what wavelengths correspond to the visible spectrum

Answers

Answer 1

The visible spectrum ranges from approximately 400 nanometers (nm) to 700 nm, with violet light having the shortest wavelength and red light having the longest wavelength.

What are wavelengths?

The distance between two peaks or troughs in a wave is measured in wavelengths. The characteristics of electromagnetic radiation, such as light, radio waves, and X-rays, are frequently described using them. The wavelength of a wave can be used to calculate its energy, frequency, and velocity in physics. The frequency and energy of the wave increase with decreasing wavelength. The colors we perceive are caused by different wavelengths of light, with shorter wavelengths equating to blue and longer wavelengths relating to red. In disciplines like spectroscopy, astronomy, and telecommunications, an understanding of wavelengths is essential. In comparison to other types of electromagnetic waves, radio waves have the longest wavelengths. They range in size roughly from a few centimeters to many miles.

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Related Questions

Bob is demonstrating the gravitational force on falling objects to his class. He drops an 1. 0 lb. Bag of feathers from the top of the science building. Determine velocity of the bag after falling for 3. 5 seconds assuming it has reach free fall and given the gravitational acceleration of 9. 8 m/sec2.

Answers

The velocity of the bag of feathers after falling for 3.5 seconds

is 34.3m/s.

The velocity of a falling object can be calculated using the following formula:

v = v_0 + g * t

where v_0 is the initial velocity (assumed to be zero for an object in free fall), g is the acceleration due to gravity (9.8 m/s^2), and t is the time elapsed.

The mass of the bag of feathers is not necessary for this calculation as the acceleration due to gravity is the same for all objects.

For the given case, after 3.5 seconds, the velocity of the bag of feathers can be calculated as follows:

v = 0 + 9.8 m/s^2 * 3.5 s

v = 34.3 m/s

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What is 165 Centimeters in Feet and Inches?

Answers

The value is 5.4 in feet and 65 inches

What is a conversion factor?

A conversion factor is a ratio of equivalent measurements used to convert a quantity from one unit of measurement to another. Conversion factors are often used in mathematics and science to ensure that quantities are expressed in consistent units, which makes it easier to perform calculations and make comparisons.

For example, consider a situation where you want to convert a quantity from inches to centimeters. The conversion factor for this conversion would be:

1 inch = 2.54 centimeters

This is the conversion factor that we used to obtain then values above.

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most comets have short periods and orbit close to the ecliptic plane.True or False

Answers

False. Most comets actually have long periods and orbit at an inclination to the ecliptic plane, meaning they don't follow the same plane as the planets in our solar system.

Comets are small, icy bodies that originate in the outer reaches of the solar system, beyond the orbit of Neptune. They are made up of ice, dust, and rocky materials, and they typically have highly elliptical orbits that bring them close to the sun at their closest approach, called perihelion, and far away from the sun at their farthest point, called aphelion.

Comets with long periods take many years, even centuries or millennia, to complete a single orbit around the sun. They are thought to come from the Oort cloud, a region of icy bodies that surrounds the solar system at a distance of up to 100,000 astronomical units (AU) from the sun. As they approach the sun, the heat causes the ice to sublimate, releasing gas and dust that forms the characteristic coma and tail of the comet.

On the other hand, comets with short periods have orbits that last less than 200 years and are believed to originate in the Kuiper Belt, a region of icy bodies beyond Neptune that extends from about 30 to 50 AU from the sun. Some short-period comets have nearly circular orbits that are close to the ecliptic plane, while others have more eccentric orbits that take them high above or below the plane.

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what is density of water in kg m3?

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The density of water at standard temperature and pressure (STP), which is defined as 0 °C (273.15 K) and 1 atm (101.325 kPa), is approximately 1000 kilograms per cubic meter (kg/m³).

This value is commonly used as a reference value for the density of liquids and is often abbreviated as 1 g/cm³ or 1 g/mL.

