The most interesting thing about Saturn's large moon Titan is that it has an atmosphere. It is also interesting that it has a 2:1 resonance with Mimas and a 4:1 resonance with the Cassini gap. Option A is the correct answer.
Resonance is a condition in which an object or system vibrates at a particular frequency in response to another vibration of the same frequency, with a rise in the amplitude of the vibration.
A 2:1 resonance with Mimas and a 4:1 resonance with the Cassini gap.
The term "resonance" is frequently used in physics, particularly in the fields of mechanics, electronics, and waves, and it is also used to explain other phenomena like musical instruments that have resonance, electromagnetic resonance, and the like. Option A is the correct answer.
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the contact between lithospheric plates is called a
Answer:
The contact between lithospheric plates is called a. plate boundary. The center of a mid-ocean ridge is where. new oceanic lithosphere is being created.
Explanation:
The Earth’s lithosphere, which includes the crust and upper mantle, is made up of a series of pieces, or tectonic plates, that move slowly over time. A divergent boundary occurs when two tectonic plates move away from each other. Along these boundaries, earthquakes are common and magma (molten rock) rises from the Earth’s mantle to the surface, solidifying to create new oceanic crust. The Mid-Atlantic Ridge is an example of divergent plate boundaries. When two plates come together, it is known as a convergent boundary. The impact of the colliding plates can cause the edges of one or both plates to buckle up into a mountain ranges or one of the plates may bend down into a deep seafloor trench. A chain of volcanoes often forms parallel to convergent plate boundaries and powerful earthquakes are common along these boundaries. The Pacific Ring of Fire is an example of a convergent plate boundary. At convergent plate boundaries, oceanic crust is often forced down into the mantle where it begins to melt. Magma rises into and through the other plate, solidifying into granite, the rock that makes up the continents. Thus, at convergent boundaries, continental crust is created and oceanic crust is destroyed. Two plates sliding past each other forms a transform plate boundary. One of the most famous transform plate boundaries occurs at the San Andreas fault zone, which extends underwater. Natural or human-made structures that cross a transform boundary are offset—split into pieces and carried in opposite directions. Rocks that line the boundary are pulverized as the plates grind along, creating a linear fault valley or undersea canyon. Earthquakes are common along these faults. In contrast to convergent and divergent boundaries, crust is cracked and broken at transform margins, but is not created or destroyed.
Answer:
It is called a plate boundary. Contact plates are the standard devices for environmental monitoring of surfaces and personnel in cleanrooms and isolators.
https://www.dynatec-labs.com/products/contact-plates
FILL IN THE BLANK. A medium is able to transport a wave from one location to another because the particles of the medium are ____.
a. frictionless
b. isolated from one another
c. able to interact
d. very light
A medium is able to transport a wave from one location to another because the particles of the medium are (c)able to interact.
When a wave travels through a medium, it causes the particles in the medium to vibrate, and these vibrations are then passed on to neighboring particles, thus allowing the wave to propagate. In a solid, the particles are tightly packed and can interact strongly, allowing waves to travel quickly.
In liquids and gases, the particles are more spread out, and interactions between them are weaker, so waves travel more slowly.
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A robin flies a distance of 45963 cm. How far has it flown in kilometers?
Answer:
0.46km
Explanation:
45963cm/100cm=459.63m/1000m=0.45963 or 0.46km
the distance between slits on a diffraction grating is 0.60 mm, and one of the angles of diffraction is 0.30°. the light forms a second-order bright band.
The distance between slits on a diffraction grating is 0.60 mm: The path difference for the second-order bright band is 0.12 mm.
In a diffraction grating, when light passes through the slits, it diffracts and creates interference patterns. The path difference is the difference in the distance traveled by light from two adjacent slits to a specific point on the screen.
To calculate the path difference, we can use the formula:
Path Difference = d * sin(θ)
where d is the distance between slits (also known as the slit spacing) and θ is the angle of diffraction.
In this case, the distance between slits is given as 0.60 mm, and the angle of diffraction is 0.30°. Since it is mentioned that the light forms a second-order bright band, we need to consider the path difference corresponding to the second-order interference.
