[ARs: 21, 250 Hz, 4.70×10) Magne ways t d. The speed of sound in air is 332 m/s and its wave length is 0.044m. Calculate the frequency of the sound and it time period. ​

Answers

Answer 1

The period (T), which is expressed in seconds, is the amount of time required for one full vibration. The frequency of a vibration, for instance, is 10 vibration per second, or 10 hertz, if the duration of a vibrating is 0.1 sec.

What is the relationship between frequency and duration?

T = 1/f, where f is the frequency and T is the period, is the formula for time. = c/f, where c represents wave speed (m/s) as f represents frequency (Hz). Cycles per second (Hz) is the abbreviation for the hertz unit. The equation below describes how electromagnetic waves and sound waves behave.

The speed of sound in air?

Solid objects transmit sound the fastest. This is because sound waves can move through a solid medium much more swiftly than they can through a liquid or gas since its molecules are much closer together. In actuality, steel conducts sound waves nearly 17 times more quickly than air.

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Related Questions

A man throws a penny down 4 m/s off the top
of the empire state building. If it accelerates at 9.8 m/s^2 the whole way
down for 8.42 s, what is the height it fell from?

Answers

The velocity of penny is 4 m/s with an acceleration of 9.8 m/s² within 8.42 s. Then, the height from which it fell down is 381 m.

What is acceleration ?

Acceleration  of an object is the measure of its rate of change in velocity. It is a vector quantity having direction and magnitude. It is the ratio of change in velocity to the change in time.

Given velocity of the penny u = 4 m/s

acceleration = 9.8 m/s²

time = 8.42 s.

Then the height from which the penny is fell down is calculated as follows:

h = ut + 1/2 at²

h = 4 m/s × 8.42 s + 1/2 9.8 m/s² × 8.42 ×8.42 = 381 meters.

Therefore, the height from which the penny fell from is 381 m.

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If 0.035 pC of charge is transferred via the movement of A1³+ ions, how many of these must have been transferred in total?​

Answers

If the movement of A13+ ions transfers 0.035 pC of charge, 72917 of these must have been transferred in total.

Determine the total number of ions that must be transferred.

Three extra protons are present in each ion. As a result, the additional charge on each = C

Charge total = 0.035 pC

Q (total charge) = C

Let n be the number of ions.

In response to the question:

n×3×1.6×10∧-19=0.035×10∧-12

n=0.035×10∧-12/3×1.6×10∧-19

n=7.29167×10∧4

n = 72917

As a result, the total number of ions required for transfer is 72917.

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What is the skeletal system?
O It is a system comprised of glands that release hormones into the bloodstream.
It is a system that supports the body, helps with movement, protects internal organs, and serves as a site for
blood cell formation.
O It is a system that coordinates and controls functions throughout the body and responds to stimuli.
It
is a system comprised of a series of organs that takes in oxygen from the atmosphere and releases carbon
dioxide.
Previous

Answers

Answer:It is a system that supports the body, helps with movement, protects internal organs, and serves as a site for

blood cell formation.

Explanation: reason it is a system of which supports the body weight and holds your organs in without such a system theyd fly around damaging them due to such the answer is exactly as said it supports the body weight the movement of your legs and holds you up and it creates blood cells from your bome maro

Answer: The answer is: It is a system that supports the body, helps with movement, protects internal organs, and serves as a site for

blood cell formation.

Explanation: I have my ways ;>

Steam moves into the cylinder of a steam engine at a constant pressure and does 0.84 J of work on a piston. The diameter of the piston is 0.016 m, and the piston travels a distance of 0.021 m in one stroke. What is the pressure of the steam?

Answers

Expansion stroke refers to the forward motion of a steam engine piston.The steam has a pressure of 103.45 kPa.

What is the pressure of the steam?

Expansion stroke refers to the forward motion of a steam engine piston.The piston is propelled forward during the expansion stroke by the expansion of steam in the cylinder.Additionally moving is the piston's connecting crank shaft.

When the piston is expanding, the crankshaft's wheel rotates only halfway.

W = p * V is the formula, where W stands for work, p stands for pressure, and V is the change in piston volume.

We are aware of:

W = 0.6 J.

The piston measures 1.8 cm in diameter.

This indicates that r = 0.9 cm.

