When your classmates at school work cooperatively on a project, it is an example of a positive influence by(1 point)

your heredity

your culture

a peer group

a psychologist.

all your answer besides number one were wrong

a peer group.

Your best friend always looks on the bright side and is very positive. Your friend has which personality trait?(1 point)Responsesextroversionextroversionagreeablenessagreeablenessconscientiousnessconscientiousnessemotional stability

emotional stability

Use this graph for the following question.Which of the following people is most likely to have the highest self-esteem?(1 point)Responses

a 15-year-old male

a 15-year-old female

a 50-year-old male

a 50-year-old female

Unfortunately, the graph you mentioned is not visible in the current chat format. However, age and gender alone cannot determine an individual's self-esteem accurately. Self-esteem is influenced by various factors such as personal experiences, achievements, relationships, and personal perception. So, it is not possible to accurately determine which person is most likely to have the highest self-esteem based solely on age and gender.

Which statement correctly identifies the relative levels of kinetic and potential energy in a hydroelectric dam?(1 point)Responses

Kinetic and potential energy are both highest at the top.

Kinetic energy is highest at the bottom; potential energy is highest at the top.

Kinetic energy is highest at the top; potential energy is highest at the bottom

Kinetic and potential energy are both highest at the bottom.

Kinetic energy is highest at the bottom; potential energy is highest at the top.

Two different rivers have drops that are the same height. In river A, this section of the river is a waterfall. In river B, this section has a hydroelectric dam. In what way does the energy differ between the drops in the two rivers?(1 point)Responses

The kinetic energy of the water would be less at the bottom of the drop in river A than in river B.

The potential energy of the water would be less at the top of the drop in river A than in river B

The kinetic energy of the water would be greater at the bottom of the drop in river A than in river B.

The potential energy of the water would be greater at the top of the drop in river A than in river B.

The potential energy of the water would be greater at the top of the drop in river A than in river B.

The turbines can be seen inside this hydroelectric dam. Why are they located at that particular height?(1 point)Responses

There is a small drop, so the water will still have a lot of kinetic energy to transfer to the turbine.

There is a large drop, so the water will have a lot of kinetic energy to transfer to the turbine.

There is a small drop, so the water will still have a lot of potential energy to transfer to the turbine.

There is a large drop, so the water will have a lot of potential energy to transfer to the turbine.

There is a large drop, so the water will have a lot of potential energy to transfer to the turbine.

A team of engineers is working with a wind turbine. The team is working with a model and testing different angles for the blade of the wind turbine. What would the research question be for this team?(1 point)ResponsesWhich angle converts the largest percentage of kinetic energy from the wind into potential energy of the turbine?Which angle converts the largest percentage of kinetic energy from the wind into potential energy of the turbine?Which angle converts the largest percentage of potential energy from the wind into potential energy of the turbine?Which angle converts the largest percentage of potential energy from the wind into potential energy of the turbine?Which angle converts the largest percentage of kinetic energy from the wind into kinetic energy of the turbine?Which angle converts the largest percentage of kinetic energy from the wind into kinetic energy of the turbine?Which angle converts the largest percentage of potential energy from the wind into kinetic energy of the turbine?

Which angle converts the largest percentage of kinetic energy from the wind into potential energy of the turbine?

I apologize for the incorrect answers. The correct research question for the team of engineers working with a wind turbine would be:

Which angle maximizes the conversion of wind energy into electrical energy by optimizing the kinetic energy transfer to the turbine?