Using the formula, we can calculate the path difference as follows:
Path Difference = (0.60 mm) * sin(0.30°)
Calculating the value, we find:
Path Difference = 0.60 mm * 0.0052359 ≈ 0.0031416 mm ≈ 0.12 mm
Therefore, the path difference for the second-order bright band is approximately 0.12 mm.
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An electron is accelerated from rest by an electric potential difference of 437 V, and then enters a region of uniform magnetic field. The magnetic field is oriented perpendicular to the velocity with a magnitude of 42.8 mT. What will the radius of the electron's path be once it enters the magnetic field
The radius of the electron's path is once it enters the magnetic field 3.16*10^-4 m.
The electric capacity difference, additionally called voltage, is the outside work needed to bring a rate from one region to some other area in an electric discipline. The electric powered capacity distinction is the change of potential electricity skilled by way of a test rate that has a fee of +1.
The distinction in ability among two points represents the paintings worried or the electricity released in the switch of a unit amount of power from one factor to the other.
Electric ability is the work executed in step with unit fee in bringing the fee from infinity to that factor against electrostatic pressure. In a conductor, electrons float simplest when there is a difference in electric stress at its ends. This is additionally known as the capacity distinction.
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Why does the chlorine atom have a partial negative charge in a molecule of hydrogen chloride?
Answer:The molecule is represented by the conventional Lewis structure, even though the shared electron pair is associated to a larger extent with chlorine than with hydrogen. The unequal sharing of the bonding pair results in a partial negative charge on the chlorine atom and a partial positive charge on the hydrogen atom.
Explanation:
a firefighter is helping the woman shown in the figure below. the woman's weight is 120 lb. what's the tension (in lb) in the rope connecting the woman to the firefighter?
The tension in the rope is equal to the weight of the woman, which is 120 lb. Since the woman is not accelerating, the forces acting on her must be balanced, meaning the tension in the rope must equal her weight. Therefore, the tension in the rope is 120 lb.
What is tension?
Tension is a state of mental or emotional strain, resulting from opposing forces or influences. It is a feeling of inner strain caused by a clash of emotions, ideas, or beliefs. It can also result from physical causes such as a lack of sleep, worry, physical exertion, and even hunger.
Tension can manifest itself in physical symptoms such as headaches, neck pain, muscle tightness, and fatigue. It can also lead to emotional problems such as anxiety, irritability, and depression. It is important to recognize and address tension in order to maintain good mental and physical health.
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How many electrons does an atom have with 10 protons and an ionic charge of 2+
Answer:
8
Explanation:
Charge = protons − electrons
2 = 10 − e
e = 8
why is the answer A and not C?
please help!
Answer:
because it gives a complete thought
A circuit with 0.7 A running through the battery and two 16 Ω resistors in parallel. What is the voltage of the battery?
Answer:
Below
Explanation:
The two PARALLEL resistors equal: 1 / (1/16 + 1/16) = 8 Ω
V = IR = .7 (8) = 5.6 v
Solve the following numerical problems. a) A load of 400N is liſted up by an effort of 100N. If load distance is 20cm, what will be the effort distance? (Ans 80cm)
Answer:
Solution
Load(L)=400
Effort(E)=100
Load distance (Ld)=20cm
Effort distance(Ed)=?
Now,from the principle of equilibrium
L×Ld=E×Ed
or,Ed=L×Ld/E
or,Ed=400×20/100
:.Ed=80cm and
Therefore,the effort distance will be 80cm
Answer:
80cm
Explanation:
load l = 400
Effort e = 100
load distance Ld = 20
Effort distance Ed = ?
L×ld= E×Ed
Ed=L×Ld \ E
Ed=400×20/100
Ed=80cm Ans
What is an example of gravitational potential to kinetic to electrical current?
One example of gravitational potential energy being converted to kinetic energy and then to electrical energy is a hydroelectric power plant.
Potential energy is the energy possessed by an object due to its position or configuration in a system. It is a form of energy that is stored within an object, which can be released or converted into other forms of energy when the object moves or undergoes a change in its position or configuration.
