Advanced Wireless Services (AWS) is a wireless telecommunications spectrum band used for mobile voice and data services, video, and messaging. The AWS band uses frequencies in several segments: from 1695 to 2200 MHz. a) Determine the corresponding range of wavelengths used by the AWS mobile devices. b) To what region/band of electromagnetic spectrum does the range belong

Answers

Answer 1

Given data

*The given frequency is

[tex]f_1_{}=1695\text{ MHz}=1695\times10^6\text{ Hz}[/tex]

*The another given frequency is

[tex]f_2=2200\text{ MHz=}2200\times10^6\text{ Hz}[/tex]

*The given speed of light is c = 3.0 × 10^8 m/s

(a)

The formula for the wavelength is given as

[tex]\lambda_1=\frac{c}{f_1}[/tex]

Substitute the known values in the above expression as

[tex]\begin{gathered} \lambda_1=\frac{(3\times10^8)}{(1695\times10^6)^{}} \\ =0.176\text{ m} \end{gathered}[/tex]

The another wavelength for the another frequency is calculated as

[tex]\begin{gathered} \lambda_2=\frac{c}{f_2} \\ =\frac{(3.0\times10^8)}{(2200\times10^6)} \\ =0.136\text{ m} \end{gathered}[/tex]

(b)

Radio spectrum is an electromagnetic spectrum where the frequency range belongs of wireless telecommunication.


Related Questions

How much work is done pushing a block 200 m with a force of 30 newtons?​

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90 J

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Conditions for uniform circular motion are constant speed and circular path. (True or false)

Answers

Uniform circular motion is a motion that is uniform in terms of speed and circular in terms of its path.

Uniform means constant speed and its path is circular.

Thus, the statement is true.

how far could you pedal a bicycle at 15 km/hkm/h on the energy in 3.0 galgal of gas? (1 galgal of gas has a mass of 3.2 kgkg .)

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The amount of effort or energy transferred over a given period of time is referred to as an object's mechanical power. The SI unit for mechanical power is WATT. It is a scalar number.

What does a gallon of gasoline cost?

3.7855 litres

A gallon is equal to 3.785 liters, 128 fluid ounces, 4 quarts, 8 pints, or 16 cups in American measures.

What's the weight of a gallon of gas?

A gallon of regular fuel (like gasoline) weighs six pounds, according to the Science and Technology Desk Reference. Contrarily, a gallon of water weighs around 8.4 pounds.

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what element will transfer heat most quickly?

Answers

Metals. Bc it transfers heat the fastest

A spring has a equilibrium length of 0. 100 m. When a force of 40. 0 n is applied to the spring, the spring has a length of 0. 140 m. What is the value of the spring constant of this spring?.

Answers

The value of the spring constant of this spring will be 50,000 N/m, which has a equilibrium length of 0.100m applied by 40N force.

Formula for the spring force is given as-

F = (1/2) kx²

where, F = force, k= spring constant and x = change in length of the spring.

Change in length of the spring = Changed length - equilibrium length

Change in length of the spring(x) = 0.140m - 0.100m = 0.040m

Putting the values as F = 40.0 N, x = 0.040m, k =?

F = (1/2) kx²

40 = (1/2) × k × (0.040)²

k = 80/0.0016

k = 50,000 N/m

Hence, the value of the spring constant of this spring will be 50,000 N/m.

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34. What temperature in the graph below indicates that heat is being used to "break links" binding liquid molecules--that is, the region where the substance is vaporizing?Select one:a. 120°b. 80°c. 60°d. 20°

Answers

We know that in a change of state heat is used to break the links between the molecules or atoms of the substance but the temperature remains the same; in the graph shown we notice that we have two portions where the temperature remains constant 20° and 120°. Since vaporizing happens at greater temperature that solid to liquid change of state we conclude that the region where this happens is 120°; therefore, the answer is A.

Hello, I needed help with the question boxes on what to fill in.

