasing from mid G1, reaches its peak at the beginning of S, and decreases again mid S phase. The S cyclin however starts increasing 3/4th its way through G1, reaches its peak mid G2, and decreases completely at the M phase. Finally the M cyclin levels start increasing from the beginning of the S phase, peaks at the very beginning of mitosis, and falls dramatically at mid mitosis.
Explanation:
Answer:
When two things are correlated, it means that the two variables have a relationship in which the variables affect one another.
When we talk about positive correlations, it means that the variables vary in the same direction (it shows an upward trend when graphed). For example, increased exercise and muscle gain are positively correlated. If you INCREASE exercise, muscle gains will INCREASE.
On the other hand, increased exercise and fat gain are negatively correlated. If you INCREASE exercise, fat gain is DECREASED. Negative correlations will have a downward trend when graphed.
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Answer:
If two things are negatively correlated, as one increases, the other decreases. As one decreases, the other increasese
To calculate the intrinsic rate of natural increase (r) for Japan, we use the formula r = Birth Rate + Migration Rate - Death Rate. Plugging in the given values, we get r = (7.7 + 0.55) - 9.8 = -1.55 per thousand. This indicates that Japan's population is decreasing at a rate of 1.55 per one thousand people annually.
To calculate the net growth rate or the intrinsic rate of natural increase (r) for Japan, we can use the given birth rate, death rate, and the rate of net migration. The formula is generally given as follows: r = (Birth Rate + Immigration Rate) - Death Rate.
In this case, the Birth Rate is 7.7 per thousand, the Death Rate is 9.8 per thousand, and net migration rate (which is equivalent to the Immigration Rate for this calculation) is 0.55 per thousand. Therefore, substituting these values into our formula, we get: r = (7.7 + 0.55) - 9.8, which simplifies to: r = -1.55 per thousand.
This means that Japan's population is decreasing at a rate of 1.55 per one thousand people each year when birth rate, death rate, and net migration are taken into account.
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