When you drive from the city to a distant farm, the temperature gets because of the ?

Answers

Answer 1
Answer:

Answer:

Cooler

Explanation:

when you drive from city to farm the temperature of the farm is cooler than the temperature in the city.

this is because in city the population is very high as compare to the farms so, the activity  of the city is also high which lead to increase the energy consumption of the area.

air pollutants, green house gases are also present more in the city which leads to increase the temperature of the city.

this effect is called urban heat island effect.

Answer 2
Answer: Cooler, urban heat island effect.

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The type of wave that can be used to transmit your voice on a cell phone and to cook your food in an oven is a(n)a. X ray.
b. gamma ray.
c. microwave.
d. ultraviolet wave.

Answers

The answer is
c. Microwave

Why are the inner planets not made of light elements?

Answers

Outter planets lol !

two identical freight cars roll without friction towards each other on a level track. one car rolls 2 m/s the other 1 m/s. after the cars collide they couple and roll together with a speed of

Answers

The cars coupled and rolled together at a speed of 1.5 m/s.

What is law of conservation of linear momentum?

According to the law of conservation of linear momentum, the sum of the momentum before and after the collision must be equal.

m₁ u₁ + m₂u₂ = m₁ v₁ + m₂ v₂

where m₁ and m₂ is the mass of the collided objects, u₁ and u₂ are their initial speed while v₁ & v₂ is their final speed.

The linear momentum of an object can be defined as the product of the mass of the object times the velocity of that object. Conservation of momentum is a property held by an object where the total amount of momentum never changes.

Given the initial velocity of the car is u₁ = 2 m/s and the other car is u₂ = 1 m/s.

The masses of both cars is identical, m₁ = m₂ = m

From the law of conservation of momentum, find the speed of coupled cars (v),

m₁ u₁ + m₂ u₂ =m₁ v₁ + m₂v₂

m × 2 + m ×1 = m × v + m × v

2 + 1 = 2 v

2v = 3

v = 1.5 m/s

Therefore, the speed of the coupled cars is equal to 1.5 m/s.

Learn more about the law of conservation of linear momentum, here:

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If they have identical weights the momentum is 2*m for one and -1*m for the other one. The total momentum is m, while the total mass is 2*m, giving a final speed of 0.5 m/s :|

Which of the following has the greatest frequency? a loud middle c note a soft middle c note a note lower than middle c a note higher than middle c?

Answers

a note higher than middle c has the greatest frequency. Hence option D is correct.

What is Wave ?

Wave is is a disturbance in a medium that carries energy as well as momentum . wave is characterized by amplitude, wavelength and phase. Amplitude is the greatest distance that the particles are vibrating. especially a sound or radio wave, moves up and down. Amplitude is a measure of loudness of a sound wave. More amplitude means more loud is the sound wave.

Wavelength is the distance between two points on the wave which are in same phase. Phase is the position of a wave at a point at time t on a waveform. There are two types of the wave longitudinal wave and transverse wave.

Hence option D is correct.

To know more about frequency :

brainly.com/question/5102661

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Answer:

a note higher than middle c

Explanation:

In a certain semiconducting material the charge carriers each have a charge of 1.6 x 10-19C. How many are entering the semiconductor per second when the current is 2.0 nA?

Answers

Answer:

1124923453 electrons

Explanation:

The formula for charge in coulomb ,C =Current in amperes, A * Time in seconds, s

Given in question ;

Charge = 1.6 * 10⁻¹⁹ C

Current = 2.0 nA = 2*e⁻⁹ A

Calculate time in seconds as

1.6 * 10⁻¹⁹ = 2*e⁻⁹ * t

1.6 * 10⁻¹⁹ /2*e⁻⁹  = t

6.48e⁻¹⁶  s = t

So using t=6.48e⁻¹⁶  s and current =2*e⁻⁹ A , the charge will be;

C = 2*e⁻⁹  * 6.48e⁻¹⁶  =1.799e⁻¹⁰ C

But 1 coulomb = 6.25 x 10¹⁸ electrons

so 1.799e⁻¹⁰ C = ?,,,,{ 6.25 x 10¹⁸} *{1.799e⁻¹⁰} =  1124923453.06 electrons

What happens when there is a change in pressure at any point in a fluid

Answers

A change in pressure applied to an enclosed fluid is transmitted undiminished to every point of the fluid and to the walls of the container. This is a statement of Pascal's Principle, which is the basis of the hydraulic jack you see lift cars at the garage.