Answers

Given:

To find:

Fill in the blanks

Explanation:

1) Energy can undergo conversion, changing from one form to another. For example, a wind turbine converts the mechanical energy of the wind into electric energy in the power grid. This power grid can then be converted into thermal energy by an electric heater.

2) Solar panels generate electrical energy by taking radiant energy from the sun and having it undergo conversion. This process does obey the law of conservation of energy because energy isn't randomly created, but it is simply converted.

What is the maximum speed at which a car can safely travel around a circular track of radius 142 meters if the coefficient of friction between the tires and the road is 1.07? Include units in your answer. Answer must be in 3 significant digits.

Answers

Given that the radius of the circular path is r = 142 m and the coefficient of the friction is

[tex]\mu=1.07[/tex]

The condition for the car to travel safely is

Frictional force = centrifugal force

[tex]\mu mg=\frac{mv^2}{r}[/tex]

Here, m is the mass of the car and the acceleration due to gravity is g = 9.8 m/s^2.

v is the maximum speed of the car.

[tex]\begin{gathered} v=\sqrt[]{ugr} \\ =\sqrt[]{1.07\times9.8\times142} \\ =38.58\text{ m/s} \end{gathered}[/tex]

A football is punted at an angle with a velocity of 29.2 m/s. If the ball has a total hangtime of 6.7 how long does it take to reach the top of the trajectory?

Answers

Answer:

So your gonna have to calculate the speed

Explanation:

what is the apparent weight of a 95 KG astronaut on this rocket

Answers

Given:

• Acceleration of rocket = 28.0 m/s²

,

• Mass of astronaut = 95 kg

Let's find the apparent weight of the astranaut.

In a direct rocket motion, as we are coming towards the Earth the weight reduces while as the rocket is going up, you feel more weighted.

Now, to find the apparent weight of the astranaut, apply the formula:

[tex]A_w=m(g+a)[/tex]

Where:

Aw is the apparent weight

m is the mass = 95 kg

g is acceleration due to gravity = 9.8 m/s²

a is the acceleration of the rocket = 28.0 m/s²

Thus, we have:

[tex]\begin{gathered} A_w=95(9.8+28) \\ \\ A_w=95(37.8) \\ \\ A_w=3591\text{ N }\approx3.591\text{ kN} \end{gathered}[/tex]

Therefore, the apparent weight of the astranaut is 3.591 kN

ANSWER:

3.591 kN

1000 kg car is driving forward with a speed of 25 m/s. it comes to rest in a distance of 100m what is its change in kinetic energy during this process

Answers

If a 1000 kg car is driving forward with a speed of 25 m/s and it comes to rest in a distance of 100m, the change in kinetic energy during this process is - 312.5 KJ

KE = 1 / 2 m v²

KE = Kinetic energy

m = Mass

v = Velocity

m = 1000 kg

Initially,

v = 25 m / s

KEi = 1 / 2 * 1000 * 25²

KEi = 312500 J

Finally,

v = 0, since the object comes to rest.

KEf = 1 / 2 * 1000 * 0

KEf = 0

ΔKE = KEf - KEi

ΔKE = Change in kinetic energy

ΔKE  = 0 - 312500

ΔKE = - 312500

ΔKE = - 312.5 KJ

Therefore, the change in kinetic energy during this process is - 312.5 KJ

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A lighthouse is located on a small island 5 km away from the nearest point p on a straight shoreline and its light makes nine revolutions per minute. How fast is the beam of light moving along the shoreline when it is 1 km from p? (round your answer to one decimal place. ).

Answers

The beam of light moving along the shoreline is at a rate of 293.9 km/min. The result is obtained by using the differentiation formula.

What is the differentiation formula?

The differentiation formula is commonly used to calculate the rate of change of a function.

Given the case a lighthouse on a small island 5 km away from the nearest point p on a straight shoreline. The light makes 9 revolutions/min.

When it is 1 km from p, how fast is the beam of light moving along the shoreline?