Since it moves 2.3 cm, a cylinder's height is given by h = 2.3 cm.

V = r2 h = 0.92 3.14 2.3 5.85 cm3 = 0.00000585 m3

The pressure is p = W/V = 0.6 J/0.00000585 m3 = 103,448.27 Pa, or p = 103.45 kPa.

The steam has a pressure of 103.45 kPa.

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What affects the
flow of electricity?

Answers

Answer:

Heating effects impact the flow of the electricity.

Explanation:

Gas in a container is at a pressure of 1.6 x 10^5 pa and a volume of 4.0 m^3 What is the work done on the gas if it is compressed to 1/4 of its initial volume?

Answers

The amount of effort put forward if the gas is compressed to only 1/4 of its original volume W = P x AV equals (1,6 x 10 5 Pa) (4 m3). 5. W = 6,4 x 10 J.

Are people hazardous to gas?

Generally speaking, minimal contact with gasoline is safe. A person's health can be significantly harmed by prolonged exposure to gasoline and its vapors since they are poisonous. Humans have created gasoline, which is largely used to power cars and other engine-powered machinery.

Who has the best gas prices nearby?

Chevron has the greatest overall customer satisfaction ratings among the biggest national chains in America. Over 7,800 stores are within its reach, and while some petrol stations include quick food marts, one in North Hollywood goes above and beyond.

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A satelite is launchedin a direction parallel to the surface of the earth with a velocity of 36900km\h from an altitude of 500km. Determine the maximum atitude reached and the periodic time of the satelite

Answers

The maximum altitude reached is 500 km. The periodic time of the satellite is  1.175 hour.

What is speed?

A body's velocity is the rate at which its displacement alters with respect to time. A vector quantity with both magnitude and direction is velocity. The meter/second unit of measurement for speed.

The satellite is traveling at a speed of 36900 km/h in a path parallel to the surface of the planet.

There is no initial velocity component in the vertical direction.

Consequently, the highest altitude achieved was 500 km.

and the satellite's periodic time is equal to 2π×(6400+500)/36900 hours.

= 1.175 hour.

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You pushed the 25kg table to the right with the force of 213 N. What is the work done by your push on the table after covering a distance of 3.5 m?

Answers

To find work done, use the formula:
W=Fd
W is work
F is force
d is displacement

W=(213N)(3.5m)
W=681.7J
That’s your answer

In your opinion, how do you think to go faster than the speed of light?

Answers

Answer:

According to special relativity, nothing can travel faster than the speed of light – an object with mass would require more energy to accelerate closer to the speed of light without actually reaching it.

Explanation:

Hope this helps!

Hypothetically somthing can match if not exceed the speed of light based on our perspective. I'll use Hubble's law for example (the observation in physical cosmology that galaxies are moving away from Earth at speeds proportional to their distance). To us there are some galaxies so far away from us that they appear or should logically be moving away from us at the speed of light or greater. However the galaxies are not actually moving but rather the space in-between galaxies are expanding indefinitely. But because of our perspective it appers that the galaxies are going through space at unthinkable speeds.

A pan of water is boiling but does not change in temperature. The energy that is needed to turn the water into a gas is called the latent ____________ ____________ ________________ What three words coplete the sentence?

Answers

The energy that is needed to turn the water into a gas is called the latent heat of vaporization.

What is latent heat of vaporization?

Latent heat of vaporization is the heat capacity or energy that is needed to turn the water in liquid state into a gas without any rise or change in temperature of the water.

Mathematically, the formula for the energy that is needed to turn the water into a gas is given as;

Q = mLv

where;

Q is the energy neededm is the mass of the waterLv is the Latent heat of vaporization

Thus, the three words needed to complete the sentence are  heat of vaporization.

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What do renewable resources and non-renewable resources have in common?

Answers

Answer:

They are used for energy such as electricity

A whale swims due EAST for a distance of 6 km, turns around and goes due WEST for 1 km, and finally turns around again and heads 3 km due EAST. What is the total distance traveled by the whale?

Answers

The total distance travelled by the whale is 3 km.

What is difference between distance and displacement?

The complete length of the path between any two points is called distance.

Displacement is the direct length between any two points when measured along the minimum path between them. It is a straight line joining initial and final points.

