A radio station's channel, such as 100.7 FM or 92.3 FM, is actually its frequency in megahertz (MHz), where 1MHz=106Hz and 1Hz=1s−1. Calculate the broadcast wavelength of the radio station 91.10 FM. Express your answer to four significant figures and include the appropriate units.

Answers

Answer 1

Answer:

3.293 m

Explanation:

Data Given:

Frequency of radio wave = 91.10 FM or 91.10 MHz

1 MHz = 10⁶ Hz

1 Hz = 1 s⁻¹

wavelength = ?

Solution:

As Frequency of radio wave is 91.10 FM or 91.10 MHz

if we look for conversion of MHz to Hz

So,

1 MHz = 10⁶ Hz

91.10 MHz = (91.10)(10⁶)  =  91.1 x 10⁶ Hz

So

91.10 MHz = 91.1 x 10⁶ Hz

Now we look for conversion of Hz to s⁻¹

1 Hz = 1 s⁻¹

91.1 x 10⁶ Hz = 91.1 x 10⁶ s⁻¹

So

91.1 x 10⁶ Hz = 91.1 x 10⁶ s⁻¹

Now equation used to calculate wavelength

         f = c/λ

rearrange the above equation

        λ = c/f ........(1)

Where:

c = speed of light = 3 x 10⁸ ms⁻¹

λ= wavelength

put the values in above equation 1

           λ = 3 x 10⁸ ms⁻¹ / 91.1 x 10⁶ s⁻¹

           λ = 3.293 m

So the wavelength of radio station wave = 3.293 m


Related Questions

what type of reaction is
2A1Br3 +3K2SO4+6KBr +
Al2(SO4)3
Synthesis/Combination
Decomposition
Single Replacement
Double Displacement
or Combustion?

Answers

Answer: Double Displacement

Explanation: In a double displacement reaction it is shown through this generic description

AB+ CD => AD + CB

Where A and C are both metals and B and D are nonmetals.

A is Al

B is Br

C is K

D is SO4

In this reaction

Al displaces K to combine with SO4

K combines with Br forming KBr

Which career best fits the group of words below?



high voltage lines, low voltage lines, distribution substation

meter reader
geothermal technician
power dispatcher
electrician

Answers

Answer:

The answer is "power dispatcher."

Explanation:

"Power dispatchers" are also known as "power distributors." Their field of work is related to controlling the distribution of electricity to the "electrical substations." These substations allow the transmission of electricity to step down from a higher voltage to a lower voltage.

Whenever there is an electrical problem, the power dispatcher also comes into play. They make sure that the power lines are intact and checks for possible damages when typhoons or earthquakes occur.

Thus, this explains the answer.

Answer:

C

Explanation:

7944/0.024 = _______ give the answer to the correct number of significant figures?

Answers

Answer:

330,000

Explanation:

Since there are only 2 significant figures in 0.024 ( and 0.024 is the number with the least number of significant numbers), the answer is 330,000, not 331,000.

Which of the following values is equal to 1 micrometer?
0.000001 meter
0.001 meter
1,000 meter
1,000,000 meter

Answers

Answer:

its a

Explanation:

Answer:

0.000001

Explanation:

How many atoms are there in 10.2 L of Ar gas at STP?

Answers

Answer:

3.011×0²³  atoms of Ar

Explanation:

To find no.of atoms of Ar gas in 10.2 L at STP.

At STP 1 mole of a gas occupies 22.4  L  and contains 6.022×10²³ atoms/molecules or ions.

At STP

22.4 L contains 1 mole Ar t

10.2 L contains (10.2÷22.4)×1 Ar

[tex]\frac{1}{2}[/tex] mole Ar contains [tex]\frac{1}{2}[/tex]×6.022×10²³

=3.011×0²³  atoms of Ar

Final answer:

To calculate the number of atoms in 10.2 L of Ar gas at STP, we convert the volume of gas to moles and use Avogadro's number. The number of atoms in 10.2 L of Ar gas at STP is approximately 2.742 x [tex]10^{23}[/tex] atoms.

Explanation:

To determine the number of atoms in 10.2 L of Ar gas at STP, we need to convert the volume of gas to moles and then calculate the number of atoms using Avogadro's number.

First, we convert 10.2 L to moles using the molar volume of a gas at STP, which is 22.4 L/mol.

