if you set up two sound speakers one playing a note of frequency 100 hz and one playing a note of frequency 90 hz, what are the beat frequency and the beat period?

Answers

Answer 1

The beat frequency is 10Hz and the beat period is 0.1s when two sound speakers one playing a note of frequency 100 Hz and one playing a note of frequency 90 Hz.

Given frequency of first note (f1) = 100Hz

Frequency of second note (f2) = 90Hz

The difference in frequency between two waves is known as the beat frequency. It is as a result of both positive and negative interference. While we understand the beat frequency to be the rate at which the volume of the sound changes, we understand the regular frequency of the waves to be the pitch of the sound.

Beat frequency = f1 - f2 = 100 - 90 = 10Hz

The beat period is the space of time between two successive maxima or minima. Additionally, it is equivalent to the beat frequency's reciprocal.

The beat period = 1/10 = 0.1s

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Related Questions

A. Trip A to B

B. Trip B to C

C. Trip C to D

Answers

Answer:

trip B to C

Explanation:

The slope gives the speed. BC there is no slope. that is why stationery position

there is a minimum angle above the ground such that if the ball is launched below this angle, it can never clear the bar, no matter how fast it is kicked. what is this angle?

Answers

The minimum angle above the ground such that the ball can clear the bar is 17.9°.

How to calculate?

The minimum angle can be found by calculating the range of the ball, which is the maximum horizontal distance it can travel.

It is given by:

R = V_0^2 * sin(2θ) / g

where

V_0 is the initial velocity,

θ is the launch angle,

g is the acceleration due to gravity (9.8 m/s^2).

R = 36.0 ft = 11.0 m, a

solving for the minimum launch angle:

11.0 = V_0^2 * sin(2θ) / 9.8

sin(2θ) = 11.0 * 9.8 / V_0^2

θ = sin^-1(√(11.0 * 9.8 / V_0^2) / 2)

There is a general assumption that a typical kick is around 20 m/s.

Therefore the minimum angle above the ground such that the ball can clear the bar is

θ = sin^-1(√(11.0 * 9.8 / 20^2) / 2) = sin^-1(0.306) = 17.9°

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Complete question:

In Canadian football, after a touchdown the team has the opportunity to earn one more point by kicking the ball over the bar between the goal posts. The bar is 10.0 ft above the ground, and the ball is kicked from ground level, 36.0 ft horizontally from the bar. Football regulations are stated in English units, but convert them to SI units for this problem. There is a minimum angle above the ground such that if the ball is launched below this angle, it can never clear the bar, no matter how fast it is kicked. What is this angle?

Which theories characterize the mechanisms involved in autoimmunity?

Answers

Theories that describe the causes underlying autoimmune disease blame genetic predisposition, environmental triggers, and poor regulation.

What are the methods through which infectious pathogens cause autoimmunity?

Molecular/epitope mimicry or endogenous antigens mobilization are the two most frequently mentioned ways by which infection triggers autoimmune illness. It is unknown how frequently molecular/epitope mimicry leads to autoimmune illness in people, despite being a frequent source of enhanced natural autoimmunity.

What causes autoimmune disease-related tissue damage?

So because self antigens is an integral part of the body, the immune system's effector mechanisms in autoimmune illness target the body's own tissues, causing tissue damage.

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assuming that the dewpoint remains constant over the course of the day, at what time is the relative humidity likely to be highest?

Answers

Given that the dewpoint or absolute humidity does not fluctuate, relative humidity will be highest in the early morning when the air temperature is lowest, and lowest in the afternoon when the air temperature is highest.

What is relative humidity, explain?

The relative humidity (RH) of a water-air mixture is the quantity of water vapour present in comparison to the highest amount attainable. RH is a ratio of a specific water-air mixture's humidity ratio to the saturated humidity ratio at a given temperature (dry-bulb). It is vital to remember that the application of relative humidity is dependent on knowing both the dry-bulb temperature and the RH. The quantity of moisture in a water-air combination at 80% relative humidity at 40°C,  This is why, for example, postharvest storage recommendations include both relative humidity and temperature.

