Bandura found that children who witnessed aggressive behavior being punished were far more likely to be aggressive than children who did not. please select the best answer from the choices provided t f

Answers

Answer 1

The given statement ''Bandura found that children who witnessed aggressive behavior being punished were far more likely to be aggressive than children who did not'' is false because

Bandura found that children who witnessed aggressive behavior being rewarded or not punished were more likely to be aggressive than children who did not witness such behavior. This is known as the social learning theory.

In Bandura's famous Bobo doll experiment, children were divided into three groups one group witnessed an adult model behaving aggressively towards a Bobo doll, another group witnessed a non-aggressive adult model playing with other toys, and the third group did not witness any adult model.

The results showed that children who witnessed the aggressive behavior being punished were less likely to imitate the behavior, while those who witnessed the aggressive behavior being rewarded or not punished were more likely to imitate the behavior. This suggests that children learn through observation and modeling, and that consequences play an important role in shaping behavior.

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Related Questions

Which of the following is the correct alignment for repelling magnets?*
1 point
Option 1
Option 2
HELP !!!

Which of the following is the correct alignment for repelling magnets?*1 pointOption 1Option 2 HELP !!!

Answers

Answer:

option 2

Explanation:

Because opposite poles attract while same poles repel

that why it is option 2

Option 2

Because opposite poles attract, same poles repel

Camden constructs a model of a double convex lens using two clear plastic circles that are round on one side and flat on the other. He attaches the circles at the edges. How does his model look?

Answers

Using two circular, flat, clear plastic circles that he attaches at the edges, Camden creates a model of a double convex lens that appears thicker in the center and thinner at the edges.

What do you call a double convex lens?

Bi-convex (Double-convex) lenses focus parallel light rays to a single point similarly to plano-convex lenses because they have the same radius of curvature on both sides of the lens. As a general rule, bi-convex lenses work best with conjugate ratios between 5:1 and 1:5.

By twice refractively (bending) the light rays from a distant object, a double convex lens, also known as a converging lens, concentrates the diverging, or blurred, light rays.

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A machines mechanical advantage is the number of times the machine multiplies the input force. True or False?

Answers

Answer:

The answer is True

Explanation:

~FuntimeFazbear87

A car driving down the road runs out of gasoline. Which of Newton’s laws explains why the car continues to move without gasoline?

Answers

Answer:

because the car needs gas so why wouldnt it stop working

Explanation:

An airplane travels for 2.5 hours at an average rate
of 130 miles per hour. Use the distance formula, d=rt, to find how
far the plane travels.

Answers

The plane travels a distance of 325 miles if the airplane travels for 2.5 hours at an average speed of 130 miles per hour. Using the distance formula (d = rt), we can calculate the distance.

To find the distance traveled by the airplane, we can use the distance formula, which is represented as d = rt. In this formula, "d" represents the distance, "r" represents the rate or speed at which the object is traveling, and "t" represents the time taken for the travel.

Given that the airplane travels for 2.5 hours at an average rate of 130 miles per hour, we can substitute these values into the formula. The rate of the airplane is 130 miles per hour, and the time taken is 2.5 hours.

Using the formula, we can calculate the distance traveled as follows:

d = rt

d = 130 mph × 2.5 hours

Multiplying the rate (130 mph) by the time (2.5 hours) gives us:

d = 325 miles

Therefore, the airplane travels a distance of 325 miles during the 2.5 hours of travel at an average rate of 130 miles per hour.

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The first 20 meters of a 100-meter dash are covered in 3.5 seconds by a sprinter who starts from rest and accelerates with a constant acceleration. The remaining 80 meters are run with the same velocity the sprinter had after 3.5 seconds.

A. Determine the sprinter's constant acceleration during the first 3.5 seconds.

B. Determine the sprinter's velocity after 3.5 seconds have elapsed

C. Determine the total time needed to run the full 100 meters.​

Answers

Answer:

See below

Explanation:

A ) distance = 1/2 a t^2    <==== when starting from rest

          20    = 1/2 (a) (3.5^2)      shows a = 3.27 m/s^2

B)   Velocity(at 3.5 s)   =   a t   = 3.27 * 3.5 = 11.42 m/s

C)    3.5 seconds      +    80 m / 11.42 m/s = 10.5 s

The populations P (in thousands) of a particular county from 1971 through 2014 can be modeled byP = 71.7e0.0345twhere t represents the year, with t = 1 corresponding to 1971.(a) Use the model to complete the table. (Round your answers to the nearest whole number.)YearPopulation1980101240 Correct: Your answer is correct.1990142949 Correct: Your answer is correct.2000201843 Correct: Your answer is correct.2010285000 Correct: Your answer is correct.(b) According to the model, when will the population of the county reach 350,000?2018 Incorrect: Your answer is incorrect.