Given is that a whale swims due EAST for a distance of 6 km, turns around and goes due WEST for 1 km, and finally turns around again and heads 3 km due EAST.

The total distance travelled by the whale will be -

{d} = 6 km + 1 km + 3 km

{d} = 3 km

Therefore, the total distance travelled by the whale is 3 km.

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A car P was decelerating at 2.0 m/s^2 when it passes a stationary car Q, and speed was 20 m/s. At the same car Q from rest and accelerated at 2.5 m/s² along the same straight road.
(i) Sketch the speed-time graph for cars P and Q. Mark appropriate values on both axes.
(ii) Find the time when car Q overtook car P.
(iii) How far was car Q from car P when car P came to a stop?

(b) Two vehicles P and Q start from the same point O and travel along lthe same road. The speed-time graphs of the two vehicles are as shown in the graph.
(i) What is the distance from O when P overtakes Q? (ii) Find the distance between the vehicles after 5.0 s. Which vehicle is ahead?​

Answers

A. (i) The speed-time graph for cars P and Q is in the attachment.

(ii) The time when car Q overtook car P is 8.9 s.

(iii) Car Q is 25 ahead of car P when car P came to a stop.

B. (i) The distance from O when P overtakes Q is 22.4 m.

(ii) The distance between the vehicles after 5.0 s is 1 m. Car P is ahead of car Q.

The car is in uniform motion if the speed is constant. d = v × t

The car doing a non-uniform motion if the car increases or decreases its speed. Three formulas in non-uniform motion

v = v₀ + atv² = v₀² + 2add = v₀ t + 0.5 at²

where

v₀ = initial speed (m/s) v = final speed (m/s) a = acceleration or deceleration (m/s²)
Acceleration = + a
Deceleration = - at = time (s) d = displacement (m)

a. In this problem

Car P

v₀ = 20 m/sa = - 2 m/s²The car stop when v = 0
v = v₀ + at
0 = 20 - 2t
2t = 20
t = 10 s

Car Q

v₀ = 0a = 2.5 m/s²When car P stop at 10 s
v = v₀ + at
v = 0 + (2.5 × 10)
v = 25 m/s

Making speed-time graph

Car P
From 20 m/s at t = 0 s
To 0 m/s at t = 10 sCar Q
From 0 m/s at t = 0 s
To 25 m/s at t = 10 s

When car Q overtook car P both cars traveled the same distance

d car P = d car Q

(v₀ t + 0.5 at²) car P = (v₀ t + 0.5 at²) car Q

(20 × t)  + (0.5 × (- 2) × t²) = 0 + (0.5 × 2.5 × t²)

20t - t² = 1.25t²

0 = 2.25t² - 20t

0 = t (2.25t - 20)

t = 0  or  2,25t - 20 = 0

              2.25t = 20

              t = 20 ÷ 2.25
              t = 8.9 s

When car P stops at t = 10 s

Car P
d = v₀ t + 0.5 at²
d = (20 × 10) + (0.5 × (- 2) × 10²)
d = 200 - 100
d = 100 mCar Q
d = v₀ t + 0.5 at²
d = 0 + (0.5 × 2.5 × 10²)
d = 1.25 × 100
d = 125 mDistance difference
125 - 100 = 25 m

B. In this problem

Car P moves in non-uniform motion

v₀ = 0At t = 5 s the speed v = 10 m/sThe acceleration
v = v₀ + at
10 = 0 + 5a
5a = 10
a = 2 m/s²

Car Q

From t = 0 - 2 s move in non-uniform motion
v₀ = 0
At t = 2 s the speed v = 6 m/sThe acceleration
v = v₀ + at
6 = 0 + 2a
2a = 6
a = 3 m/s²

When car Q overtook car P both cars traveled the same distance

Car Q moves in two types of motionFor Car Q
After t = 2 s move in uniform-motion
The speed at 2 s
v = v₀ + at
v = 0 + (3 × 2)
v = 6 m/s
The distance took at 2 s
d = v₀ t + 0.5 at²
d = 0 + (0.5 × 3 × 2²)
d = 6 m
After t = 2 it move in uniform motion
d = v × t
d = 6tFor Car P
The distance took at 2 s
d = v₀ t + 0.5 at²
d = 0 + (0.5 × 2 × 2²)
d = 4 m
The speed at 2 s
v = v₀ + at
v = 0 + (2 × 2)
v = 4 m/s
The distance after 2 s
d = v₀ t + 0.5 at²
d = (4 × t) + (0.5 × 2 × t²)
d = 4t + t²After t = 2 s the distance difference = 6 m - 4 m = 2mAfter t = 2 s
d car Q - d car P = 2 m
6t - (4t + t²) = 2
6t - 4t - t² = 2
0 = t² - 2t - 2