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a racing car traveling with constant acceleration increases its speed from 10 m/s to 50 m/s over a distance of 60 m. how long does this take?

Answers

The racing car took 2.0 seconds to increase its speed from 10 m/s to 50 m/s over a distance of 60 m.

To answer this question we need two formulas. The first formula is used to solve for the acceleration of the racing car and the second equation is to solve for the elapsed time.

Given : v1 = 10 m/s ; v2 = 50 m/s ; distance(d) = 60 m ; time(t) = ?

Solving for the acceleration a, from formula we have

[tex]v2^{2} -v1^{2} = 2ad[/tex]

(50 m/s)² - (10 m/s)² = 2 × 60 m × a

(2500 - 100) (m/s)² = 120 ma

2400 (m/s)² = 120 ma

a = 2400 (m/s)² / 120 m

a = 20 m/s²

Solving for the elapsed time t

a = [tex]\frac{v2-v1}{t}[/tex]

at = ([tex]v2-v1[/tex])

t=[tex]\frac{(v2-v1)}{a}[/tex]

t=[tex]\frac{(50m/s-10m/s)}{20m/s^{2} }[/tex]

t = [tex]\frac{40m/s}{20m/s^{2} }[/tex]

t = 2.0 s

Therefore, the time taken is 2 secs.-

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1. A Ferrari starts from rest and attains a speed of 40 m/s in 8 seconds.
a. What will be its acceleration?
b. Determine the distance travelled by the car during that time.

Answers

The acceleration of the object is 5 m/s^2 while the speed is 160 m

What is the speed of the car?

Let us note that we have to know that the acceleration of the car is the rate of the change of the velocity of the  car with timer and so we can then be able to write for this problem that;

a = v - u/t

a = acceleration

v = final velocity

u = initial velocity

t = time taken

a = 40 - 0/8

= 5 m/s^2

Then we have that;

v^2 = u^2 + 2as

s = v^2- u^2/2a

s = (40^2 - (0)^2/2 * 5

s = 160 m

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Are the following statements true or false? Explain your answer.a. The magnitude of a vector can be different in different coordinate systems.b. The direction of a vector can be different in different coordinate systems.c. The components of a vector can be different in different coordinate systems.

Answers

The magnitude of a vector can be different in different coordinate systems is a false statement. The direction of a vector can be different in different coordinate systems is a true statement. The components of a vector can be different in different coordinate systems is a true statement.

Why direction of a vector can be different in different coordinate systems?

The direction of a vector can be different in different coordinate systems. This is because the direction of a vector is defined with respect to a reference frame or coordinate system.

Can the elements of a vector be different in different coordinate systems?

The elements of a vector can be different in different coordinate systems. This is because the components of a vector are defined with respect to the axes of a particular coordinate system.

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If the radius of the circular path is doubled, keeping the radial velocity of the object constant then, the centripetal acceleration of the object will be reduced to half. True Or False

Answers

Centripetal acceleration and velocity have a quadratic relationship, therefore when the velocity doubles, the centripetal acceleration quadruples.

When the centripetal acceleration is increased, what happens to the centripetal force?

Yes, the acceleration of the object toward the center of the circular motion would grow as the centripetal force increased. For instance, if the mass of the Earth doubled, the satellites orbiting the planet would accelerate twice as fast.

What is the connection between centripetal acceleration and radius?

Centripetal acceleration is the term for the change in velocity caused by circular motion. The linear velocity squared divided by the radius of the circle the object is traveling along can be used to compute centripetal acceleration.

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when you touch a friend after walking across a rug on a dry day, you typically draw a spark of about 2 mm. the magnitude of the electric field for which dielectric breakdown occurs in air is about 3 mv/m. estimate the potential difference between you and your friend before the spark.

Answers

The potential difference between you and your friend before the spark was approximately 6 volts.

