A thermometer is taken from a room where the temperature is 20 degrees C to the outdoors, where the temperature is -12 degrees C. After one minute the thermometer reads 8 degrees C.
(a) What will the reading on the thermometer be after 2 more minutes?
(b) When will the thermometer read -11 degrees C?
_____ minutes after it was taken to the outdoors.

Answers

Answer 1

The reading on the thermometer after 2 more minutes will be -56 degrees Celsius. The thermometer will read -11 degrees Celsius approximately 0.594 minutes (or about 35.64 seconds) after it was taken outdoors.

We need to understand how the thermometer behaves when it's exposed to different temperatures. Let's assume the thermometer follows a linear temperature change. This assumption may not be entirely accurate for all types of thermometers, but it will help us solve the problem.

Let's break down the given information:

Initial temperature (indoors): 20 degrees C

Final temperature (outdoors): -12 degrees C

Temperature reading after 1 minute: 8 degrees C

(a) What will the reading on the thermometer be after 2 more minutes?

If the temperature change is linear, we can find the rate of temperature change per minute by calculating the difference in temperature over the duration.

Rate of temperature change = (Final temperature - Initial temperature) / Time taken

Rate of temperature change = (-12 degrees C - 20 degrees C) / 1 minute

Rate of temperature change = -32 degrees C / 1 minute

Rate of temperature change = -32 degrees C/minute

Now, we can use this rate of temperature change to predict the temperature after 2 more minutes:

Temperature after 1 minute: 8 degrees C

Temperature after 3 minutes: 8 degrees C + (-32 degrees C/minute * 2 minutes)

Temperature after 3 minutes: 8 degrees C - 64 degrees C

Temperature after 3 minutes: -56 degrees C

(b)

We need to determine how long it takes for the temperature reading to reach -11 degrees Celsius. To do this, we'll set up an equation using the rate of temperature change:

Temperature after t minutes: 8 degrees C + (-32 degrees C/minute * t minutes) = -11 degrees C

Solving for t:

8 - 32t = -11

-32t = -19

t = -19 / -32

t = 0.59375

To learn more about thermometer refer here:

https://brainly.com/question/28726426#

#SPJ11


Related Questions

if a cell wall maintains an electric field of 360 n/c and it is 6.5 mm thick, what is the potential difference across it?

Answers

The potential difference across a cell wall can be calculated using the formula:

ΔV = Ed

where ΔV is the potential difference, E is the electric field strength, and d is the distance or thickness of the cell wall.

Plugging in the values given in the problem, we get:

ΔV = Ed = 360 × 10^-9 × 6.5 × 10^-3 = 2.34 × 10^-6 volts

Therefore, the potential difference across the cell wall is 2.34 microvolts (μV).

To know more about potential difference refer here

https://brainly.com/question/11303#

#SPJ11

A ray of light traveling through air at an angle of 46
enters a sheet of crown glass. If n air=1.00 and n water=1.34, what is the angle of refraction in the glass (in degrees)?

Answers

The angle of refraction in the glass is determined as 28.7⁰.

What is the angle of refraction in the glass?

The angle of refraction in the glass is calculated by applying Snell's Law as follows;

n₁sin(θ₁) = n₂sin(θ₂)

where;

n₁ is indices of refraction of the first mediumn₂ are the indices of refraction of the second medium (= 1.5 for glass)θ₁ is the angles of incidenceθ₂ is the angle of refraction

Make the angle of refraction the subject of the formula and solve for it;

sin(θ₂)/n₁sin(θ₁) = n₁/ n₂

sin(θ₂)/sin(46)  = 1/1.5

sin(θ₂) = 0.479

θ₂ = arc sin (0.479)

θ₂ = 28.7⁰

Learn more about angle of refraction here: https://brainly.com/question/15838784

#SPJ1

Find the area of the surface generated by revolving the curve xequals=StartFraction e Superscript y Baseline plus e Superscript negative y Over 2 EndFraction
ey+e−y
2 in the interval 0 less than or equals y less than or equals ln 30≤y≤ln3 about the​ y-axis.

Answers

To find the area of the surface generated by revolving the given curve about the y-axis, we can use the formula for surface area of revolution:

A = 2π ∫[a,b] x(y) √(1 + (dx/dy)²) dy

In this case, the curve is defined by x = (e^y + e^(-y))/2, and we are revolving it about the y-axis within the interval ln(3) ≤ y ≤ ln(30).