Temperature is a measure of the degree of hotness or coldness of an object, substance, or environment. It is a physical quantity that quantifies the average kinetic energy of the molecules in a substance or object. The unit of measurement for temperature is degrees Celsius (°C) or Fahrenheit (°F), and the international standard unit is Kelvin (K).

Temperature is an essential factor in determining the physical, chemical, and biological properties of a substance or object. It affects the rate of chemical reactions, the conductivity of materials, and the behavior of living organisms. Temperature can be measured using thermometers, which are devices that detect changes in the thermal energy of a substance or object.

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Calculate the de Broglie wavelength of a bullet of mass 25g moving with a velocity of 100ms −1?

Answers

The deroglie wavelength is obtained by the formulas =ph=mvh==0. 0251006 and 6261034 for a bullet with a mass of 25 gm and a speed of 100 m/s, respectively. λ=ph=mvh=λ=0. 025×1006. 626×10−34=2.

What are the definitions of frequency and wavelength?

While troughs have the same wavelength, the wavelength is the distance between two wave crests. The frequency is measured in cycles per second (Hz), which is the number of vibrations that pass over a certain location in a second (Hertz).

Can you infer velocity from wavelength?

Their wavelength is defined as the distance between two comparable sites on adjacent waves. The quantity of waves crossing a specific location during a defined period of time is known as the wave frequency. The relationships between the three variables are illustrated by this equation: Speed is defined as Wavelength x Frequency.

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the lowest note on a grand piano has a frequency of 27.5 hz . the entire string is 2.00 m long and has a mass of 400 g . the vibrating section of the string is 1.90 m long.

Answers

To tune this string properly, 357.21 N force of tension is required.

What is a simple definition of frequency?

Frequency is the number of waves that pass a specific area in a defined amount of time. As a result, the frequency is 2 per second if a wave travels through in half a second. If it takes 1/100 of an hour, the frequency is 100 times per hour.

To calculate the tension needed to tune the string,

we can use the formula:

Tension = (frequency × wavelength)² × mass / (4 ×length) where:

frequency is the lowest note frequency, which is 27.5 Hz

wavelength is the length of the vibrating section, which is 1.90 m

mass is the mass of the string, which is 400 g (or 0.4 kg)

length is the total length of the string, which is 2.00 m

When the values are added to the formula, we obtain: Tension = (27.5 Hz × 1.90 m)² × 0.4 kg / (4 × 2.00 m)

= 357.21 N

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Question:

The lowest note on a grand piano has a frequency of 27.5 Hz. The entire string is 2.00 m long and has a mass of 400 g. The vibrating section of the string is 1.90 m long. What tension is needed to tune this string properly?

Two balloons of different mass hang from strings near each other. You charge them about the same amount by rubbing each balloon with wool.
Part B: Compare the angles of the threads with the vertical. Mass 1 Angle is 57. Mass 2 Angle is 122.
If m1 = m2, then Ï1 < Ï2
If m1 < m2, then Ï1 <Ï2
If m1 < m2, then Ï1 = Ï2
If m1 > m2, then Ï1 < Ï2

Answers

If m1 < m2, then Ï1 < Ï2

What will be the angles of the threads with the vertical. Mass 1 Angle is 57?

The angle between the thread and the vertical (Ï) is determined by the ratio of the weight of the balloon to the electrostatic force on the balloon, which is proportional to the amount of charge on the balloon.

If two balloons have different masses but are charged to the same amount, the heavier balloon will experience a larger gravitational force, and the angle between its thread and the vertical will be smaller. In this case, if m1 < m2, then Ï1 < Ï2.

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what happens to the temperature of the gas during an isobaric expansion?

Answers

With an increase in gas volume, the gas's temperature must also rise. Temperature and volume changes result in work and an internal energy shift.

An illustration of an isobaric process

Boiling water into steam or freezing water into ice are two examples of isobaric processes. A gas either expands or contracts during the process to maintain constant pressure, and as a result, the net work done by the system or on the system is determined.