The potential difference between two objects can be estimated using the formula:

V = E * d

where V is the potential difference, E is the electric field, and d is the separation distance between the objects.

In this case, the separation distance is approximately 2 mm, and the electric field for dielectric breakdown in air is 3 MV/m.

So, V = 3 MV/m * 2 mm = 6 MV * 10^-3 m = 6 V.

Therefore, the potential difference between you and your friend before the spark was approximately 6 volts.

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places where particles of the medium crowd closer together are called as?

Answers

Compressions are regions where particle of a material congregate more closely.

What is in a particle?

The Benchmark Model of Subatomic Particles is now thought to be the best theory to explain the universe's most fundamental constituents. It discusses how the building blocks of all known matter are quarks, who make up the protons and neutrons, and leptons, which contain electrons. Protons and electrons, two of the quantum particles, each have an electrical charge of one or the other.

What types of particles are there?

Just several examples of particles are planets, carboxyl group, and electrons. Quarks and protons are fundamental particles. The fundamental particles, which are the tiniest, lowest massive particles, already represent the most stable.

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after absorbing optical sunlight, the moon and mercury both re-emit this energy in the infrared and have nearly negligible atmospheres. in terms of re-emitted thermal blackbody luminosity, how much more or less luminous is the moon compared to mercury?

Answers

The moon is less luminous when compared to mercury. It is based on the fact that the luminosity of a spherical blackbody is proportional to the square of its radius and to the fourth power of its temperature.

What degree does the moon's radiation have?

On the Moon, the daytime temperature can reach 253 °F (123 °C), while the nighttime temperature can reach -387 °F (-233 Celsius). As a body's temperatures fall, it emits less radiation and its maximum emission frequency reduces.

What transpires to a black body's radiation when its temperature rises?

(Wien's Law) The peak wavelength declines as the blackbody's temperature rises. As the blackbody's temperature is raised, the intensity (or flux) at all wavelengths rises. As the temperature goes up, the total energy being radiated (the area under the curve) keeps growing (Stefan–Boltzmann Law).

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A magnet is cut in half. Why does this not form a monopole (an isolated pole), even though one half contains the original north pole and the other half contains the original south pole?
A. Domains align to make a north and a south pole on both halves.
B. Electron movement changes direction toward the south pole.
C. The sum of magnetic fields is too small.
D. There are two magnetic fields opposing each other.

Answers

This not form a monopole (an isolated pole), even though one half contains the original north pole and the other half contains the original south pole because D. There are two magnetic fields opposing each other.

About magnets

Magnets are divided into two types, namely natural magnets and artificial magnets. Natural magnets are magnets that are formed from natural processes, without human intervention.

Meanwhile, artificial magnets are magnets made by humans using objects that contain magnetic elements. Homemade magnets are divided into two types, artificial magnets are permanent (fixed) and temporary.

Permanent magnets are magnets whose magnetic properties will remain and not easily disappear. Conversely, temporary magnets are magnets whose magnetic properties are only temporary or not permanent.

Magnets always have two poles, namely the north pole (U) and the south pole (S). The magnetic force in attracting certain objects is called magnetic force. Magnets can be U-shaped, cylinders, rods, needles, chips to horseshoes (horseshoes).

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an automobile is traveling west. can it have a velocity toward the west and at the same time have an acceleration toward the east? under what circumstances?

Answers

Yes, a car can accelerate in the direction of the east while also traveling at a westward speed. This would happen if the car was accelerating and decelerating in a westward direction.

How does an object's capacity to change direction while moving depend on the magnitude of its velocity and acceleration?

The amount of acceleration and velocity determine how easily an object can change direction while it is moving. Since the object has more momentum at a higher velocity, changing direction is more difficult. On the other hand, the faster an object can change direction, the greater the acceleration. It might not be able to, though, if the acceleration is too low.

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What is the advantage of having a large number of oscillations?

Answers

The more the number of the oscillations that we have the more we can have an accurate measurement.

Why do we have many oscillations?