We have the angular speed of the beam.

dθ/dt = 9 rev/min

dθ/dt = 9 × 2π rads/min

dθ/dt = 18π rads/min

See the diagram in the attachment! We get √26 with the Pythagorean Theorem. The linear speed of the beam of light moving along the shoreline can be described in the differentiation of dx/dt.

tan θ = x /3

d/dt (tan θ) = d/dt (x/5)

sec² θ . dθ/dt = 1/5 . dx/dt

5 sec² θ . dθ/dt = dx/dt

dx/dt = 5 . (√26/5)² . 18π

dx/dt = 90 . 26/25 π

dx/dt = 93.6π

dx/dt ≈ 293.9 km/min

Hence, the linear speed of the beam of light moving along the shoreline is 293.9 km/min.

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Please help me complete. The second picture is the options you have to choose from from each

Answers

This drawing helps us understand the contribution of each the magnetic field of each wire. Wire 1 will contribute with positive field for everything on its left, and with negative field for everything on its right. The opposite is true for wire 2, so, if we analyse regions I, II and III:

Region I: Wire 1 contributes with positive and Wire 2 contributes with negative. As any point on region I will be closer to Wire 1, its contribution will be more significant, and the field will be positive

Region II: Wire 1 and 2 contribute with negative field. Thus, the resulting field will be negative

Region III: Wire 1 contributes with negative field and Wire 2 contributes with positive field. As any point on region III will be closer to Wire 2, its contribution will be more significant, and the field will be positive.

Now all we have to do is calculate the value of the fields. The field on point P1 will have positive contribution from Wire 2 and negative contribution from Wire 1, which will be:

[tex]P1=\frac{\mu_0*I}{2\pi d}-\frac{\mu_0*I}{2\pi(2d)}=\frac{4\pi *10^{-7}}{2\pi *11.4*10^{-2}}-\frac{4\pi *10^{-7}}{4\pi *11.4*10^{-2}}=0.8772\mu T[/tex]

The field on the midpoint (distance d/2 from each wire) will be negative, as the contribution from both wires will be negative, thus:

[tex]P_{med}=-2*\frac{4\pi *10^{-7}*5.4}{2\pi *(\frac{11.4}{2})*10^{-2}}=-37.8947\mu T[/tex]

The field on point P2 will be positive, which can be written as:

[tex]P2=\frac{\mu_0I}{2\pi *2d}-\frac{\mu_0I}{2\pi *(3d)}=\frac{4\pi *10^{-7}*5.4}{2\pi *(2*11.4*10^{-2})}-\frac{4\pi *10^{-7}*5.4}{2\pi *(3*11.4*10^{-2})}[/tex][tex]P2=1.5789\mu T[/tex]

Summary:

a) Pmed = -37.8947uT into the screen

b) P1 = 0.8772uT out of the screen

c) P2 = 1.5789uT out of the screen

Now, consider the special case where the block of mass m1 is not present. find the magnitude, t , of the tension in the rope. try to do this without equations; instead, think about the physical consequences.

Answers

Since the mass is not present, the tension in the rope T = 0 N.

What is tension in physics?

Tension, in physics, is be defined to be the pulling force transmitted axially by the means of a string, a rope, chain, or similar object. The opposite of tension could be compression.

At the atomic level, when atoms/molecules are pulled apart from each other and gain potential energy with a restoring force still existing, the restoring force might create tension.

Tension is a pulling force since it is exerted when a mass being pulled by a rope or a similar object. If the mass is not present, then there is no tension (pulling force) exerted by the rope, hence T = 0 N.

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where is thermocouple thermometer used

Answers

Explanation:

Thermocouples are used in applications that range from home appliances to industrial processes, to electric power generation, to furnace monitoring and control, to food and beverage processing, to automotive sensors, to aircraft engines, to rockets, satellites and spacecraft.

If you are on a moving train and you drop a ball, why does it land at your feet instead of flying backwards?

Answers

Answer:

cause you feet block the air

True or false. A small amount of mass can produce a large amount of energy

Answers

The satement is true.

This comes from the fact that, according to Einstein:

[tex]E=mc^2[/tex]

and since c² is a very large number then, if we find a way to convert all the mass in energy a small amount will produce a large amount of energy.