So, 10.2 L of Ar gas is equal to 10.2 L / 22.4 L/mol = 0.455 moles of Ar gas.

Next, we use Avogadro's number, which is 6.022 x 10^23 atoms/mol, to calculate the number of atoms in 0.455 moles of Ar gas.

So, the number of atoms in 10.2 L of Ar gas at STP is 0.455 moles x 6.022 x [tex]10^{23}[/tex] atoms/mol = 2.742 x [tex]10^{23}[/tex] atoms.

Read the chemical equation shown.

Cl2 + 2NaBr → 2NaCl + Br2

Which statement is true about this chemical equation?

Cl (chlorine) is oxidized and Br (bromine) is reduced.
Cl (chlorine) is reduced and Br (bromine) is oxidized.
Na (sodium) is reduced and Cl (chlorine) is oxidized.
Na (sodium) is oxidized and Br (bromine) is reduced.

Answers

Redox reactions are the reactions that have been constituting reduction and oxidation. In the chemical equation, chlorine is reduced and bromine is oxidized. Thus, option B is correct.

What is a redox reaction?

A redox reaction is a combination of reduction and oxidation reactions. When a reactant loses an electron, then it is called oxidation, whereas the reactant that gains an electron is said to be where the reduction takes place.

The redox reaction is written as,

2 NaBr (aq) + Cl₂ (g) → 2 NaCl (aq) + Br₂ (aq)

Here, oxidation,

2 Br⁻¹ - 2 e⁻ → 2 Br⁰

Reduction,

2 Cl⁰ + 2 e⁻ → 2 Cl⁻¹

From the reaction, NaBr is a reducing agent as it has donated its electron, whereas chlorine gas is an oxidizing agent as it has an accepted electron.

Therefore, in the chemical reaction chlorine is reduced and bromine is oxidized.

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Before Sam left for work, he noticed that his car was covered with snow and so went out and started the engine to let it warm up before he left. After eating breakfast, Sam went back to his car to leave for work and noticed that there was no longer any snow on the hood of the car, but the rest of the car still had snow on it. Which of the following correctly explains what Sam witnessed?
A.
The cold from the snow went to the air, which melted the snow.
B.
The cold from the snow was transferred to the car, which melted the snow.
C.
Heat from the engine under the hood transfered to the snow, melting it.
D.
Heat from the air above the car was transferred to the snow on the hood only.

Answers

Answer:

Heat from the engine under the hood transfered to the snow, melting it.

Explanation:

((Study Island))

Is condensation of ethanol a physical change or a chemical change

Answers

Answer: Physical change

Explanation: Condensation is the phase change of a gas to the liquid state. There is no formation of new products so it does not undergoes chemical change. Any phase change is considered a physical change.

Final answer:

Condensation of ethanol is a physical change because it only involves a change in the state of matter without altering the chemical composition of ethanol.

Explanation:

The condensation of ethanol is a physical change. This process involves a change in the state of matter from gas to liquid without altering the chemical composition of ethanol. Like the condensation of water vapor into liquid water, the process is exothermic, releasing energy. However, the ethanol remains chemically identical before and after condensation.

Is Li2o+h2o=LiOH combustion

Answers

Answer: No

Explanation:Combustion is the process where a hydrocarbon reacts with oxygen gas to produce carbon dioxide and water.

Combustion reaction:

CH + O2 => CO2 + H2O

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A model of an atom is shown below. Which element is represented by this model of an atom?



Boron (B)

Carbon (C)

Neon (Ne)

Sodium (Na)

Answers

Answer:

Boron

Explanation:

An atom consist of electron, protons and neutrons. Protons and neutrons are present with in nucleus while the electrons are present out side the nucleus.

All these three subatomic particles construct an atom. A neutral atom have equal number of proton and electron. In other words we can say that negative and positive charges are equal in magnitude and cancel the each other. For example if neutral atom has 6 protons than it must have 6 electrons. The sum of neutrons and protons is the mass number of an atom while the number of protons are number of electrons is the atomic number of an atom.

For example

In given atomic model we can see that there are five electrons out side the nucleus it means this atomic model is of that element which have atomic number 5 and it is boron.

It has 5 electron 5 proton and 6 neutrons.

It means its atomic number is five and mass number is 5+6 = 11

A 18.00 g candy bar is found to contain 11.00 g of sugar. How many mg of sugar does the candy bar contain ?