Having a large number of oscillations in a system can increase its accuracy and stability, as well as its ability to process signals. For example, in the field of signal processing, a higher number of oscillations can result in a more detailed and accurate representation of a signal.

Additionally, in control systems, a larger number of oscillations can make the system more robust and less prone to errors.

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You'll get a more accurate result for the average oscillation having a large number of oscillations and decrease the level of uncertainty with your result.

What is oscillation?

Oscillation is the repeating or periodic change of a quantity around a central value or between two or more states, often in time. Alternating current and a swinging pendulum are two common examples of oscillation.

An object's mechanical oscillations are referred to as vibrations. However, oscillations also happen in dynamic systems, or to be more precise, throughout all of science. Even our heartbeat generates vibrations. Oscillators, meanwhile, are described as having motion towards an equilibrium point.

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compute the time required for the ball to fall to the ground while experiencing acceleration due to gravity

Answers

It would take approximately 1.746 seconds for the ball to fall to the ground from a building that is 15 meters tall.

To calculate the time it takes for a ball to fall to the ground, we can use the equation of motion under constant acceleration, which is:

h = v_0 * t + (1/2) * a * t^2

Where h is the height of the building (15 meters), v_0 is the initial velocity (0 m/s), a is the acceleration due to gravity (9.8 m/s^2), and t is the time.

Rearranging the equation and solving for t:

t = √(2 * h / a)

= √(2 * 15 / 9.8)

= √(30 / 9.8)

= √(3.06122449)

= 1.746 sec

Acceleration due to gravity, also known as "g," is a fundamental constant that represents the rate at which an object falls towards the earth due to the force of gravity. It is defined as the acceleration that a freely falling object experiences as it falls towards the earth. The acceleration due to gravity on the surface of the earth is approximately 9.8 m/s^2. This means that every second an object falls, it gains an additional 9.8 meters per second of velocity.

The acceleration due to gravity is a function of the mass of the object and the distance between it and the center of the earth. The more massive the object and the closer it is to the earth, the greater the acceleration due to gravity. The acceleration due to gravity also decreases with increasing altitude, meaning that objects fall more slowly the higher they are above the earth's surface.

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Complete Question: -

For a building having a height equal to the quantity you have recorded for Day in meters (in our example 15 meters), compute the time required for the ball to fall to the ground while experiencing acceleration due to gravity (g=9.8m/s2).

A 580 kg elevator accelerates upward at 1.2 m/s2 for the first 13 m of its motion. How much work is done during this part of its motion by the cable that lifts the elevator? Neglect any friction.

Answers

The work done during this part of its motion by the cable that lifts the elevator is 64844 Joule.

What is acceleration?

Acceleration is rate of change of velocity with time. Due to having both direction and magnitude, it is a vector quantity. Si unit of acceleration is meter/second² (m/s²).

Upward acceleration of the elevator is = 1.2 m/s².

Mass of the  elevator is  = 580 kg

Displacement of the elevator = 13 m

Hence, the work is done during this part of its motion by the cable that lifts the elevator = 580 × (9.8 + 1.2) ×13 Joule

= 64844 Joule.

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water travels down a pipe with a circular cross-section at a velocity v1. this pipe is connected to another pipe with a square cross-section by a small fitting. if the square pipe has side length 2a, and the circular pipe has a radius of a, what is the velocity of the water in the circular pipe?

Answers

The hydraulic radius is the same for both pipes, the velocity of the water in the circular pipe must be the same as the velocity of the water in the square pipe, i.e., v1.

What is the water's speed?

The cross-sectional area of a pipe and its hydraulic radius, which is the ratio of the cross-sectional area to the wetted perimeter, determine the velocity of water flowing through it.

The equation v = s/t denotes the vector quantity velocity (v), which quantifies displacement (or change in location, s), over change in time (t).

Given that the cross-sectional area of the circular pipe is[tex]a^2[/tex] and the wetted perimeter is 2a the hydraulic radius is a.

The hydraulic radius is a for the square pipe because its cross-sectional area is[tex]2 a^ 2[/tex] and wetted perimeter is 4 a.