Factorize t² - 2t - 2 = 0 using quadratic formula

a = 1b = - 2c = -2t₁₂ = (- b ± (√(b² - 4ac))) ÷ 2a
t₁₂ = (2 ± (√(2² - (4 × 1 × - 2)))) ÷ 2
t₁₂ = (2 ± (√(4 + 8)) ÷ 2
t₁₂ = (2 ± (√12) ÷ 2
t₁₂ = (2 ± 3.46) ÷ 2t₁ = (2 - 3.46) ÷ 2 = - 1.46 ÷ 2 = - 0.73 impossible t₂ = (2 + 3.46) ÷ 2 = 5.46 ÷ 2 = 2.73 st total = 2 + 2.73 = 4.73 sCar Q overtook car P at t = 4.73 sDistance from car P
d = 4 + 4t + t²
d = 4 + (4 × 2.73) + 2.73²
d = 4 + 10.92 + 7.45
d = 22.4 m

After 5 s

Car P
d = v₀ t + 0.5 at²
d = 0 + (0.5 × 2 × 5²)
d = 25 mCar Q
d = 6 + 6t
d = 6 + (6 × (5 - 2))
d = 6 + (6 × 3)
d = 6 + 18
d = 24 mCar P ahead car QThe distance between two cars
25 - 24 = 1 m

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Use the force diagrams below to determine whether the cart is not moving, moving at a constant speed speeding up or slowing down

Answers

a) Cart is speeding up ; b) cart is slowing down and c) cart is not moving.

What do you understand by force and friction?

Force of friction is a contact force whereas friction is the force that resists motion when surface of one object comes in contact with surface of another. Example is the force of friction between two stones rubbed with each other.

Static friction magnitude is directly proportional to normal force magnitude and the roughness between sliding surfaces. The ratio of magnitude of frictional force divided by normal force magnitude is called as coefficient of friction. Friction takes place at the point of contact between two bodies.

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consider two bodies A and B of masses m1 and m2 moving along the same straight line in the same direction with velocities u1 and u2. the bodies A and B suffer a head on collision when they strike and continue to move along the same straight line of velocities v1 and v2 respectively. Assume the collision is elastic , show that u1 + v1 = u2 + v2

Answers

As the collision is elastic,  u₁ + u₂ = v₁ + v₂ must be satisfied.

What is law of momentum conservation?

According to the law of momentum conservation, momentum is never created nor destroyed inside a problem domain.

Before collision,

velocity of body A = u₁ velocity of body B = u₂

After collision,

velocity of body A = v₁ velocity of body B = v₂

Hence, according to  law of momentum conservation

m₁u₁ + m₂u₂ = m₁v₁ + m₂v₂

As the collision is elastic, total kinetic energy is also conserved.

1/2m₁u₁² + 1/2m₂u₂² = 1/2m₁v₁² + 1/2m₂v₂²

This two equation satisfy that:

u₁ + u₂ = v₁ + v₂

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A ball is thrown vertically upwards from the ground with an initial velocity u. The time taken by the ball to reach a height h is t1. The ball then takes a further time of t2 to return to the ground. Find in terms of t1,t2 and g.
a. the initial velocity u,
b. the height h,
c. the maximum height H reached by the ball.

Answers

The initial velocity u be the product of time t and acceleration due to gravity g thus u = gt. Then height that the ball can move with this velocity is 1/2 gt².

What is velocity ?

Velocity of a moving object is the measure of its distance travelled per unit time. Velocity is a vector quantity having both magnitude and direction. Acceleration is the rate of change in velocity.

Here, the initial velocity is given u. It is the product of acceleration g and time t. thus, u = gt.