What does "isobaric vs. adiabatic" mean?

An adiabatic process where no heat is added to or removed from the system. an isobaric process, in which there is no change in the pressure of the system. the system's volume remains constant throughout an isochoric process.

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How many crankshaft revolutions in degrees is needed to complete 4-strokes? A. 180 B. 360 C. 90 D. 720.

Answers

For a full cycle, four-stroke engines revolve twice. This indicates that 720 crank degrees are required to complete a cycle.

How many crankshaft rotations, measured in degrees, are required to accomplish four 180-degree strokes?

The four basic engine strokes—INTAKE, COMPRESSION, POWER, and EXHAUST—are presumably already familiar to you. Each stroke corresponds to 180 crank degrees, or half a crankshaft revolution. Two crankshaft revolutions, or 720°, are equal to 4 cycles times 180°.

How many cycles does a four-stroke engine have?

Engines with a four-stroke cycle. An internal combustion engine with a four-stroke cycle uses the four distinct piston strokes of intake, compression, power, and exhaust to complete one operational cycle.

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When a car goes around a corner at 20 mph, why do we say it accelerates?The car is accelerating because of the velocity is constantThe car accelerates because it's going 20 mphCars always accelerate when they are in motionThe car is accelerating because it's changing direction

Answers

When a car goes around a corner at 20 mph, (D) it is accelerating because it's changing direction. The direction of the velocity which is a vector is changing so the it accelerates.

What is acceleration?

An acceleration is a rate of change in velocity of an object with respect to time. It can be expressed as

a = Δv/Δt

Where

a = accelerationΔv = change in velocityΔt = change in time

A car goes around a corner at 20 mph. Find the reason why it is accelerates!

We know that an object accelerates when it has a change in velocity. The magnitude of the velocity of the car doesn't change, but the direction does.

A velocity is a vector which has both magnitude and direction. While the direction of the car is changing around a corner, the velocity also changes. Hence, with a change in velocity, we say car is accelerating.

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2. A woman is pushing a door open. How does the magnitude of the force exerted on
the door by the woman compare to the magnitude of the force exerted on the
woman by the door?

Answers

The magnitude of the force exerted on the door by the woman is equal to the magnitude of the force exerted on the woman by the door.

What is  Newton's third law of motion?

Newton's third law of motion states that "For every action, there is an equal and opposite reaction." This means that when two objects interact, they apply equal and opposite forces on each other. The forces are proportional in magnitude and opposite in direction. This law helps to explain how objects react to forces and how forces result in motion

The door and the woman are interacting forces, and the magnitude of the force that each exerts on the other is equal. However, the direction of the forces is opposite. The woman is pushing the door in one direction, while the door is pushing back on the woman in the opposite direction.

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What are the basic units of capacitance?

Answers

The unit of electrical capacitance is the farad (abbreviated F), named after the English physicist and chemist Michael Faraday.

Electrical capacitance is a property of a circuit that describes its ability to store electrical charge. It is defined as the ratio of the magnitude of electric charge stored on a conductor to the potential difference (voltage) across the conductor. Capacitance is measured in farads (F), which is a very large unit, so capacitors are typically rated in smaller units such as microfarads (µF) or picofarads (pF).

Capacitors are electronic components that are designed to provide capacitance and are commonly used in electronic circuits for a variety of applications, such as filtering, timing, and energy storage. Capacitance is determined by the geometry of the conductors, the distance between them, and the dielectric constant of the material between them. A capacitor consists of two conductors separated by a dielectric material, which can be air, paper, ceramic, or some other non-conductive material.

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An electron moving through an electric field of 400 N/C and a magnetic field of .15 T experiences no net force. The two fields and the direction if motion are all mutually perpendicular. Calculate the speed of the electron.