Let's calculate the area using the above formula:

A = 2π ∫[ln(3), ln(30)] [(e^y + e^(-y))/2] √(1 + ((dx/dy)²) dy

First, let's calculate dx/dy:

dx/dy = (d/dy) [(e^y + e^(-y))/2]

      = (e^y - e^(-y))/2

Now we can substitute this into the formula:

A = 2π ∫[ln(3), ln(30)] [(e^y + e^(-y))/2] √(1 + ((e^y - e^(-y))/2)²) dy

Simplifying the expression within the square root:

(1 + ((e^y - e^(-y))/2)²)

= (1 + (e^2y - 2 + e^(-2y))/4)

= (5 + e^2y + e^(-2y))/4

The integral becomes:

A = 2π ∫[ln(3), ln(30)] [(e^y + e^(-y))/2] √((5 + e^2y + e^(-2y))/4) dy

To solve this integral, we can make the substitution u = e^y:

A = 2π ∫[e^(ln(3)), e^(ln(30))] [(u + 1/u)/2] √((5 + u² + 1/u²)/4) du

 = π ∫[3, 30] [(u + 1/u)/2] √((5 + u² + 1/u²)/4) du

Now we can simplify further and integrate numerically to find the area.

To know more about area refer here

https://brainly.com/question/1631786#

#SPJ11

A spur gearset has 17 teeth on the pinion and 51 teeth on the gear. The pressure angle is 20° and the overload factor ko =1. The diametral pitch is 6 teeth/in and the face width is 2 in. The pinion speed is 1120 rev/min and its cycle life is to be 10" revolutions at a reliability R=0.99. The quality number is 5. The material is a through-hardened steel, grade 1, with Brinell hardnesses of 232 core and case of both gears. For a bending stress design factor of 2, rate the gearset for these conditions using the AGMA method

Answers

Given parameters:

- Pinion teeth: 17

- Gear teeth: 51

- Pressure angle: 20°

- Overload factor: ko = 1

- Diametral pitch: 6 teeth/inch

- Face width: 2 inches

- Pinion speed: 1120 rev/min

- Cycle life: 10 million revolutions

- Reliability: R = 0.99

- Quality number: 5

- Material: Through-hardened steel, grade 1

- Brinell hardness: 232 (core and case of both gears)

- Bending stress design factor: 2

To rate the gearset using the AGMA (American Gear Manufacturers Association) method, we need to calculate the following parameters:

1. Bending strength geometry factor, J:

  J = (0.67 - 0.0067 × (17 + 51 - 20)) × (1 / cos^3(20°))

  J ≈ 0.912

2. Bending stress capacity of the material, SN:

  SN = 1620 × (232/183)^2.91

  SN ≈ 394 MPa

3. Bending stress, Sb:

  Sb = (K × Pd × J) / (Y × SF)

  K = 1.51 + (1.05 - 1) × (1 - 0.99) = 1.05 (reliability factor)

  Pd = 6 teeth/inch (diametral pitch)

  Y = 0.979 (Lewis form factor for a 20° pressure angle)

  SF = 2 (design factor)

  Sb = (1.05 × 6 × 0.912) / (0.979 × 2)

  Sb ≈ 3.45 MPa

4. Bending stress cycle factor, ZN:

  ZN = (60 × Pinion Speed) / (Face Width × Life in millions of revolutions)

  ZN = (60 × 1120) / (2 × 10)

  ZN = 336

5. Allowable bending stress, SNd:

  SNd = SN / (ko × ZN)

  SNd = 394 / (1 × 336)

  SNd ≈ 1.17 MPa

Finally, to rate the gearset, compare the calculated bending stress, Sb (3.45 MPa), with the allowable bending stress, SNd (1.17 MPa). Since Sb > SNd, the gearset does not meet the design requirements and would be considered inadequate for the given conditions.

To know more about gearset refer here

https://brainly.com/question/29841683#

#SPJ11

You raise a bucket of water from the bottom of a deep well. Part A If your power output is 108W , and the mass of the bucket and the water in it is 6.00kg , with what speed can you raise the bucket? Ignore the weight of the rope.

Answers

The speed at which the bucket can be raised from the bottom of the deep well is approximately 5.20 m/s, given a power output of 108 W and a mass of 6.00 kg for the bucket and water. This was calculated using the work-energy principle and assuming negligible weight for the rope.

How to calculate speed of well bucket?

We can use the work-energy principle to solve this problem. The work done by the person lifting the bucket is equal to the change in the gravitational potential energy of the bucket-water system:

W = ΔPE

where W is the work done, ΔPE is the change in potential energy, which is equal to mgh, where m is the mass of the bucket-water system, g is the acceleration due to gravity, and h is the height the bucket is lifted.

Since the power output of the person is given, we can also write:

W = Pt

where P is the power output and t is the time taken to lift the bucket.

Equating the two expressions for W, we get:

mgh = Pt

Solving for v, the velocity at which the bucket is lifted, we get:

[tex]v = (2Pt / m)^(1/2)[/tex]

Substituting the given values, we get:

[tex]v = (2 x 108 x 1 / 6)^(1/2) ≈ 5.20 m/s[/tex]

Therefore, the speed at which the bucket can be raised is approximately 5.20 m/s.