The amount of potential energy an object has depends on its mass, its position or height above a reference point, and the forces acting upon it. An object with a greater mass or a higher position has a greater potential energy than an object with a lower mass or position. There are several types of potential energy, including gravitational potential energy, elastic potential energy, and electric potential energy, among others. Gravitational potential energy is the energy possessed by an object due to its position in a gravitational field, while elastic potential energy is the energy stored in an object that is stretched or compressed
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in how many ways can five basketball players be placed in three postitions?
Answer:
Well if they playing a game like that
true/false. The velocity with which an object is thrown upward from ground level is equal to the velocity with which it strikes the ground.
The statement that the velocity with which an object is thrown upward from ground level is equal to the velocity with which it strikes the ground is false.
The velocity with which an object is thrown upward from ground level is not equal to the velocity with which it strikes the ground. When an object is thrown upward, it experiences a constant acceleration due to gravity, causing it to slow down until it reaches its maximum height, at which point its velocity becomes zero. On its way back down, the object gains velocity due to the acceleration of gravity, and when it strikes the ground, its velocity is equal to the velocity it had when it was thrown upward, but in the opposite direction. This means that the velocity with which it strikes the ground is actually greater than the velocity with which it was thrown upward.
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the purpose of this lab is to determine the amounts of potential and kinetic energy of a marble at various points on a roller coaster
The amount of potential electricity saved inside the marble decreases while its kinetic strength will increase.
In physics, the kinetic energy of an item is the electricity that it possesses because of its movement. it's far defined because the paintings needed to boost up a body of a given mass from relaxation to its said pace. Having received this electricity throughout its acceleration, the frame keeps this kinetic power except its speed changes.
Kinetic energy is a shape of energy that an object or a particle has by means of purpose of its motion. If work, which transfers strength, is carried out on an item by applying a net pressure, the object accelerates and thereby gains kinetic electricity.
Electric kinetic power truly explains the transit of the electrical electricity itself, power. as an instance, the electrical contemporary that includes the charge from a battery to the mild bulb is kinetic electricity.
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What is Flexibility ?
=> Flexibility is the ability of a joint or series of joints to move through an unrestricted, pain free range of motion.
2. the density of a block of wood is 750 kg/m3. when this block is floating in water, what fraction of its volume is submerged?
0.75 or 75% of the volume of the block is submerged in water.
When an object is placed in a fluid, it experiences an upward buoyant force equal to the weight of the fluid displaced by the object. If the buoyant force is equal to or greater than the weight of the object, it will float.
To find the fraction of the volume of the block submerged in water, we need to compare the weight of the block to the buoyant force it experiences. Since we are given the density of the block, we can find its mass by multiplying the volume by the density. Let's assume that the block has a volume of 1 m^3, then its mass would be:
\(mass = volume x density = 1 m^3 x 750 kg/m^3 = 750 kg\)
Next, we need to calculate the weight of the block:
\(weight = mass x gravity = 750 kg x 9.81 m/s^2 = 7,357.5 N\)
Now, we can calculate the buoyant force experienced by the block. The buoyant force is equal to the weight of the water displaced by the block. Since the block is floating in water, the volume of water displaced is equal to the volume of the submerged portion of the block. Let's assume that the fraction of the volume submerged is x, then the volume of water displaced is also x. The density of water is 1,000 kg/m^3, so the weight of the water displaced is:
\(weight of water = volume of water x density of water x gravity = x m^3 x 1,000 kg/m^3 x 9.81 m/s^2 = 9,810x N\)
Since the buoyant force is equal to the weight of the water displaced, we have:
buoyant force = 9,810x N
Now, we can set the buoyant force equal to the weight of the block and solve for x:
9,810x N = 7,357.5 N
x = 0.75
Therefore, 0.75 or 75% of the volume of the block is submerged in water.
In conclusion, we can find the fraction of the volume of a block submerged in water by comparing its weight to the buoyant force it experiences, which is equal to the weight of the water displaced by the block. The density of the block, the density of the fluid, and the gravitational acceleration are important factors to consider when calculating the buoyant force and determining whether an object will float or sink in a fluid.
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3
Cameron is an editor and has been for years. Although she loves her job, she is disappointed by the fact that she regularly must check for fakery
In her employees' photographs. What does she likely use to help her check for fakery in photography?