Answers

ANSWERS

(a) Year - Population

• 1980 - 101,240

,

• 1990 - 142,949

,

• 2000 - 201,843

,

• 2010 - 285,000

(b) 2016

EXPLANATION

(a) The population (in thousands) each year is given by,

\(P=71.7\cdot e^{0.0345t}\)

If t = 1 represents year 1971, then for each year we have to find the difference between the year and 1970.

For year 1980,

\(P=71.7\cdot e^{0.0345(1980-1970)}\approx101.240\)

The population is 101,240.

For year 1990,

\(P=71.7\cdot e^{0.0345(1990-1970)}\approx142.949\)

The population is 142,949.

For year 2000,

\(P=71.7\cdot e^{0.0345(2000-1970)}\approx201.843\)

The population is 201,843.

For year 2010,

\(P=71.7\cdot e^{0.0345(2010-1970)}\approx285.000\)

The population is 285,000.

(b) In this problem we're given the population 350,000 and we have to find in what year the county will reach that population. In other words, we have to find t and then add that to 1970 to find the year.

Let's solve for t,

\(P=71.7\cdot e^{0.0345t}\)

Divide both sides by 71.7,

\(\begin{gathered} \frac{P}{71.7}=\frac{71.7}{71.7}\cdot e^{0.0345t} \\ \frac{P}{71.7}=e^{0.0345t} \end{gathered}\)

Apply natural logarithm to both sides,

\(\begin{gathered} \ln \frac{P}{71.7}=\ln e^{0.0345t} \\ \ln \frac{P}{71.7}=0.0345t \end{gathered}\)

Divide both sides by 0.0345,

\(\begin{gathered} \frac{\ln \frac{P}{71.7}}{0.0345}=\frac{0.0345t}{0.0345} \\ \frac{\ln\frac{P}{71.7}}{0.0345}=t \end{gathered}\)

And finally replace P and solve. Remember that P is in thousands of years, so we have to replace it by 350,

\(t=\frac{\ln \frac{350}{71.7}}{0.0345}=45.955\approx46\)

This is 46 years after 1970,

\(1970+46=2016\)

Let's see what's the population in 2016 to check the answer,

\(P=71.7\cdot e^{0.0345(2016-1970)}\approx350.546\)

It is a bit more than 350,000. But let's see what's the population in 2015,

\(P=71.7\cdot e^{0.0345(2015-1970)}\approx338.658\)

In 2015 population of the county won't reach 350,000. Thus, the county will have a population of 350,000 in 2016

If a tennis ball has a velocity of 18 m/s and a momentum of 1.06 kg. m/s, what is the mass of the tennis ball in grams?
Round the answer to two significant figures.
Blank grams

Answers

Answer:

59g

Explanation:

The tennis ball with a velocity of 18 m/s and momentum of 1.06 kg m/s then the mass of the tennis ball in grams will be 59 grams (approx) two significant figures.

What is Momentum?

Regardless of the frame of reference, momentum is a conserved quantity in any inertial frame, which means that if an enclosed system is not subject to outside influences, its total linear momentum remains constant.

Additionally, momentum is preserved in general relativity, electrodynamics, quantum mechanics, quantum field theory, and special relativity (using a modified formula). It is a manifestation of translational symmetry, one of the basic symmetries of space and time.

According to the question, the given values are :

Velocity, v = 18 m/s

Momentum, p = 1.06 kg m/s

p = m × v

1.06 kg m/s = m × 18 m/s

m = 1.06 / 18

m = 0.0589 kg or

m = 58.9 grams or 59 grams approx in two significant figures.

So, the mass will be 59 grams.

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which turtle is going faster Apolo berry or Charlie?

which turtle is going faster Apolo berry or Charlie?

Answers

Answer:

i think it is C means charlie

bats use echolocation to navigate. they can emit ultrasonic waves with frequencies as high as 1.0×10^5 hz. What is the wavelength of such a wave? The speed of sound in air is 340 m/s.