Answers

Answer:

11,000 milligrams

A certain quantity of ammonium nitrite is separated into its polyatomic components, and each polyatomic ion is then carefully transferred and stored in an individual 100-Liter container. If the container containing ammonium nitrite has a density of 2g/L, how many mols of nitrite are in the second container?

Answers

Answer:

5000

Explanation:

you do stuff and more stuff

_C2H + __02 → __CO2 + __HO

Answers

Answer: 2C2H + 5O2 => 4CO2 + 2HO

Explanation: The chemical equation is now balanced.

Calculate the kelvin scale equivalent of 123 Celsius?

Answers

Answer:

123 Celsius is equal to 396.15 Kelvin scale

Explanation:

The higher an electromagnetic wave's frequency, the lower its
O A. speed
O B. energy
O c. wavelength
O
D. amplitude
SURN

Answers

Answer:

C)wavelength

Explanation:

if the wavelength of a light wave is shorter, that means that the frequency will be higher because one cycle can pass in a shorter amount of time. ... That means that longer wavelengths have a lower frequency. Conclusion: a longer wavelength means a lower frequency, and a shorter wavelength means a higher frequency!

Arrange the following atoms in order of increasing first ionization energy: He, Be, Se, Ne

Answers

Answer:

Be (899 kj/mol) , Se (940.9 kj/mol), Ne(2081 kj/mol), He (2370 kj/mol),

Explanation:

For noble gases as they have complete octet so they require high amount of energy to remove the electron.

Trend along period:

As we move from left to right across the periodic table the number of valance electrons in an atom increase. The atomic size tend to decrease in same period of periodic table because the electrons are added with in the same shell. When the electron are added, at the same time protons are also added in the nucleus. The positive charge is going to increase and this charge is greater in effect than the charge of electrons. This effect lead to the greater nuclear attraction. The electrons are pull towards the nucleus and valance shell get closer to the nucleus. As a result of this greater nuclear attraction atomic radius decreases and ionization energy increases because it is very difficult to remove the electron from atom and more energy is required.

Trend along group:

As we move down the group atomic radii increased with increase of atomic number. The addition of electron in next level cause the atomic radii to increased. The hold of nucleus on valance shell become weaker because of shielding of electrons thus size of atom increased.

As the size of atom increases the ionization energy from top to bottom also  decreases because it becomes easier to remove the electron because of less nuclear attraction and as more electrons are added the outer electrons becomes more shielded and away from nucleus.

During a science lab investigating chemical reactions, Mr Grace students place an antacid tablet in a ziplock bag. They recorded the mass of the tablet, 25 g, in the bag, 60 grams. Then they carefully added 50 g of water and quickly seal the bag. The tablet began at this and soon disappeared. The bag was filled with gas. If the total mass of the bag+tablet+water was 135 grams before the reaction, what was the total mass of the bag+liquid+gas after the reaction was completed? A) 60 grams B) 75 grams C) 135 grams D) 270 grams

Answers

Answer:

                    Option- C (135 grams) is the correct answer.

Explanation:

                     In this experiment the students took tablet of an antacid which when added to water decomposes and produces many products among which some are in gas form.  Now, as stated the ziplock bag is quickly sealed after the addition of tablet so it means nine of the gas produced is allowed to escape from the bag.

                     Therefore, according to law of conservation of mass the mass can neither be created nor destroyed. So, in this experiment there will be no increase in mass because the mass cannot be created and also, there will be no decrease in mass because it can neither be destroyed. So, we will assume that the gas produced is not allowed to escape hence, the total mass of the system (i.e. bag, water, products) will remain the same as they were before the reaction.

Answer:

135 grams

Explanation:

What is the kinetic energy of the ball as it is half way through the fall?

Answers

Answer:

Explanation:

What is the kinetic energy of the ball as it is half way through the fall?

(50 points!) This diagram is a model of the fluorine atom.



How many electrons, protons, and neutrons are in this atom, and how many additional electrons are needed to completely fill the outer shell of this atom?





A.
9 electrons, 11 protons, 9 neutrons; 0 electrons are needed to completely fill the outer shell of this atom


B.
9 electrons, 11 protons, 9 neutrons; 1 additional electron is needed to completely fill the outer shell of this atom


C.
9 electrons, 9 protons, 11 neutrons; 1 additional electron is needed to completely fill the outer shell of this atom


D.
9 electrons, 9 protons, 11 neutrons; 0 electrons are needed to completely fill the outer shell of this atom

Answers

Answer:

C

Explanation:

One electron is needed to completely fill the outer shell of this atom.