The height travelled within the time t and acceleration g, is written as:

h = 1/2 gt²

Now, when the ball reaches its maximum height, its potential energy becomes equal to the kinetic energy.

that is, 1/2 mv² = mgh

therefore, h = v²/2g.

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Compute the work (in joules) required to compress a spring 7 cm more when it is already compressed 6 cm, assuming that the spring constant is k = 180 N/m. (Use decimal notation. Give your answer to two decimal places.)

Answers

Answer:

Explanation:

d8e fool

4. A cylindrical compression: sample is subjected to axial Vertical axial compressive stress (oa) parallel to the length of the core is taken to higher level. Using the Mohr Stress diagram, calculate the values of normal stress and shear stress. Ob = 500 Pa Ja = 1500 Pa b = 50°​

Answers

The normal stress is 1292.5 Pa and the shear stress is 330 Pa on the plane at an angle of 50° relative to the principal stress axes.

What is  shear stress?

Shear stress is described as the component of stress coplanar with a material cross section which arises from the shear force, the component of force vector parallel to the material cross section.

We will calculate the major and minor principal stresses:

σ1 = (ob + ja) / 2 + (ja - ob) / 2 * cos(2b)

σ2 = (ob + ja) / 2 - (ja - ob) / 2 * cos(2b)

The normal stress on the plane at angle b can be calculated as:

σ = (σ1 + σ2) / 2 + (σ1 - σ2) / 2 * cos(2b)

The shear stress on the plane at angle b can be calculated as:

τ = (σ1 - σ2) / 2 * sin(2b)

Applying the  formulas, we have:

σ1 = (500 + 1500) / 2 + (1500 - 500) / 2 * cos(2 * 50) = 1000 + 500 * 0.87 = 1000 + 435 = 1435 Pa

σ2 = (500 + 1500) / 2 - (1500 - 500) / 2 * cos(2 * 50) = 1000 - 500 * 0.87 = 1000 - 435 = 565 Pa

σ = (1435 + 565) / 2 + (1435 - 565) / 2 * cos(2 * 50) = 1000 + 435 * cos(100) = 1000 + 292.5 = 1292.5 Pa

τ = (1435 - 565) / 2 * sin(2 * 50) = 435 * sin(100) = 435 * 0.76 = 330 Pa

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if a weather balloon in flight give up 15 j of energy as heat and the gas within it does 13 j of work on the outside air, by how much does its internal energy change?

Answers

The change in the internal energy of the gas is -28 J

What is the internal energy?

Internal energy (U) is the total energy of a thermodynamic system, including the kinetic and potential energies of its particles, as well as its internal molecular energy. It is a thermodynamic state function and depends on the temperature, pressure, and other variables that describe the state of a system.

From the statement of the first law of thermodynamics, we know that we have;

ΔU = q + w

Since the heat was given up and work was done q = -ve

w = -ve Hence we have;

ΔU = -15J - 13J

= -28 J

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The fastest that a human has run is about 12m/s
(a) If a pole vaulter could run this fast and convert all of her kinetic energy into gravitational potential energy, how high would she go?
(b) Compare this height with the world record in the pole vault.

Answers

Answer:

Explanation:

The mass of the human = x

a) EK=1/2x144= 72x

   EK=EP

72x=mgh

72x=x * 10 * h

h=7.2m

b) the world record in the pole vault = 6.2m

6.2<7.2

A cue ball rolls toward a billiard ball with a velocity of 1.0 m/s east. Both balls have identical masses. what happens to the total momentum after the two balls collide?

Answers

The total momentum after the two balls collide remains conserved.

What is collision in physics?A collision happens when two bodies come in direct contact with each other.In this case, the two bodies exert forces on each other in a short period of time.The energy and momentum of bodies interacting undergo a change as a result of the collision.An elastic collision is an encounter (collision) between two bodies in which the total kinetic energy of the two bodies remains the same.In an ideal, perfectly elastic collision, there is no net conversion of kinetic energy into other forms such as heat, noise, or potential energy.

Given is that a cue ball rolls toward a billiard ball with a velocity of 1 m/s east. Both balls have identical masses.

For the elastic collision, the momentum remains conserved. So -

[tex]$m_{1}u_{1}+m_{2}u_{2}=m_{1}v_{1}+m_{2}v_{2}[/tex]

We can write -

{m} + {m} = m{v₁ + v₂}

{v₁ + v₂} = 2m/m

{v₁ + v₂} = 2

 

Therefore, the total momentum after the two balls collide remains conserved.