OA special software
OB. a magical magnifying glass
OC. a Xerox machine
OD. a specifically trained eye
Answer: Special Software
Explanation:
It's the only reasonable answer since B and D don't make sense. Also, a Xerox machine is used for duplicating images and documents.
Cameron likely uses special software help her check for fakery in photography. Hence, option (A) is correct.
What is software?Software is a collection of computer programs along with supporting files and information. Hardware, on the other hand, is what the system is made of and what actually does the work.
Executable code is the lowest level of programming and is made up of machine language instructions that are supported by a single processor, usually a central processing unit (CPU) or a graphics processing unit (GPU). Machine language is made up of collections of binary values that represent processor instructions that alter the previous state of the machine.
Hence, Cameron likely uses special software help her check for fakery in photography. Hence, option (A) is correct.
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Find a topic of your own that you would like to
investigate and write accordingly to the methodology above.
Methodological aspects: design, methodology, sampling design, proposed analysis (2) Implications and value of the study (1) Keywords (three to five words). (1) Procedure Find a topic that you would li
Sure, I can help you with that! Here is a sample topic and outline that follows the given methodology:Topic: The Impact of Social Media on Mental Health among Young AdultsMethodological Aspects:
Design: The study will be conducted using a quantitative approach. A cross-sectional survey design will be used.Methodology: The study will use a survey questionnaire to collect data from young adults aged 18-25 years.
The questionnaire will comprise of both closed-ended and open-ended questions.Sampling Design: The study will use a convenience sampling technique. The sample size will be 200 young adults.Proposed Analysis: Data will be analyzed using SPSS software.
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A parallel-plate capacitor has square plates that are 7.40 cm on each side and 3.20 mm apart. The space between the plates is completely filled with two square slabs of dielectric, each 7.40 cm on a side and 1.60 mm thick. One slab is Pyrex glass and the other slab is polystyrene. If the potential difference between the plates is 84.0 V, find how much electrical energy (in nJ) can be stored in this capacitor.
Answer:
The energy that can be stored in the capacitor is 239 nJ
Explanation:
We first calculate the capacitance of each material. Let C₁ be the capacitance of pyrex glass and C₂ be the capacitance of polystyrene.
C₁ = κ₁ε₀A/d where κ₁ = dielectric constant of pyrex glass = 5, A = area of plates = L² where L = length of square plate = 7.40 cm = 7.40 × 10⁻² m and d = thickness of pyrex slab = 1.60 mm = 1.60 × 10⁻³ m and ε₀ = permittivity of free space = 8.854 × 10⁻¹² F/m
C₁ = κ₁ε₀A/d = κ₁ε₀L²/d = 5 × 8.854 × 10⁻¹² F/m × (7.40 × 10⁻² m)²/1.60 × 10⁻³ m = 2424.2252/1.60 × 10⁻¹¹ F = 1515.14 × 10⁻¹¹ F = 15.2 × 10⁻⁹ F = 15.2 nF
C₂ = κ₂ε₀A/d where κ₂ = dielectric constant of polystyrene = 3, A = area of plates = L² where L = length of square plate = 7.40 cm = 7.40 × 10⁻² m and d = thickness of polystyrene slab = 1.60 mm = 1.60 × 10⁻³ m and ε₀ = permittivity of free space = 8.854 × 10⁻¹² F/m
C₁ = κ₁ε₀A/d = κ₁ε₀L²/d = 3 × 8.854 × 10⁻¹² F/m × (7.40 × 10⁻² m)²/1.60 × 10⁻³ m = 1454.5351/1.60 × 10⁻¹¹ F = 909.08 × 10⁻¹¹ F = 9.09 × 10⁻⁹ F = 9.09 nF
Since the capacitors are in series, we find their effective capacitance C from
1/C = 1/C₁ + 1/C₂
C = C₁C₂/(C₁ + C₂)
= 15.2 × 10⁻⁹ F × 9.09 × 10⁻⁹ F/(15.2 × 10⁻⁹ F + 9.09 × 10⁻⁹ F)
= 138.168 × 10⁻¹⁸/24.29 × 10⁻⁹ F
= 5.69 × 10⁻⁹ F
The amount of electrical energy stored in a capacitor is given by W = 1/2CV² where C = capacitance and v = voltage applied. Now C = 5.69 × 10⁻⁹ F and V = 84.0 V for this capacitor
So W = 1/2 × 5.69 × 10⁻⁹ F × 84.0 V
= 238.98 × 10⁻⁹ J
≅ 239 × 10⁻⁹ J
= 239 nJ
So the energy that can be stored in the capacitor is 239 nJ
if the column of mercury in a barometer stands at 76.0 cm high. how tall would the barometer have to be id the mercury were replaced by water
The height of the barometer containing water would be 5.59 meters (76 cm x (1/13.6)) if the mercury were replaced by water.