Answers

Answer:

Explanation:

The force on an electron moving through an electric field is given by:

F = qE

where q is the charge of the electron, and E is the electric field.

The force on an electron moving through a magnetic field is given by:

F = qvB

where v is the speed of the electron, and B is the magnetic field.

Since the electron is experiencing no net force, the electric force must be balanced by the magnetic force. Thus:

qE = qvB

Solving for v, we get:

v = E/B

Substituting the given values, we get:

v = 400 N/C / 0.15 T

v = 2666.67 m/s

Therefore, the speed of the electron is 2666.67 m/s.

How does the existence of atoms explain the conservation of matter? Why do we need to use moles when we try to determine amounts of reactants and products in a reaction?

Answers

The existence of atoms explain the conservation of matter that the reaction has to be balanced.

Using moles lets us use smaller numbers in calculations.

What is moles?

Moles, or Avogadro's number, is a unit of measurement used in chemistry. It is the number of atoms, molecules, ions, or other particles in a given amount of a substance. It is equal to 6.022 × 1023 particles per mole.

1) Matter cannot be created and cannot be destroyed. But it can be changed from one form to the another.

Each atom of particular element has constant weight. In a chemical reaction, weight of the all the reactant atoms must be equal to weight of the products. This indicates the atom changes its state from one form to other. So existence of an atom explains the law of conservation of matter.

2) In a chemical reaction to estimate the amount of reactants and products, we have to consider the number of moles and not the weight .

Example

H2 + Cl2 -------------> 2HCl

In this reaction one H2 molecule reacts with one Cl2 molecule and we cannot say that one gram of H2 reacts with one gram of Cl2 molecule. Why because mass of one H2 molecule is 2grams and mass of one Cl2 molecule is 71 grams. So we can't  say that 1 gm of H2 reacts with 1 gm of Cl2.  Here 2 gm of H2 molecules reacts with 71 gms of Cl2 molecules. To avoid this confusion number of moles is preferable in the estimation of reactants and products.

Therefore, in conservation of matter the reaction has to be balanced and Using moles lets us use smaller numbers in calculations.

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A drag racer starts from rest and accelerates at 10 m/s2 for the entire distance of 400 m (1/4 mile). What is the velocity of the race car at the end of the run?.

Answers

89.4 m/s is the velocity of the race car at the end of the run.

Define acceleration.

The definition of acceleration is the speed at which velocity varies with respect to time. Since acceleration has both a magnitude and a direction, it is a vector quantity. Additionally, it is the first derivative of velocity with respect to time or the second derivative of position with respect to time.

The definition of velocity is the rate of displacement. The direction of a body or object's movement is defined by its velocity. There are only two ways to accelerate: changing your speed or changing your direction, or changing both. This is because velocity is both a speed and a direction.

Given,

vi = 0; a = 10; d = 400; vf = ?

vf²= vi² + 2ad

vf² = 0 + 2(10)(400)

vf² = 8000

vf = 89.4 m/s

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While listening to the weather channel update you hear the meteorologist say "High wind advisory! Wind expected to reach velocities upward of 30 miles per hour."

Explain why this statement is false. What information would the meteorologist need to include to accurately describe velocity? What did he describe instead of velocity?

Answers

Answer: The answer provided describes the difference between wind speed and wind velocity, and explains why a statement made by a meteorologist that only mentions wind speed is inaccurate.

Explanation:

The statement made by the meteorologist is false because wind speed and wind velocity are not the same things. Wind speed refers to how fast the wind is moving, while wind velocity refers to both the speed and direction of the wind.

To accurately describe the wind's velocity, the meteorologist would need to include both the speed and direction of the wind.

For example, if the wind is moving at 30 miles per hour from the southeast, the meteorologist could say "High wind advisory! The wind is expected to reach a velocity of 30 miles per hour from the southeast.

In the original statement, the meteorologist only described the wind's speed, not its velocity. By only mentioning the wind speed, it is unclear whether the wind is moving in a specific direction and the statement becomes inaccurate.