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divide force
(kg · m/s²) by acceleration
(m/s²) what units do you get?

Answers

Since the rate of change in velocity is referred to as the object's acceleration, we may calculate acceleration in meters/second2 by dividing velocity m² by time (seconds).

Describe acceleration?

A acceleration of the cart is the frequency with which the object's velocity changes in relation to time.as stated in the issue We must determine the outcome if you divide the velocity in meters per second by the time in seconds.

What does class 9 acceleration mean?

The definition of acceleration is the speed at which velocity varies with function of time. Since acceleration has both a magnitude and a direction, it is a vector quantity. It is also the first derivative for velocity profile or the derivative of point with regard to time.

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a normal person stands at the top of a 14.64-m tall cliff overhanging a pool of water. she throws two stones, 0.35 s apart, both straight down and finds they reach the water at the same time. the first stone's initial speed was 2.52 m/s. how fast was the second stone moving as it hit the water (i.e. what is its speed)?

Answers

The velocity of the second stone as it hit the water was 2.5m/s.

According to the question;

A person throws two stones into a pool of water from the top of a 14.64-meter-high cliff, 0.35 seconds apart.

The initial speed of the first stone was 2.52 meters per second.

We may use the kinematic equation to determine the second stone's speed when it struck the water:

v² = u² + 2as

where,

v = the final velocity = final velocity of second stone in this case = to find out

u = initial velocity =  2.52 m/s

a = acceleration  = acceleration due  to gravity in this case = -9.8 m/s²

s = distance = 14.64 m

In the equation, we may substitute the known values to obtain:

v² = 2.52²- 2(-9.8)×14.64

⇒ v² = √(2.52^2 - 2(-9.8)(14.64)) m/s

⇒ v² = √(6.3408) m/s

∴ v² = 2.5 m/s

As a result, when the second stone hit the water, it was traveling at a speed of 2.5 m/s.

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a force of resistance from surfaces or objects rubbing or moving against one another. it can cause a moving object to slow or stop. it is called___

Answers

The resistance to motion created when two objects rub against one another is called friction.Every time two objects come into touch with one another, friction is created.

What type of force is used when surfaces bump into one another or move past one another?

The small bumps press against one other as two surfaces move over one another. A surface is subject to a force from friction that opposes the direction of the surface's motion. Application of lubricants can minimize friction.

What generates friction in a system?

The imperfections on the surfaces that are in contact are what produce friction. Even the finest surfaces include tiny abnormalities, and when two surfaces interact with one another, these irregularities cause friction. The friction increases as the imperfections get bigger.

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if the speeding sports car were to turn around and drive west at 35.0 m/s toward the approaching police car, what frequency would the driver of the sports car hear?

Answers

The frequency heard by the driver of the sports car would be 0.907 times the original frequency of the police car's siren.

The frequency heard by the driver of the sports car would be an increased pitch due to the Doppler effect. The Doppler effect describes the change in frequency of a wave in relation to an observer who is moving relative to the source of the wave. In the case of the sports car, the observer is the driver and the source of the wave is the sound of the police car's siren. The formula for calculating the frequency heard by the observer is given by:

[tex]f' = f * (v + v_s)/(v + v_o)[/tex]

here f is the original frequency of the siren, v is the speed of sound,[tex]v_s[/tex] is the speed of the source (the police car), and[tex]v_o[/tex] is the speed of the observer (the sports car).

Plugging in the values, we get:

[tex]f' = f * (340 + 0)/(340 + 35)\\ = f * (340)/375 \\= f * 0.907[/tex]

So ,the frequency heard by the driver of the sports car would be 0.907 times the original frequency of the police car's siren.

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a child in a boat throws a 5.70 kg package out horizontally with a speed of 10.0 m/s. calculate the velocity of the boat immediately after, assuming it was initially at rest. the mass of the child is 22.0 kg and that of the boat is 50.0 kg. ignore water resistance.