The number of electrons, protons, and neutrons in the atom are:

Number of electrons = 9

Number of protons = 9

Number of neutrons = 11

The number of additional electron needed is 1

The correct answer to the question is Option C. 9 electrons, 9 protons, 11 neutrons; 1 additional electron is needed to completely fill the outer shell of this atom

Fluorine is a member of the group 17 element called Halogens. They have 7 valence electrons.

NOTE: The nucleus contains the neutrons and the protons while the electrons revolve around the nucleus.

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

Number of electrons = 9

Number of protons = 9

Number of neutrons = 11

Valence electron = 7

Now, we can see that the fluorine atom has 7 valence electrons. Thus, fluorine atom will require 1 electron to complete its outermost shell.

Thus, the correct answer to the question is Option C. 9 electrons, 9 protons, 11 neutrons; 1 additional electron is needed to completely fill the outer shell of this atom

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Near the ceiling of a room air is warmer. The warm air rises because of

Answers

Answer:

convection

Explanation:

heat will always rise

Answer:

Convection

Explanation:

Which step is not included in carbon cycle

Answers

Your answer would be Transpiration

if you were trying to heat 1g water from temperature of 5C to 6 C, how much heat would be required to do so?

Answers

Answer:

The heat required is 4.18 J

Explanation:

First you need to know what is specific heat capacity ,

Specific Heat Capacity : The amount of heat required to raise the temperature of 1 gram of substance by one degree  .

The specific heat capacity of water is 4.18 J/gC.

This means that to increase the temperature of 1 gram of water by one degree , 4.18 J of energy is needed.

The formula to calculate the heat is given by :

[tex]q=mc\Delta T[/tex]

q = heat absorbed/emitted

m = mass of the substance

[tex]\Delta T[/tex] = Change in temperature

c = 4.18 J/gC

Here , m= 1 gram

[tex]\Delta T[/tex]= 6 -5 = 1 degree

Put the value in the formula:

[tex]q=mc\Delta T[/tex]

[tex]q=1\times 4.18\times 1[/tex]

q = 4.18 J

Unit conversion :

m = gram

c = J/gram C

T  = C

q = mcT = gram x  J/gram C x C

q = J

Single-crystal sapphire has a melting point of aorund 2323K what is the melting point in degrees Celsius?

Answers

Answer: 2050°C

Explanation:

K = 2323K

°C = K — 273 = 2323 — 273

°C = 2050°C

Final answer:

The melting point of single-crystal sapphire when converted from Kelvin to degrees Celsius is approximately 2049.85°C, indicating the strength of the bonds within its crystal structure, akin to diamond and silicon carbide.

Explanation:

To convert the melting point of single-crystal sapphire from Kelvin to degrees Celsius, you subtract 273.15 from the Kelvin temperature. Given that the melting point of sapphire is around 2323K, the calculation would be:

2323K - 273.15 = 2049.85°C

Therefore, the melting point of single-crystal sapphire in degrees Celsius is approximately 2049.85°C. This high melting temperature indicates the strength of the bonds within the crystal structure of sapphire, similar to other compounds with diamond or related structures, such as diamond and silicon carbide, which also have high melting points due to their strong covalent bonds.

A beaker contains 175.32g of salt, NaCl(58.44g/mol). Water is added until the final volume is 2 liters. The solution should be described as

A. 87.66M

B. 29.22M

C. 3M

D. 1M

E. 1.5M

Answers

Answer:

E. 1.5M

Explanation:

because there is total 175.32 g of NaCl dissolved in 2 liter of water, and 58.44 g = 1 mol

so total miles = 175.32/58.32 = 3 moles

now 3 moles are in 2 liter of water, hence one liter contains 3/2= 1.5

Therefore answer is E. 1.5M

Al2(SO4)3 + BaCl2 balanced equation

Answers

Answer:BaCl2 + Al2(SO4)3 -->BaSO4 + AlCl3.

Explanation:

Tissues are made up of different types of organs true or false

Answers

Answer: False

Explanation: Organs are made up of different tissues

Final answer:

The statement is false. Tissues are made up of similar cells that share a common function. Organs are made from different types of tissues that work together.