Find the equivalent capacitance of the combination. Assume that C1 = 11.8μF, C2 = 4.25 μF, and C3 = 3.56 μF.

Answers

The equivalent capacitance of the combination when connected in series is 1.66 μF and the equivalent capacitance of the combination when connected in parallel is 19.61 μF.

The capacitance C₁ is given as 11.8 μF.

The capacitance C₂ is given as 4.25 μF.

The capacitance C₃ is given as 3.56 μF.

If the capacitors are connected in parallel, the equivalent capacitance, C eq₁ is calculated as,

C eq₁ = C₁ + C₂ + C₃

C eq₁ = 11.8 μF + 4.25 μF + 3.56 μF = 19.61 μF

If the capacitors are connected in series, the equivalent capacitance, C eq₂ is calculated as,

1/C eq₂ = 1/C₁ + 1/C₂ + 1/C₃

1/C eq₂ = 1/11.8 + 1/4.25 + 1/3.56

1/C eq₂ = 0.085 + 0.235 + 0.281

1/C eq₂ = 0.601

C eq₂ = 1.66 μF

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You climb up a ladder, which was 3.4 m in height, and fell. If your mass is 65.8 kg, how fast would your velocity be right before you hit the ground upon falling?

Answers

Answer:

Below

Explanation:

Your mass is irrelevant....here is why:

All of your POTENTIAL energy (mgh)

           will be converted to KINETIC energy  ( 1/2 m v^2)

so

mgh = 1/2 m v^2     divide both sides by 'm' <====then 'm' is gone !

gh = 1/2 v^2            now multiply by 2

2 gh  = v^2              sqrt both sides

v = sqrt (2gh)     = sqrt  [ 2 ( 9.81)(3.4)]   = 8.2 m/s

why are some planets made out of gas

Answers

Planets that are made mostly of gas are known as gas giants. The four outer planets in our solar system, Jupiter, Saturn, Uranus, and Neptune, are all gas giants.

What are planets?

These planets are made primarily of hydrogen and helium, with trace amounts of other elements. Planets that are made mostly of gas are known as gas giants. The four outer planets in our solar system, Jupiter, Saturn, Uranus, and Neptune, are all gas giants.

Gas giants are thought to have formed farther away from the Sun than the terrestrial planets (like Earth), where temperatures were low enough for hydrogen and helium to condense into solid ice. In these colder regions, there was a lot more gas and dust available to form planets, which led to the formation of gas giants.

As gas giants formed, their large masses and strong gravitational forces allowed them to capture even more gas and dust from the surrounding space, which contributed to their growth. The extreme pressures and temperatures in the cores of these planets also cause the hydrogen to undergo a phase transition, turning into metallic hydrogen that behaves like a liquid and contributes to the planet's magnetic field.

It's worth noting that gas giants are not entirely made of gas - they also have solid cores, although the exact size and composition of these cores is not well understood. Some gas giants may also have liquid layers between the gas and the core and may have complex weather patterns on their surfaces due to the interactions of different layers of gas moving at different speeds.

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I’m not sure between A or B, can someone pls help me out?

Answers

Answer:

Its the Answer A.

Explanation:

makes the most sense

Answer: A



Steep by steep explanation: The planet Uranus is unusual because its axis of rotation lies almost in the plane of its revolution.

I hope it helps you

A bear walks 10 km west in two hours in search of fresh berries. She then walks 3. 5 km east in one hour. What is her average velocity?.

Answers

In two hours, a bear travels ten kilometers west in quest of more fruit. Then, in an hour, she covers 3. 5 km to the east. The typical Average velocity is 3.25 km/hr .

The change in position or displacement (x) divided by the time intervals (t) during which the displacement happens is the definition of average velocity. Based on the direction of the displacement, the average velocity might either be positive or negative.