The density of mercury is 13.6 times that of water. If the column of mercury in a barometer stands at 76.0 cm high.
How tall would the barometer have to be if the mercury were replaced by water?The height of the barometer containing water if the mercury were replaced by water can be calculated as follows: Since the density of mercury is 13.6 times that of water, then the height of the barometer containing water can be given by multiplying the height of the mercury column by the ratio of the densities (density of mercury / density of water)
Thus, the height of the barometer containing water would be 5.59 meters (76 cm x (1/13.6)) if the mercury were replaced by water.
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The radium isotope 223Ra, an alpha emitter, has a half-life of 11. 43 days. You happen to have a 1. 0 g cube of 223Ra, so you decide to use it to boil water for tea. You fill a well-insulated container with 460 mL of water at 16∘ and drop in the cube of radium.
How long will it take the water to boil?
Express your answer with the appropriate units
It will take about 11.8 days for the water to boil.
The first step is to find the decay constant (λ) of the radium isotope using the half-life equation:
t1/2 = 0.693/λ
where t1/2 is the half-life.
So, rearranging the equation, we get:
λ = 0.693/t1/2
= 0.693/11.43 days
= 0.0605 day⁻¹
Next, we need to calculate the number of radium atoms in the 1.0 g cube using Avogadro's number and the molar mass of 223Ra:
Number of atoms \(= (1.0 g)/(223 g/mol) * (6.022 * 10^{23} atoms/mol)\)
= 2.7 x 10²⁰ atoms
Since each radium atom emits an alpha particle during decay, we can calculate the activity of the radium sample:
Activity = (2.7 x 10²⁰ atoms) x (1 decay/atom) x (1 alpha particle/decay)
= 2.7 x 10²⁰ alpha particles per second
Now, we need to calculate the energy released per alpha particle. The energy (E) released per alpha particle can be calculated using the equation:
E = (Q/m) x Na
where
Q is the energy released per decay,
m is the mass of the radionuclide per decay, and
Na is Avogadro's number.
For 223Ra,
Q = 5.69 MeV,
m = 223/2 = 111.5 g/mol, and
Na = 6.022 x 10^23 atoms/mol.
Therefore,
E = (5.69 MeV/decay)/(111.5 g/mol) x (6.022 x 10²³ atoms/mol)
= 3.84 x 10⁻¹³ J/alpha particle
Finally, we can calculate the rate of energy transfer to the water by multiplying the activity of the radium sample by the energy released per alpha particle:
Rate of energy transfer = (2.7 x 10²⁰ alpha particles/s) x (3.84 x 10⁻¹³ J/alpha particle)
= 1.04 W
To boil the water, we need to transfer enough energy to raise its temperature from 16°C to 100°C and to vaporize it.
The specific heat capacity of water is 4.18 J/g°C, and the heat of vaporization of water is 40.7 kJ/mol, or 2257 J/g. The mass of the water is 460 g, so the total energy required is:
Energy required = (460 g) x (4.18 J/g°C) x (100°C - 16°C) + (460 g) x (2257 J/g)
= 1.06 x 10⁶ J
Finally, we can calculate the time required to transfer this amount of energy to the water using the formula:
Energy transferred = Rate of energy transfer x time
Solving for time, we get:
time = Energy required/Rate of energy transfer
= (1.06 x 10⁶ J)/(1.04 W)
= 1.02 x 10⁶ s
= 11.8 days
Therefore, it will take about 11.8 days for the water to boil.