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What is the angle between the vectors A and - A when they are drawn from a common origin?

Answers

Answer:

The angle will be 180°.

hope that helps...

The Sun has an angular diameter of about 0.5∘ and an average distance of about 150 million km. What is the Sun's approximate physical diameter in km?

Answers

To find the physical diameter of the Sun, we can use the formula for angular size:

d = D * tan(Θ/2),

where d is the physical diameter, D is the distance from the observer to the object, and Θ is the angular size.

Given that the angular diameter of the Sun is about 0.5 degrees and its average distance is about 150 million km, we have:

d = 150 million km * tan(0.5∘/2) = 150 million km * tan(0.25∘)

Since the tangent function is a continuous function, we can use an approximation to find its value:

tan(0.25∘) ≈ 0.0043

Therefore:

d ≈ 150 million km * 0.0043 = 645,000 km

So, the Sun's approximate physical diameter is 645,000 km

The Boring Company has proposed transporting people between Los Angeles and San Francisco, a distance of 540 km, through an underground tube from which the air has been removed to eliminate air drag. Small pods carrying four passengers would accelerate at 2.5 m/s2 until reaching a speed of 330 m/s. Later they would brake at 1.5 m/s2. A launch of one pod per minute would transport 240 passengers per hour, roughly equivalent to one jet plane per hour.

Answers

Answer:

235 km/s2

Explanation:

cus mall pods carrying four passengers would accelerate at 2.5 m/s2 until reaching a speed of 330 m/s.

Final answer:

This question is about the acceleration and braking calculations for pods proposed by The Boring Company to transport people between Los Angeles and San Francisco.

Explanation:

Physics - High School

The subject of this question is Physics, specifically dealing with the concept of motion and acceleration. The question presents a scenario where The Boring Company proposes transporting people between Los Angeles and San Francisco in underground tubes using small pods. The question asks for the acceleration and braking calculations for the pods.

Acceleration:

Given: Initial velocity (v0) = 0 m/s, Final velocity (v) = 330 m/s, and Acceleration (a) = 2.5 m/s2Use the formula: v = v0 + a x t, where t is the time taken to reach v.Rearrange the formula to solve for t: t = (v - v0) / aSubstitute the given values into the formula to calculate t: t = (330 - 0) / 2.5 = 132 seconds

Braking:

Given: Initial velocity (v0) = 330 m/s, Final velocity (v) = 0 m/s, and Acceleration (a) = -1.5 m/s2Follow the same steps as for acceleration, using the given values to calculate t.

By finding the time taken for acceleration and braking, you can determine the total travel time for one pod.

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to what temperature must 0.588 moles of ammonia gas have to be heated in a 15.0 L container in order for it to exert a pressure of 3.50 kPa

Answers

According to the ideal gas law, 0.588 moles of NH3 gas in a 15.0 L container must be heated to a temperature of 1088.85 K or 815.85°C in order for it to impose a pressure of 3.50 atm.

What is the temperature ?Real gases are simplified into ideal gases to make them easier to understand.It is believed to be made up of point particles that move randomly and independently.Additionally, it is believed that perfect gas molecules by themselves have no volume.Three state variables—absolute pressure (P), volume (V), and absolute temperature—define an ideal gas (T).If the quantity of material, number of moles n, remains constant and R is the molar constant of gases, then the relationship between them forms the ideal gas law, an equation that links the three variables:P×V = n×R×T Finally, to a temperature of 1088.85 K or 815.85°C must 0.588 moles of NH3 gas have to be heated in a 15.0 L container in order for it to exert a pressure of 3.50 atm.

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Do sound waves travel faster through solids or gases? I WILL GIVE Brainliset.

Answers

Answer:

Sound waves travel faster through solids than through gases.

Explanation:

The speed of sound in a solid is determined by its elasticity and density. Solids are generally denser and more elastic than gases, so they can transfer the energy of a sound wave more effectively, leading to a faster speed of sound.

The speed of sound in a gas is influenced by its temperature, pressure, and composition. Gases are generally less dense and less elastic than solids, so they transfer the energy of a sound wave less effectively, leading to a slower speed of sound.