Answers

The wavelength of an ultrasonic wave with a frequency of 1.0×10^5 Hz, given the speed of sound in air as 340 m/s, is approximately 3.4 mm.

The wavelength of a wave can be calculated using the formula λ = v/f, where λ represents the wavelength, v is the velocity or speed of the wave, and f is the frequency of the wave.

In this case, the frequency is given as 1.0×10^5 Hz, and the speed of sound in air is 340 m/s. By substituting these values into the formula, we can determine the wavelength.

λ = 340 m/s / (1.0×10^5 Hz) = 3.4×10^-3 m = 3.4 mm

Therefore, the wavelength of the ultrasonic wave emitted by bats, with a frequency of 1.0×10^5 Hz, is approximately 3.4 mm.

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what happen to internal energy of water at 0 degree?

Answers

Answer:

internal energy apparently increases.

A meter stick hurtles through space at a speed of 0. 95c relative to you, with its length perpendicular to the direction of motion. You measure its length to be equal to.

Answers

Answer:

Explanation:

Caty  ,  Use   the relativity formula for length.  ( they teach this in H.S. ? )  it's from my Modern Physics in college, A 300 level class  

L = \(L_{0}\)\(\sqrt{1-\frac{v^{2} }{c^{2} } }\)

L = 3  \(\sqrt{1-\frac{.95^{2} }{1^{2} } }\)

L = 0.9367496998  meters

L = 0.94 meters approx

An object is thrown downward from the top of a 175 meter building with an initial speed of 10m/s

An object is thrown downward from the top of a 175 meter building with an initial speed of 10m/s

Answers

Answer:

Explanation:

we can look for the final velocity of the object using the eqaution of motion as shown:

v² = u²+2gH

v is the  final velocity

u is the initial velocity = 10m/s

g is the acceleration due to gravity = 9.81m/s²

H is the height of the object = 175m

Subxtitute the given parameters inti the formula and get v:

v² = 10²+2(9.81)(175)

v² = 100+3433.5

v² = 3533.5

v = √3533.5

v = 59.44m/s

Hence the final velocity of the object is 59.44m/s

Heat transfer between two substances is affected by specific heat and the
O chemical composition of the substances.
O state of matter of the substances at room temperature.
othermal equilibrium of the substances.
O amount of time and area of physical contact between the substances.

Answers

The correct answer is D. Amount of time and area of physical contact between the substances.

Explanation:

Heat transfer refers to the flow of thermal energy or heat between two or more objects. This process involves multiple factors and implies heat from the hottest object goes to the coldest one until there is an equilibrium. To begin, heat transfer depends on the amount of thermal energy in the objects because objects must have a different amount of thermal energy for heat to flow.

Besides this, the amount of energy that flows depends on the time and the contact between the substances of objects. Indeed, objects need to be in contact or close to each other for heat to transfer, and the time needs to be enough for the process to occur. For example, if you place a pot over the fire just for a few seconds it is likely the heat transferred is minimal, which does not occur if you leave the pot more time. At the same time if the pot is in close contact with fire more heat will be transferred.-

Answer:

the answer is D on edginuity.

Explanation:

what is grandfather paradox alteration?

Answers

The grandfather paradox alteration is a concept in the field of time travel that explores the consequences of a person traveling back in time and altering events in such a way that it prevents their own existence.

The paradox arises when a person travels back in time and kills their own grandfather before their father or mother is conceived, thereby preventing their own birth. This creates a paradox because if the person never existed, they could not have traveled back in time to alter events in the first place.

The grandfather paradox alteration is often used to explore the potential dangers and implications of time travel, as well as the concept of causality and how it relates to time. It is also used to examine the idea of alternate timelines and how changes in the past can create a different present or future.

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he Big Bang Theory suggests....


a

The universe began in an instant.

b

The universe was born from clouds of dust and gas.

c

The single point containing the universe exploded and the universe stretched and expanded.

d

Gravity began to form stars and galaxies from clouds of dust and gas.

e

Both A and C.

f

Both B and C.

g

None of the above.

Answers

Answer:

C

Explanation:

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Answer:

i think a and c

Explanation:

What is the best description of sound waves?

A. A source vibrates up and down, causing air molecules to move up and down perpendicular to the direction the wave is transmitted.

B. A source vibrates back and forth, causing air molecules to move back and forth in the same direction that the wave is transmitted.

C. A source vibrates up and down and back and forth, causing air molecules to move in a circular motion as the wave is transmitted.