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a roller coaster begins at the top of a hill if it acelerates at the rate of 2 m/s2 and has a mass of 2000 kg what net force is acting on it plzzz someone help im over here crying bc i dont know
Answer:
\(\boxed {\boxed {\sf 4000 \ Newtons }}\)
Explanation:
Force can be found by multiplying the mass by the acceleration.
\(F=m*a\)
The mass of the roller coaster is 2000 kilograms and the acceleration is 2 meters per second squared.
\(m= 2000 \ kg \\a= 2 \ m/s^2\)
Substitute the values into the formula.
\(F= 2000 \ kg * 2 \ m/s^2\)
Multiply.
\(F= 4000 \ kg*m/s^2\)
1 kg*m/s² is equal to 1 NTherefore our answer of 4000 kg*m/s² is equal to 4000 Newtons\(F= 4000 \ N\)
The net force acting on the roller coaster is 4000 Newtons.
True or False: The northern & southern lights are caused by solar wind particles interacting with gases in our atmosphere.
Answer:
False.
Explanation:
An aurora is a natural electric phenomenon that creates bright and colorful light displays in the sky. These dramatic and colorful lights are created when electrically charged particles from solar winds enter the Earth's atmosphere and interact with gases in the atmosphere.
Which of the following is/are true? If caught in a rip current, swim directly towards shore, using the most powerful kick possible. If caught in a rip current, swim perpendicular to shore, until you are completely out of the rip current, then swim in towards shore. If caught in a rip current, swim parallel to shore, until you are completely out of the rip current, then swim in towards shore. Don't fight the rip current; relax and let it carry you closer to shore.
hi true false true false
A rocket weighing 300,000 N is taking off from Earth with a total thrust of
460,000 N at an angle of 20 degrees, as shown in the image below. What is
the approximate vertical component of the net force that is moving the rocket
away from Earth?
Explanation:
vertical force = 460,000 * sin(70) - 300,000
Fv = 187,717.75N
A large boulder has been perched on the side of a mountain for many years. What change would cause it to suddenly roll down the mountain?
Answer:
he weight vector approaches the point within the mass, the equilibrium becomes unstable
any change in the conditions of the environment can cause the rock to slide
Explanation:
In general, a rock in a mountain is in stable equilibrium with the help of the force of gravity that causes its weight to be within the center of mass, that is, the weight vector is first and then it is electing the center of mass.
When for some reason the weight vector approaches the point within the mass, the equilibrium becomes unstable, and any change in the conditions of the environment can cause the rock to slide, for example a rain that reduces the friction force.
It may happen that the weight vector is after the center of the hubs, in this case there is an unstable balance and the stone is held in place by the force of friction with the environment that surrounds it, if this friction decreases the rock will slide .
what would be the approximate PMI of a corpse whose body temperature is determined to be 26.3°C? Average body temperature is 37.2*C.
PLEASE QUICKLY
we're going to use superposition to find the current through the 300 ohm resistor in the following circuit. e1 is one volt peak and e2 is two volts peak. for this first part, consider e1. what is the current through the 300 ohm resistor with only e1 as a source?
how long should a pipe of the same type be to produce sound of the same frequency while at the fundamental frequency? express your answer with the appropriate units.
The length of the second pipe should be 0.659 meters to produce the sound of the same frequency while at the fundamental frequency
The fundamental frequency of a pipe that is closed on one end and open on the other can be expressed as,
f = v/4L
where, f = frequency, v = speed of sound in air, L = length of the pipe
We can rearrange this equation to solve for L,
L = v/4f
For the first pipe, with a length of 0.660 m and speed of sound of 330 m/s,
f = v/4L
f = 330/(4 x 0.660)
f = 125.8 Hz
To find the length of the second pipe that produces the same frequency at the fundamental frequency, we can use the same formula and solve for L,
L = v/4f
L = 330/(4 x 125.8)
L = 0.659 m
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--The complete question is, A 0.660 m long pipe has been sitting out in the cold so that the speed of sound for the air inside is 330 m/s. How long should a pipe of the same type be to produce the sound of the same frequency while at the fundamental frequency? express your answer with the appropriate units.--