In general, the speed of sound in solids is about four to five times faster than in gases.

Answer: Solids.

Explanation: Because gas have molecules too far a part, the sound has issues traveling through it. On the other hand solids have the molecules very close together so the sound waves travel more quickly through it.

Sound waves travel over 17 times faster through steel than through air.

Basically, the more close together the molecules are, the faster the sound will spread.

A football is inflated in the locker room before the
game. The air warms as it is pumped, so it enters
the ball at a temperature of 30°C. The ball is
inflated to a gauge pressure of 13 psi. The ball is
used for play at 5.0°C.
Once the ball cools, what is the gauge pressure in the ball? Assume that atmospheric pressure is 14.7 psi.

Answers

According to Pythagoras's Theorem, the square of the hypotenuse side in a right-angled triangle is equal to the sum of the squares of the other two sides.

Describe the three Pythagorean theorems?

A, B, and C are the three positive integers, and the Pythagorean triples are written as a2+b2 = c2. These triples are shown as (a,b,c). Here, the right-angled triangle's base, hypotenuse, and perpendicular are denoted by letters a, b, and c, respectively. The most popular and diminutive triplets include (3,4,5).

O is at a right angle in AOB.

∴ By using the Pythagoras Theorem, (AB) 2 = (OB) 2 + (OA) 2.

∴ He has traveled 5 kilometers.

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A fishing boat uses an ultrasound of frequency 4.0×10²Hz to detect a fish blow it. two echo's of the ultrasound are received after 0.09s coming from the shoal of the fish and the other after 0.12s coming from the sea bed .if the sea bed is 64m below the ultrasound transmitter and the receiver, calculate; a. the speed of the ultrasound in water b. the wavelength of ultrasound in water. c. the depth of the fish below the boat.​

Answers

a. the speed of the ultrasound in water is 1480 m/s

b. the wavelength of the ultrasound in water is 37 m

c. the depth of the fish below the boat is 89.76 m

How to calculate?

a.

v = fλ

v = fλ = (4.0 x 10^2 Hz)(λ)

the speed of the ultrasound in water is given as :

v = v_water = 1480 m/s

substitute v_water into the equation above and solve for λ:

λ = v_water / f = (1480 m/s) / (4.0 x 10^2 Hz) = 37 m

Therefore,  the speed of the ultrasound in water is 1480 m/s and the wavelength is 37 m.

c. The depth of the fish below the boat ia found using,

d = v_water * t / 2

The first echo came back after 0.09 s:

d = (1480 m/s) * (0.09 s) / 2 = 64.32 m

This is the depth of the sea bed, which is already known to be 64 m. So the fish must be deeper than the sea bed, and the second echo must have come from the fish. The second echo came back after 0.12 s:

d = (1480 m/s) * (0.12 s) / 2 = 89.76 m

So the depth of the fish below the boat is 89.76 m

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A string is stretched between two clamps held 4.04 m apart. The string is made to oscillate at its third harmonic frequency.

Calculate the distance in m between two adjacent nodes

Answers

The fourth harmonic of B matches the frequency of A 's first harmonic, and the distance is ¼fn.

What is frequency?

The number of waves that pass through a fixed point in a given amount of time is defined as frequency. If a wave takes 1/2 second to pass, the frequency is 2 per second. If it takes one hundredth of an hour, the frequency is one hundred per hour.

The hertz unit, named after the 19th-century German physicist Heinrich Rudolf Hertz, is typically used to measure frequency. The hertz measurement, abbreviated Hz, is the number of waves per second that pass by. An "A" note on a violin string, for example, vibrates at about 440 Hz (440 vibrations per second).

The n th resonant frequency of string A is

fn,A

= vA/2IA× n

= n/2L √τ/μ

while for string B it is

fn,B

= vB/2IB × n

= n/8L √τ/μ

= ¼fn,A

​Thus, we see f1,A = f4,B .

That is, the fourth harmonic of B matches the frequency of A 's first harmonic.

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Somebody help me please!!!

Answers

Answer: Environmental factors are the abiotic factors that interact with and influence the biotic factors. The amount of carbon dioxide, and water clarity affects the sunlight reaching the aquatic organisms.

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