Answers

The velocity of the boat immediately after the package is thrown with a speed of 10.0 m/s, assuming it was initially at rest and ignoring water resistance, can be calculated using the equation of conservation of momentum.

The equation states that the total momentum of the boat and the package before the throw is equal to the total momentum of the boat and the package after the throw.

In this case, the initial momentum of the boat is 0 since it was initially at rest, and the initial momentum of the package is 0.7 x 10.0 m/s (due to the mass of the package being 5.70 kg and the speed of 10.0 m/s).

The total initial momentum is thus 0.7 x 10.0 m/s. After the throw, the momentum of the package is 0 since it is no longer part of the system, and the momentum of the boat is equal to the momentum of the package before the throw, which is 0.7 x 10.0 m/s. The velocity of the boat after the throw can be calculated by dividing the momentum of the boat (0.7 x 10.0 m/s) by the mass of the boat (50.0 kg). This yields a velocity of 0.14 m/s.

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What discovery led J.J. Thomson to decide that atoms were not indivisible, but are actually composed of smaller parts?

Thomson used a scanning tunneling micrograph to capture images of atoms.
Thomson used a beam of negatively charged particles.
Thomson used only the experimental results of other scientists.

Answers

J. J. Thomson used a beam of negatively charged particles to decide that atoms were not indivisible, but are actually composed of smaller parts.

What is electron?

The known lightest stable subatomic particle is the electron. It has an adverse charge. The English physicist J.J. Thomson made the discovery of the electron in 1897 while researching cathode rays. His discovery of electrons—originally referred to as corpuscles—revolutionized our understanding of atomic structure.

Under normal circumstances, the attraction between opposite electric charges holds electrons to the positively charged nucleus of atoms. The number of positive charges on the nucleus and the number of electrons in a neutral atom are the same.

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Answer:

B. Thomson used a beam of negatively charged particles.

Explanation:

a golf club strikes a 0.044-kg golf ball in order to launch it from the tee. for simplicity, assume that the average net force applied to the ball acts parallel to the ball's motion, has a magnitude of 6450 n, and is in contact with the ball for a distance of 0.015 m. with what speed does the ball leave the club?

Answers

A 0.044-kg tennis ball is launched from the tee by a golf club. In order to keep things simple, let's suppose that average net pressure acting on the ball is parallel to its motion and has a magnitude of

What is the average speed of an object?

The overall distance the object covers in a given amount of time is its average speed. What is the formula for average speed? What type of quantity—scalar or vector—is average speed? A scalar value represents the average speed. Describe the average speed.

What is the average speed?

What is the average speed? A vector quantity is average velocity. The position change or displace (x) split by the intervals (t) during which the displacement happens is the definition of average velocity. The typical speed can

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One reactant concentration is When using the method of initial rates for a kinetic study, the reaction is performed choose... kept constant, and the other choose...

Answers

When doing a kinetic research utilizing the method of starting rates, the reaction is repeated several times. While the concentration of one reactant fluctuates, the other is maintained constant.

What, using an example, is concentration?

You can determine what more solute has been dispersed in the solvent by looking at the level of the solution's concentration. For instance, the concentration may be stated as 1 teaspoon of salt per 2 cups of water if you add 1 teaspoon to 2 cups of water.

How are concentration levels determined?

Molarity, a typical measurement used for this, is utilized. Molarity (M) is calculated by dividing the volume of the solution (V) in liters by the quantity of moles for solute (n). It's critical to remember that its molarity is determined by the moles of the solute in liter fluid.

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The complete question is-

When using the method of initial rates for a kinetic study, the reaction is performed ____. One reactant concentration is kept constant, and the other _____.

explain why the vetcors can't be a closed diagram​

Answers

Since they were viewing the movements of the vectors from various angles, the students discovered that the directions of the vectors didn't constantly point the same direction.

Vector addition is what?

Combining two maybe more units to get a scalar sum is known as vector addition. By aligning the two nodes head to tail and dragging the wires from the nozzle exit to towards the free head, it is possible to determine the sum for two vectors.