The formula V = D/t is used to compute average velocity, where V stands for average velocity, D for total displacement, and t for total time. The displacement of an object over time is its average velocity. We divide the distance traveled by the amount of time to determine an object's average speed. We are aware that speed is a vector.

here d = 10 km

t = 2hours

distance at second time (z) = 3.5 km

Average velocity = ∆x/∆t

Average velocity = (10-3.5) / 2

Average velocity = 3.25 km/hr

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which thermometer is used to measure surface temperatures?A. Surface probeB. Thermocouple with immersion probeC. Infrared thermometerD. Time-temperature indicator

Answers

The thermometer that is commonly used to measure surface temperatures is the infrared thermometer. This type of thermometer uses infrared radiation emitted by the surface to measure its temperature without requiring direct contact.

Infrared thermometers work by detecting the intensity of infrared radiation emitted by the surface and converting it into a temperature measurement. They are quick and easy to use, and they can measure the temperature of a surface from a safe distance without physically touching the surface.

Surface probes and thermocouples with immersion probes are typically used to measure the temperature of liquids, gases, and other materials that can be easily accessed. Time-temperature indicators are used to monitor the temperature of perishable goods during storage and transportation, but they are not typically used to measure surface temperatures.

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how does a compass use magnetism to show direction?

Answers

The magnetic field is a zone where the force is active along imaginary lines. From the south magnetic pole to the north magnetic pole, this force has an effect on all magnetized objects, such as the needle of a compass. Under the effect of Earth's magnetic field, the needle always points toward the north magnetic pole.

What is magnetism ?

When magnets attract or repel one another, they exert a force known as magnetism. The movement of electric charges is what generates magnetism. Atoms are little building blocks that make up all substances. There are electrons in every atom, which are charged particles.

The main purpose of a compasses is to find direction on the ground during navigation. This functions because the Earth's magnetic field resembles that of a bar magnet. North and south are indicated by the compass needle pointing in the direction of the Earth's magnetic field.

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what optional wires-x connection cable kit is available for the yaesu ftm-300dr?

Answers

The Yaesu FTM-300DR's optional wires-X connection cable kit is the SCU-39. The cables and adapters needed to use the wires-X digital communication mode and link the transceiver to a PC are included in this kit.

WIRES-X Yaesu : What is it?

WIRES-X. An Internet communication system called WIRES (Wide-coverage Internet Repeater Enhancement System) increases the range of amateur radio communication. In WIRES-X, the wireless communication is connected to the Internet through the use of an amateur node station acting as an access point.

What will WIRES-X require of me?

Requires a transceiver with the Yaesu C4FM Portable Digital Node capability (FT5D, FT3D, FT2D, FTM-400XD, FTM-300D, FTM-200D, FTM-100D: as of 8/2021 or Firmware update, FTM-400D: Requires Firmware update), a USB connection cable, and a computer with the WIRES-X software and WIRES-X.

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Can you replace the glass plate in a microwave?

Answers

Yes, it is possible to replace the glass plate in a microwave. The glass plate is a removable part of the microwave, and it can be replaced if it becomes damaged or broken.

To replace the glass plate, follow these steps:

   Determine the size and shape of the glass plate: Before purchasing a replacement glass plate, you will need to determine the size and shape of the original glass plate. This information can typically be found in the owner's manual for the microwave or by measuring the diameter of the plate.

   Purchase a replacement glass plate: Once you have determined the size and shape of the glass plate, you can purchase a replacement plate from a store or online retailer.

   Remove the old glass plate: Open the microwave and carefully remove the old glass plate from the rotating base. Be sure to handle the broken glass carefully to avoid injury.

   Install the new glass plate: Place the new glass plate onto the rotating base of the microwave, aligning it with the guides or notches to ensure that it rotates properly.

   Test the microwave: Close the microwave and run it for a short period of time to ensure that the new glass plate is rotating properly and that there are no issues.