An object is moving to the right at a constant velocity. What will happen if a force of 20 n starts acting on it in the opposite direction?.

Answers

If a force of 20 n begins acting on the object in the opposite direction, its velocity will rise.

What happens when things are moving at a constant speed?

If there are no forces acting to accelerate or decelerate an object that is already moving with a constant speed, it will continue to move at that speed in a straight line. By defining force as a vector quantity, Newton helped to clarify the aforementioned statement.

Newton's first law of motion states that any object moving at a constant speed experiences no net external forces, so the total amount of forces acting on the object must be zero.

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Electron cloud definition

Answers

ANSWER:

STEP-BY-STEP EXPLANATION:

[tex][/tex]

How are testes and ovaries different?​

Answers

The testicles are the female gonads, whereas the ovaries are the male gonads. The production of gametes is one of the special traits and functions of gonads.

What distinguishes the ovaries and testes?

The gonads in males are the testes, whereas those in females are the ovaries. They both work to produce sex hormones and gametes (eggs and sperm). The ovaries are responsible for producing progesterone and estrogen as well as eggs. Sperm and the hormone testosterone are produced by the testes.

What features do ovaries and testes have in common?

By secreting steroid hormones and creating gametes, adult testes and ovaries both perform crucial functions in the reproductive system (Hossain et al., 2012). The healthy growth of both the gonadal somatic cells and germ cells is necessary for gonadal functional maintenance and gametogenesis.

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Last question please help!!!!!

Answers

Answer:

it is true

Explanation:

Answer:

True, changes of heat can be Endothermic or Exothermic only.

Explanation:

A 1000 n crate is lifted to a height of 3. 0 m. How much work is done to lift the crate?.

Answers

The work done in lifting a 1000 N crate 3.0 m high is 3000 Joules (J).

Here, we have been told that the mass of the crate is = 1000 N (i)

We have to lift up the crate to a height of = 3.0 m (ii)

The mass of the crate is given here in Newtons which is also the SI unit of Force.

We know that work is the product of force and distance moved in the direction of the force. The formula used for calculating the work done is

= W = Force * Distance moved (iii)

Using the values of (i), (ii) and putting them in the given formula (iii), we get = W = (1000)*(3)

= W = 3000 Joules

Therefore, we know that the work done in lifting a crate of mass/force to a height of 3.0 m is 3000 J.

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a sample of a gas is compressible; i.e., its volume can be significantly decreased. this is because multiple choice question. there are attractive forces between particles in the gas phase, whereas in the liquid and solid phases there are not. particles in the gas phase are smaller than they are in the liquid and solid phases. particles in the gas phase are separated by relatively large distances.

Answers

A sample of a gas is compressible; i.e., its volume can be significantly decreased because the particles in the gas phase are separated by relatively large distances.

A gas is a substance that has no constant size or form. Whilst inside a closed container, gasoline will amplify to fill the field. An instance of gas is the air you breathe. The gas interior of your digestive tract is fabricated from the air and different gases.

Traits of Gases :

* Gases have neither definite shape nor particular volume. They expand to the dimensions of their container.

* Gases are fluid and go with the flow effortlessly.

* Gases have low density, except compressed.

* Gases diffuse (mix and unfold out) and effuse (tour thru small holes).

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Object 1 has a mass (M1) and a velocity (V1). Object 2 has a mass half the size of object 1 and a velocity that is 3 times the speed, but in the opposite direction. They collide in a linear elastic collision. Find the final velocity of both objects in terms of M1 and V1. (reduce the final answer to one term, reduced as much as possible with no fractions or decimals in major divisions)

Answers

Answer:[tex]\begin{gathered} v_2=-(u_1+2v_1) \\ v_1=\frac{u_1-v_2}{2} \end{gathered}[/tex]Explanation:

Mass of object 1 = m₁

Velocity of object 1, = u₁

The mass of object 2 is half that of object 1

m₂ = m₁/2

The velocity of object 2 is three times the speed of object 1 but in the opposite direction

u₂ = -3u₁

The final velocity of both object is represented by v

Applying the principle of momentum conservation

[tex]\begin{gathered} m_1u_1+m_2u_2=m_1v_1+m_2v_2 \\ \\ m_1u_1+\frac{1}{2}m_1(-3u_1)=m_1v_1+\frac{1}{2}m_1v_2 \\ \\ m_1u_1-\frac{3(m_1u_1)}{2}=\frac{2m_1v_1+m_1v_2}{2} \\ \\ \frac{2m_1u_1-3m_1u_1}{2}=\frac{2m_1v_1+m_1v_2}{2} \\ \\ -m_1u_1=2m_1v_1+m_1v_2 \\ \\ m_1v_2=-m_1u_1-2m_1v_1 \\ \\ v_2=\frac{-m_1(u_1+2v_1)}{m_1} \\ \\ v_2=-(u_1+2v_1) \\ \\ \end{gathered}[/tex]

From the last equation, make v₁ the subject of the formula instead

[tex]\begin{gathered} v_2=-(u_1+2v_1) \\ \\ v_2=-u_1-2v_1 \\ \\ 2v_1=u_1-v_2 \\ \\ v_1=\frac{u_1-v_2}{2} \\ \\ \end{gathered}[/tex]

HELPSSJDIGFDiuea 50 ptss
Suppose you can lift a barrel or roll it up an inclined plane. In which scenario do you do more work?


Both are the same amount of work.


Lifting the barrel is more work.


Rolling the barrel is more work.


Neither do any work.

Answers

Rolling the barrel is more work.

What is work?

Work in physics is the energy that is transferred to or from an item when a force is applied along a displacement. In its simplest form, it equals the product of the force's magnitude and the distance traveled for a constant force directed in the direction of motion.

Work = force x distance. In units, Joules = Newtons x meters.

When a body is lift than angle is right angle so work done is zero as force and displacement is perpendicular while in case of rolling it is at theta angle so work is done in this case.  

Rolling the barrel is more work.

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At 2:00 p. M. Two cars start toward each other from towns 240 miles apart. If the rate of one car is 10 mph faster than the other, how fast does each car go if they meet at 5:00 p. M. ? if 3x represents the distance that the slower car traveled, then which expression represents the distance the faster car traveled? 3 x + 10 3 x + 30 3(240).

Answers

135 miles represents the distance the faster car traveled.

Just what is distance?

Distance is an object's overall movement, regardless of direction. Regardless of an object's starting or ending point, distance can be defined as the amount of ground it has travelled.

If we call the slower vehicle's speed S, the other vehicle's speed is S + 10 mph.

They've been on the road for three hours as of 5:00 p.m. The faster car travels 3(S+10) miles, while the slower one travels 3S miles.

However, the sum of the two distances has to be 240 miles, so 3S+3(S+10)=240,

3S+3S+30=240,

6S=210, and

S=35 mph.

The faster vehicle travels at 45 mph. We can see that 3S is equal to 3x, which means that x=S=35 mph and that the faster vehicle travels 3×45=135 miles.

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The element magnesium has 12 electrons. In how many energy levels are the electrons of magnesium?

Answers

Answer: energy level 2

Explanation:

i did this before

Answer: Magnesim’s electrons are in 3 energy levels .

Explanation: since magnesium has 12 electrons and first shell can only accommodate up to 2 electrons , as shown in picture too, magnesium will have 2 electrons in this first shell or energy level.

Now about rest 10 electrons, 8 will be in 2nd energy level and remaining 2 will be valance electrons and will occupy 3rd shell.