Learn more about: Bucket

brainly.com/question/15977012

#SPJ11

please find the result of the measurement signal (vmeas) of 4v and 5.2v. (hint: please recall the example on parallel analog to digital converter)

Answers

Using an 8-bit parallel analog-to-digital converter (ADC) with a voltage range of 0-10V, the measurement signal of 4V would be represented as a digital value of 10000000, and the measurement signal of 5.2V would be represented as a digital value of 11001100.

An analog-to-digital converter (ADC) is used to convert analog signals into digital values. In this case, we are using a parallel ADC with an 8-bit resolution, meaning it can represent 2^8 = 256 different voltage levels.

The voltage range of the ADC is specified as 0-10V. To convert the measurement signal of 4V into a digital value, we divide the voltage range into 256 levels. Each level corresponds to a voltage increment of 10V/256 ≈ 0.039V. Therefore, 4V is approximately equivalent to 4V/0.039V = 102.56, which is rounded to 103 in the digital representation. In binary, 103 is represented as 01100111.

Similarly, for the measurement signal of 5.2V, we calculate the digital value by dividing 5.2V by 0.039V, resulting in approximately 133.33, which is rounded to 133. In binary, 133 is represented as 10000101.

Therefore, the measurement signal of 4V would be represented as a digital value of 10000111, and the measurement signal of 5.2V would be represented as a digital value of 10000101 using the given 8-bit parallel ADC.

To learn more about measurement Click Here: brainly.com/question/28913275

#SPJ11

At some point in space a plane electromagnetic wave has the electric field = (225j+204k) N/C. Caclulate the magnitude of the magnetic field a that point. ANSWER: 138.724T Not Enough Information to Calculate Magnetic Field 1.43 UT 1.0123734 PT 168.75 UT

Answers

The magnitude of the magnetic field at the given point is 138.724 T.

To calculate the magnitude of the magnetic field, we can use the relationship between the electric field and magnetic field in an electromagnetic wave, which is given by the equation: E = cB, where E is the electric field, c is the speed of light, and B is the magnetic field.

In the given problem, the electric field is given as (225j + 204k) N/C. Since the electric field and magnetic field are perpendicular to each other in an electromagnetic wave, we can ignore the i-component of the electric field.

Using the equation E = cB, we can solve for the magnitude of the magnetic field B by dividing the magnitude of the electric field by the speed of light (c). Plugging in the values, we get B = |E|/c = sqrt((225^2 + 204^2)/c^2) = 138.724 T, where T represents tesla, the unit of magnetic field strength. Therefore, the magnitude of the magnetic field at the given point is 138.724 T.

To learn more about magnetic field, click here: brainly.com/question/14848188

#SPJ11

the nasa challenger and columbia case studies best represent examples of

Answers

The NASA Challenger and Columbia case studies best represent examples of organizational failure and the consequences of disregarding safety protocols. Both tragedies resulted in the loss of life and immense financial costs for NASA.

The Challenger disaster was caused by a faulty O-ring, which resulted in the shuttle exploding during takeoff. The Columbia tragedy occurred when a piece of foam insulation broke off and damaged the shuttle's heat shield during launch, causing it to break apart upon re-entry. These incidents serve as a reminder of the importance of proper safety measures and the consequences that can result from overlooking them.

NASA (National Aeronautics and Space Administration) is an independent agency of the United States federal government responsible for the country's civilian space program and for aeronautics and aerospace research. NASA was established on July 29, 1958, in response to the Soviet Union's launch of the first artificial satellite, Sputnik 1, and is headquartered in Washington, D.C.

Visit here to learn more about NASA brainly.com/question/29890206

#SPJ11

a(n) 1 mm radius superconductor carries a 1562.8 a of current. what is the magnetic field at the surface? answer in units of t.

Answers

To calculate the magnetic field at the surface of a superconductor carrying a certain current, we can use Ampere's law. Ampere's law states that the magnetic field around a closed loop is directly proportional to the current passing through the loop.

Given:

Radius of the superconductor: r = 1 mm = 0.001 m

Current passing through the superconductor: I = 1562.8 A

To calculate the magnetic field at the surface of the superconductor, we can use the formula:

B = (μ0 * I) / (2π * r)

Where:

B is the magnetic field

μ0 is the permeability of free space (approximately 4π x 10^(-7) T·m/A)

π is the mathematical constant pi

Substituting the given values into the formula:

B = (4π x 10^(-7) T·m/A * 1562.8 A) / (2π * 0.001 m)

Simplifying the equation:

B = 2 x 10^(-4) T

Therefore, the magnetic field at the surface of the superconductor is approximately 2 x 10^(-4) T (Tesla).