D. A source ejects a ring of high-velocity air molecules that travel from the source to a listener.

Answers

Answer:

If im right the answer should be D

A seller on the internet claims to have pieces of a wooden statue that are 2000 years old. You are asked to date the wood to see whether the age is correct. The 20g sample you receive has an activity of 15 counts per second. For living wood. 20g would have an activity of 16 counts per second. Estimate the age of the wood and women’s on weather the sellers claims are true

Answers

Incirjjceincirdjicjr

the photos below show four pairs of objects. which pair of objects is experiencing the greatest gravitational force.A. the person and dog B. The person and the ball C. the person and earth D. the person and the building

Answers

Answer:

C.

Explanation:

the earth has a high greavitational pull

Answer: C the person and earth

Explanation: I just answered it on a p e x

What happens when you push or pull a water tube

Answers

The thing that happens when you push or pull a water tube is that the force makes the tube to speed up, slow down, or be in one place.

It is very hard when pulling  water and if a person need to consistently pull air out of the tube before water makes it to the pump, it is very  difficult and some pumps may or cannot do it.

What is the pulling about?

In regards to pushing, when a person is pushing above the Center of Gravity, one is pushing the said object into the ground and thus is increasing the rate of friction.

If a person is pulling you are said to be pulling above the Center of Gravity and lowering friction.

So, The thing that happens when you push or pull a water tube is that the force makes the tube to speed up, slow down, or be in one place.

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An environmental scientist performs research to discover what is in the solid
garbage of the average American family. She calculates these amounts in
kilograms per year. The categories are paper, yard waste, metals, glass, plastics,
food scraps, and "other." Which kind of graph should she use to present her
finding, and how should the graph be labeled?
A. She should use a line graph. The x-axis should be labeled "Kind
of garbage." The y-axis should be labeled "kilograms per year."
B. She should use a circle graph. Each segment of the graph should
be labeled "number of kilograms per year."
C. She should use a bar graph. The bottom of each bar should be
labeled "kilograms per year." The vertical side should be labeled
"type of garbage."
D. She should use a bar graph. The bottom of each bar should be
labeled with the category of garbage. The vertical side should
have a scale and be labeled "kilograms per year."

Answers

Answer:

D i took the test

Explanation:

Answer:

The answer is D.

Explanation:

The other ones just don't make sense. AT ALLLLLL!!!!!!!!!!!!!!!!!!!!!!!

How many significant figures are in the number 08.40001
07
3
O 6
O 5

Answers

Answer:

5

Explanation:

every number after the decimal

4. Explain What happens
to water when an object
hits it?

Answers

when object hit at large amount of force the water act on the object high force so
pressure depend on area

A hockey player skates across a rink of length 75m in 8.9 seconds. What is the average speed of the hockey player? The hockey player is moving at a speed of 9.5 m/s. If it takes him 2 seconds to come to a stop under constant acceleration, how far does he travel while stopping?

Answers

The average velocity is given by

\(v=\frac{d}{t}\)

Where d is the distance covered and t is the time taken.

For the given case, we have

d = 75 m

t = 8.9 s

\(v=\frac{d}{t}=\frac{75}{8.9}=8.43\; \frac{m}{s}\)

Therefore, the average speed of the hockey player is 8.43 m/s

The hockey player is moving at a speed of 9.5 m/s.

A car driving at 15 m/s accelerates 3.32 m/s2 for a distance of 250 meters. What is the car's final velocity?

Answers

The final velocity of the car, given it accelerated 3.32 m/s² for a distance of 250 meters is 43.42 m/s

From the question given above, the following data were obtained:

Initial velocity (u) = 15 m/sAcceleration (a) = 3.32 m/s²Distance (s) = 250 metersFinal velocity (v) =?

How to determine the final velocity of the car

The final velocity of the car can be obtained as illustrated below:

v² = u² + 2as

v² = 15² + (2 × 3.32 × 250)

v² = 225 + 1660

v² = 1885

Take the square root of both side

v = √1885

v = 43.42 m/s

Thus, we can conclude that the final velocity of the car is 43.42 m/s

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which factor in the drake equation is best known? which factor in the drake equation is best known? the chance that life will arise on an earthlike planet. the number of stars in the milky way. the number of earth-like planets per system. how long a technological civilization will last.