It is important to note that not all glass plates are interchangeable between microwaves, as different models may have different size and shape requirements. Be sure to check the manufacturer's recommendations and specifications before purchasing a replacement glass plate.

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The african cicada is the world's loudest insect, producing a sound intensity level of 107 db at a distance of 0. 50 m.

Answers

The sound intensity level (SIL) of the African cicada is given as 107 dB at a distance of 0.50 m.

What is sound intensity level ?To determine the sound intensity I at the distance r, we can apply the following formula:

SIL equals 10 log(I/I0)

where I0, which is designated as 10(-12) W/m2, is the reference sound intensity.

If we rearrange this formula to account for I, we obtain:

I equals I0 x 10(SIL/10).

Inputting the values provided yields:

I = 2.00 x 10-2 W/m2 x 10(107/10) x (10-12 W/m2)

Therefore, at a distance of 0.50 m, the African cicada's sound intensity is roughly 2.00 x 10–2 W/m2.

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The sound intensity level (SIL) of the African cicada is given as 107 dB at a distance of 0.50 m.

What is sound intensity level ?

To determine the sound intensity I at the distance r, we can apply the following formula:

SIL equals 10 log(I/I0)

where I0, which is designated as 10(-12) W/m2, is the reference sound intensity.

If we rearrange this formula to account for I, we obtain:

I = I0 x 10(SIL/10)

Inputting the values provided yields:

[tex]I = 2.00 \times 10^{-2} W/m^2 \times 10(107/10) \times (10^{-12} W/m^2)[/tex]

Therefore, at a distance of 0.50 m, the African cicada's sound intensity is roughly [tex]2.00 \times 10^{-2} W/m^2[/tex].

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the time it takes for the celestial sphere to rotate once relative to the earth is called

Answers

The time it takes for the celestial sphere to rotate once relative to the earth is called synodic day.

What is meant by synodic day?

Synodic day or synodic rotation period is the period for a celestial object to rotate once in relation to the star it is orbiting which is the basis of solar time.

Synodic day is the period it takes for planet to rotate once in relation to  body it is orbiting. For Earth, synodic day is known as a solar day, and it is about 24 hours long. Reason that the synodic month is longer than the sidereal month is because the earth orbits the sun at the same time that the moon goes through its phases.

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at what speed is the wind turbine stopped so that damage does not occur?

Answers

Speed at which the wind turbine stopped so that damage does not occur :  25 meters per second.

What is the cut off speed of wind turbine?

When anemometer registers wind speeds higher than 55 mph, then it triggers the wind turbine to automatically shut off. Wind turbines work on simple principle: instead of using electricity to make wind, wind turbines use wind to make electricity.

A modern turbine will generate electricity when wind speeds reach six to nine miles per hour (mph), known as cut-in speed. Turbines will shut down if the wind is blowing too hard (roughly 55 miles an hour) to prevent the equipment damage.

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4 more to go you got this

Answers

answer:
Lol DIY

explanation

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If you roll two fair six-sided dice, what is the probability that at least one die shows a 3 33?.

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The probability of rolling a 3 on a single six-sided die is 1/6, or 16.7%.

What is probability?

Probability is a mathematical study of outcomes in uncertain situation it is used to describe the like would have an event occurring and it can be expressed as the number between 0 to 1 probability is used to quantify the uncertainty associated with any given event it helps us understand how likely it is that something will happen and it can be used to make prediction about futures even probability theory is it of modern statistic and is widely used in fields such as finance economics and science.

Therefore, the probability of rolling at least one 3 when rolling two six-sided dice is 2 × 1/6, or 33.3%. This is because the probability of rolling a 3 on one die is independent of the probability of rolling a 3 on the other die. This means that the probability of rolling at least one 3 is equal to the sum of the probabilities of rolling a 3 on each of the two dice (1/6 + 1/6 = 2/6). As a result, the probability of rolling at least one 3 when rolling two six-sided dice is 33.3%.

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