Explanation:

The statement in the question is false. In biology, tissues are groups of similar cells that have a common structure and function. However, they do not form organs independently. Actually, the hierarchy in biological organization is cells - tissue - organ - organ system.Organs are made up of different types of tissues that work together to perform a specific function or set of functions. For example, the heart is an organ made up of cardiac tissue which allows it to contract and pump blood around the body.

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Calculate the atomic mass of element X if there are two isotopes of this element (X-24 and X-28) and 75% of all X atoms are X-28 isotopes.



52 amu


4 amu


27 amu


26 amu


Answers

Answer:

Atomic mass = 27 amu

Explanation:

Given data:

Atomic mass of element X= ?

Abundance of X-28 = 75%

Abundance of X-24 = 100 - 75 = 25%

Atomic mass of X-28 = 28 amu

Atomic mass of X-24 = 24 amu

Solution:

Average atomic mass = (abundance of 1st isotope × its atomic mass) +(abundance of 2nd isotope × its atomic mass)  / 100

Average atomic mass = (75×28)+(25×24) /100

Average atomic mass =  2100 + 600 / 100

Average atomic mass = 2700 / 100

Average atomic mass = 27 amu.

Global warming is a theory accepted by a majority of scientists.
Please select the best answer from the choices provided
OT
OF

Answers

Answer:

True

Explanation:

Global warming is a theory accepted by a majority of scientists. This statement is True and correct option is option 1.

What is Global warming?

Global warming is the phenomenon of a gradual increase in the temperature near the earth’s surface.

This phenomenon has been observed over the past one or two centuries. This change has disturbed the climatic pattern of the earth.

It is the long-term heating of Earth’s surface observed since the pre-industrial period (between 1850 and 1900) due to human activities, primarily fossil fuel burning, which increases heat-trapping greenhouse gas levels in Earth’s atmosphere.

Therefore, Global warming is a theory accepted by a majority of scientists. This statement is True and correct option is option 1.

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BRAINIEST TO THE ONE WHO ANSWER THIS

1.- Describe the trend in ionization energy as the atomic number increases ACROSS a period.

2.- Describe the trend in ionization energy as the atomic number increases DOWN a group.

Answers

Answer:

The statement that best describes the trend in first ionization enery of elements on the periodic table is:

It generally decreases down a group because valence electrons are farther from the nucleus.

The first ionization energy measures how difficult is to release an electron from the outermost shell. The higher the ionization energy the more difficult it is to release an electron, the lower the ionication energy the easier to release an electron.

As the atomic number of the atom increases (which is what happens  when you go down a group) the furthest the outermost shell of electrons will be (the size of the atoms increases) and so those electrons require less energy to be released, which means that the ionization energy decreases.

Hope it helps!

Answer:

1. Across a period , the ionization energy increases  because the formation of a cation becomes more difficult owing to the increase in nuclear charge.

2. Ionization energy decreases down the group because the outer electrons become progressively separated from the nucleus and so are less tightly held .

Explanation:

Which of the following is NOT a way that biodiversity is important to an ecosystem?
Question 6 options:


A. Biodiversity can increase the rate of extinction.


B. Different types of decomposers are available to break down many types of waste.


C. If one food source goes extinct other food sources are more likely to be available.


D. Biodiversity makes ecosystems more stable.

Answers

Answer:

A. Biodiversity can increase the rate of extinction

Explanation:

That statement is false because variety is better for a better ecosystem. With variety more can survive in certain situations that others cant.

Biodiversity can increase the rate of extinction is not a way that biodiversity is important to an ecosystem. Therefore, option A is correct.

What is biodiversity ?

The variety and variability of life on Earth is referred to as biodiversity or biological diversity. A measure of variation at the genetic, species, and ecosystem levels is called biodiversity.

Genetic, species, and ecosystem diversity are the typical three levels of biodiversity that are covered. The various genes that each unique plant, animal, fungus, and bacteria have constituted genetic variety. Both inside and between species, it happens.

Conservation of biodiversity safeguards the genetic, microbial, animal, and plant resources needed for agriculture, food production, and ecosystem services like soil nutrient cycling, pest and disease control, preventing erosive processes, and pollination plants and trees.

Thus, option A is correct.

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