What exactly does the word "vector" mean?

A quantity or phenomena with independent attributes for size and direction is called a vector. Another meaning of the term is the mathematical or geometrical representation of a quantity. In nature, vector examples include force, weight, magnetic waves, and motion.

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most modern windows use double pane glass to reduce the amount of heat transferred into or out of buildings. consider a double pane window with 1 m^2 area and a 1 mm air gap between 2 window panes when the inner pane is held at 20 c, and the outer pane is held at 0 c. please list your assumptions and ignore the effects of sunlight. estimate how much heat is transferred from one pane to the other via conduction. estimate how much heat is transferred from one pane to the other via convection. estimate how much heat is transferred from one pane to the other via radiation. *

Answers

The house stays warmer in the winter since the glass inside isn't immediately open to the outside air. Insulating gases are frequently used to fill the area between the glass panes.0.5W

Are single-pane windows heat-losers?

The old-world charm and character of single-pane windows attracts many homeowners who opt to maintain them. Windows with a single pane of glass, however, perform very poorly as insulators. Frequently, these windows are too hot during the summer and too cold in the winter.

Which kind of window loses the most heat?

Due to their ability to insulate against the full impacts of temperature fluctuations and contribute to the stabilization of your home's temperature, double-glazed windows are more efficient insulators than single-glazed windows. Your home will remain warmer in the winter and cooler in the summer by reducing heat gain and loss.

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If you were to complete a mass balance on a coffee roaster, which of these would NOT be a material stream exiting out of the roaster?
Group of answer choices
Water vapor, carbon dioxide, and other VOCs
Chaff
Spent coffee grounds
Roasted coffee beans

Answers

Spent coffee particles would not form a material stream leaving the roaster if a parameter on a cup roaster were to be done.

What does mass vs. weight mean?

How much substance an item contains may be determined fundamentally by its mass. The gravitational pull on an item may be measured by its weight. The position of the item as well as its mass are important factors. Because of this, weight may be used to quantify force.

equals the amount of coffee beans that are put in.

Green bean mass is the sum of its roasted bean, chaff, and gas masses.

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point p in the figure indicates the position of an object traveling at constant speed clockwise around the circle. which arrow best represents the direction of the acceleration of the object at point p?

Answers

The arrow points toward the origin when an object travels at constant speed clockwise around the circle.

What is the motion termed when a particle travels in a circle?

The term "circular motion" refers to the movement of an object along the circumference of a circle or the rotation of an object around a circle. It is known as uniform circular motion when a particle moves in a circle while maintaining a constant speed.

What is the centripetal force, exactly?

Any force that changes the direction of motion toward the center of a circular motion is known as a centripetal force. The part of the force that produces the centripetal force is the part that is perpendicular to the velocity.

In a circular motion at a constant speed, which of the following is accurate?

The speed is constant in a uniform circular motion. However, the body's orientation keeps shifting. This is brought on by an acceleration that at every location is perpendicular to the direction of movement.

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i add 4000 joules to 1 kg of a liquid and it warms up by 2 oc. what is the specific heat of the liquid? group of answer choices 200 j/kg oc 500 j/kg oc 2000 j/kg oc 8000 j/kg oc

Answers

Pressure and temperature, a liquid's specific heat conductivity (Cp) is approximately 4.2 J/g°C. According to this, 4.2 watt years of energy  needed to raise 1 water gram's temperature 1 degree Celsius.500 j/kg oc

What does liquid and solid specific heat mean?

In other terms, a solid's or liquid's specific heat is the amount of energy needed to increase the temperature of an unit weight of the solid by one degree Celsius. We represent it as C. The heat needed to raise the temperature for 1 kg solid or liquid by 1K is measured in S.I. units.

Is the liquid's specific heat constant?

The specific thermal conductivity of various states of materials varies often with temperature. At 20 °C, liquid water has one of the largest specific heat capacities of any common solid (4184 J kg 1 K), whereas ice's is just 2093 J kg 1 K.

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