Answers

Out of the four factors in the Drake equation, the factor that is best known is the number of stars in the Milky Way. This is because it is based on observations and data gathered by astronomers over many years. The estimated number of stars in the Milky Way is around 100 billion, give or take a few billion.

On the other hand, the other three factors - the chance that life will arise on an Earth-like planet, the number of Earth-like planets per system, and how long a technological civilization will last - are more uncertain and subject to ongoing research and debate. However, recent advances in exoplanet studies have provided more information about the frequency of Earth-like planets, and astrobiologists are working to better understand the conditions necessary for the emergence and evolution of life. As for the longevity of technological civilizations, this is a difficult question to answer because it depends on so many unknown factors, including the potential impact of catastrophes like asteroid impacts or climate change.

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A 5 kg object is moving downward at a velocity of 12 m/s and is
currently 2.6 meters above the ground.

calculate its kinetic energy
calculate its potential energy
calculate its mechanical energy

Answers

Answer:

the first one i think

Explanation:

A projectile is launched from ground level with an initial velocity of v0 feet per second. Neglecting air resistance, it’s height in feet t seconds after launch is given by s= -16t^2+v0t. Find the time(s) that the projectile will (a) reach a height of 272 ft and (b) return to the ground when v0 is 32 feet per second

Answers

We know that the inital velity for this motion is 32 ft/s, this means that the height is given by:

\(s=-16t^2+32t\)

a)

To determine at what time the projectile will reach 272 we plug s=272 in the equation above and solve for t:

\(\begin{gathered} -16t^2+32t=272 \\ 16t^2-32t+272=0 \\ t^2-2t+17=0 \\ \text{ then} \\ t=\frac{-(-2)\pm\sqrt[]{(-2)^2-4(1)(17)}}{2(1)} \\ t=\frac{2\pm\sqrt[]{-64}}{2} \end{gathered}\)

since the discrimant of the equation is negative this means that the equation does not have real solutions.

This means that the projectile does not reach that height.

b)

To find at what time the projectile return to the ground we equate the expression for the height to zero and solve for t:

\(\begin{gathered} -16t^2+32t=0 \\ t(-16t+32)=0 \\ \text{then} \\ t=0 \\ or \\ -16t+32=0 \\ 16t=32 \\ t=\frac{32}{16} \\ t=2 \end{gathered}\)

Therefore it takes 2 seconds for the projectile to return to the ground

it takes 0,5 s to complete the pattern from A to H and the wavelength is 20cm. What is the period of the wave?

Answers

The time period of the wave is 0.5 seconds.

To find the answer, we have to know more about the time period.

What is the period of the wave?The whole to and fro motion of the oscillating body is regarded as one oscillation.The frequency of the body is the number of oscillations it performs in a second.The time it takes for a body to complete an oscillation is its duration.Time period is calculated by dividing the wave's total travel time by the total number of oscillations it performs. Consequently, the time period here will be,

                       \(T=\frac{t}{N} =\frac{0.5}{1}\)

where; t is the time taken to complete one oscillation(from A to H) and N is the number of patterns completed.

Thus, we can conclude that, The time period of the wave is 0.5 seconds.

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0

to the horizontal. (a) By how much does the ball clear or fall short (vertically) of clearing the crossbar? (Enter a negative answer if it falls short.) m (b) Does the ball approach the crossbar (and cross above or beneath it) while still rising or while falling? rising falling

Answers

a) The initial vertical velocity is 0 m/s, the equation simplifies to Δy = (1/2) * g * t^2. b) The ball will approach the crossbar while falling.

To determine the vertical clearance of the ball over the crossbar and whether the ball approaches the crossbar while rising or falling, we can analyze the projectile motion of the ball.

Launch angle = 0 degrees (horizontal)

Initial velocity (magnitude) = v (unknown)

Crossbar height = h (unknown)

Gravity acceleration = g ≈ 9.8 m/s²

(a) Vertical Clearance:

Since the launch angle is 0 degrees, the ball is launched horizontally. In this case, the vertical motion is influenced by gravity only, and there is no initial vertical velocity. The equation for the vertical displacement (clearance) can be determined using the formula:

Δy = v_initial * t + (1/2) * g * t^2

Since the initial vertical velocity is 0 m/s, the equation simplifies to:

Δy = (1/2) * g * t^2

(b) Approach while Rising or Falling:

Since the ball is launched horizontally (0 degrees), it will not have any vertical velocity during its entire trajectory. Therefore, the ball will approach the crossbar while falling.

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