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Consider a father pushing a child on a playground merry-go-round. The system has a moment of inertia of 84.4 kg • m2. The father exerts a force on themerry-go-round perpendicular to its radius to achieve an angular acceleration of 4.44 rad/s2.(a) How long (in s) does it take the father to give the merry-go-round an angular velocity of 2.29 rad/s? (Assume the merry-go-round is initially atrest.)S(b) How many revolutions must he go through to generate this velocity?revolutions(C) If he exerts a slowing force of 270 N at a radius of 1.25 m, how long (in s) would it take him to stop them?s

Answers

a)

Since we have a constant angular acceleration we have that:

[tex]\alpha=\frac{\omega-\omega_0}{t}[/tex]

Plugging the values we know we have that:

[tex]\begin{gathered} 4.44=\frac{2.29-0}{t} \\ t=\frac{2.29}{4.44} \\ t=0.516 \end{gathered}[/tex]

Therefore it will take 0.516 (rounded to three decimals) seconds to achive this angular velocity.

b)

To find how many revolutions he needs we first calculate the change in angular position using the formula:

[tex]\begin{gathered} \omega^2-\omega^2_0=2\alpha(\theta-\theta_0) \\ (\theta-\theta_0)=\frac{\omega^2-\omega^2_0}{2\alpha} \\ (\theta-\theta_0)=\frac{2.29^2-0^2}{2(4.44)} \\ (\theta-\theta_0)=0.590551801 \end{gathered}[/tex]

Now we divide this change in angular position by 2pi (the angle equivalent to a revolution) to get the revolutions:

[tex]\frac{0.590551801}{2\pi}=0.094[/tex]

Therefore it takes 0.094 (round to three decimals) revolutions to get to this angular velocity.

c)

The torque is the force by the radius, then we have:

[tex]\tau=(270)(1.25)=337.5[/tex]

But the torque is also equal to the moment of inertia multiplied by the angular acceleration:

[tex]\tau=I\alpha[/tex]

Then we have:

[tex]\begin{gathered} 337.5=84.4\alpha \\ \alpha=\frac{337.5}{84.4} \\ \alpha=3.998815166 \end{gathered}[/tex]

Now we use the formula for angular acceleration to get the time:

[tex]\begin{gathered} -3.998815166=\frac{0-2.29}{t} \\ t=\frac{-2.29}{-3.998815166} \\ t=0.573 \end{gathered}[/tex]

Therefore it takes 0.573 seconds to stop the merry go round.

If you start with 500g of water in your pot, and after it boils away, the steam takes up 2 m3 of space, what is the density of the steam in g/m3?

Answers

Density of the steam will be 250 g/m³

What is density?

Density (volumetric mass density or specific mass) is the mass of matter per unit volume. The most common symbol for density is ρ (lowercase Greek letter rho), but the Latin letter D can also be used. Mathematically, density is defined as:

Density = [tex]\frac{Mass}{Volume}[/tex]

Or   ρ = [tex]\frac{m}{V}[/tex]

Where ρ = density, m = mass, and V = volume.

The density of matter changes with temperature and pressure. This variation is typically small for solids and liquids and much larger for gases. Increasing the pressure on an object decreases the volume of the object, thus increasing its density. Increasing the temperature of a substance (with some exceptions) increases its volume and decreases its density. In most materials, heating the bottom of the liquid causes convection of heat from the bottom to the top as the density of the heated liquid decreases, increasing the density compared to a denser, unheated material.

Given,

Mass of water evaporated = 500g

Volume of steam = 2m³

Density = [tex]\frac{500}{2}[/tex]

Density = 250 g/m³

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A baby elephant trots in a straight line along river. The horizontal position of the elephant in meters over time is shown below. Questions: 1. What is the displacement of the elephant between 8 s and 24 s ?2. What is the distance traveled by the elephant between 8s and 24s?

Answers

looking at the graph,

1) Displacement includes direction

Displacement from 8s to 16s = 15 - 6 = 9

Displacement fbetween 16s and 24s = 0 - 15 = - 15

Displacemet between 8s and 24s = 9 - 15

Displacemet between 8s and 24s = - 6m

2)

Distance does not include direction

from 8s to 16s,

distance travelled = 15 - 6 = 9 m

From 16s to 24s,

distance travelled = 15 - 0 = 15

Total distance between 8s and 24s = 9 + 15

Total distance between 8s and 24s = 24 m

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