To know more about superconductor refer here

https://brainly.com/question/1476674#

#SPJ11

the correct arrangement of astronomical bodies from oldest to youngest is: question 2 options: galaxy, solar system, planet. planet, galaxy, solar system. planet, solar system, galaxy. solar system, galaxy, planet. solar system, planet, galaxy.

Answers

The correct sequence is: first the galaxy formed, then the solar system within the galaxy, and finally, the planets formed within the solar system.

What is the correct arrangement of astronomical bodies from oldest to youngest?

The correct arrangement of astronomical bodies from oldest to youngest is:

Galaxy, solar system, planet.

This is because galaxies are the oldest and largest structures in the universe, and solar systems are formed within galaxies. Planets are formed within solar systems after the formation of their parent star. Therefore, the correct sequence is: first the galaxy formed, then the solar system within the galaxy, and finally, the planets formed within the solar system.

Learn more about astronomical bodies

brainly.com/question/2059529

#SPJ11

calculate the acceleration due to gravity on the surface of mars. (mass of mars = 6.418 x 1023 kg, radius of mars = 3.38 x 106 m)

Answers

If mass of mars = 6.418 x 1023 kg and radius of mars = 3.38 x 106 m, then the acceleration due to gravity on the surface of Mars is approximately 3.71 m/s².

To calculate the acceleration due to gravity on the surface of Mars, you can use the following formula:

g = (G * M) / R²

where g is the acceleration due to gravity, G is the gravitational constant (6.674 x 10^-11 N m²/kg²), M is the mass of Mars (6.418 x 10^23 kg), and R is the radius of Mars (3.38 x 10^6 m).

Plugging in the values, we get:

g = (6.674 x 10^-11 N m²/kg² * 6.418 x 10^23 kg) / (3.38 x 10^6 m)²

g ≈ 3.71 m/s²

The acceleration due to gravity on the surface of Mars is approximately 3.71 m/s².

More on acceleration: https://brainly.com/question/9167280

#SPJ11

suppose you weigh 157 pounds in paris. how much weight would you lose in traveling from paris, where g = 9.8095 m/s2, to cayenne, where g = 9.7808 m/s2?

Answers

To calculate the weight lost when traveling from Paris to Cayenne, we need to determine the difference in gravitational acceleration (g) between the two locations and apply it to the weight (mass) of the person.

Weight is the product of mass (m) and gravitational acceleration (g). In Paris, the gravitational acceleration is given as 9.8095 m/s^2, while in Cayenne, it is 9.7808 m/s^2. The weight lost during the journey can be calculated by finding the difference in gravitational acceleration and applying it to the initial weight.

First, convert the weight from pounds to kilograms. Then, use the formula:

Weight lost = (Weight in Paris) * (Change in gravitational acceleration)

To calculate the change in gravitational acceleration, subtract the gravitational acceleration in Cayenne from the gravitational acceleration in Paris. Multiply the weight in Paris by the change in gravitational acceleration to obtain the weight lost.

Therefore, by considering the difference in gravitational acceleration and applying it to the initial weight, we can determine the weight lost when traveling from Paris to Cayenne.

To learn more about weight   Click Here:brainly.com/question/27668697

#SPJ11

if your face is 25.0 cm away from the ball's front surface, where is your image? follow the sign conventions

Answers

Your image is located 25.0 cm behind the ball's front surface, following the sign conventions.

When dealing with sign conventions in optics, positive distances are measured in the direction of the light propagation, and negative distances are measured opposite to it. In this case, your face is 25.0 cm away from the ball's front surface, which is considered a positive distance.

Since the ball acts like a mirror, your image will appear at the same distance but in the opposite direction, making it a negative distance. Therefore, your image is located 25.0 cm behind the ball's front surface, following the sign conventions. This ensures that your image and face are equidistant from the ball's front surface, maintaining a symmetrical relationship in the optical setup.

Learn more about mirror here:

https://brainly.com/question/1160148

#SPJ11

Jupiter is the nearest Jovian planet in the solar system. It is 483 million miles from the Sun. What is its distance from the Sun in astronomical units? (hint: 1 ml 1.05 km 1 Aukm) 1 AU O 1.52 AU 05.18 AU 9.54 AU

Answers

Jupiter is the nearest Jovian planet in the solar system. It is 483 million miles from the Sun. The correct answer is Option A, 1 AU which is the distance from the Sun.

Jupiter is the nearest Jovian planet in the solar system. It is 483 million miles from the Sun. The question requires us to find its distance from the Sun in astronomical units (AU). The conversion factors to be used are:1 mile = 1.05 km1 AU = 149.6 million km1 mile = 1.05/149.6 AU, therefore, 1 mile ≈ 0.000007 AUApproximating 483 million miles to the nearest whole number is 483,000,000 miles1 mile ≈ 0.000007 AUTherefore, 483,000,000 miles ≈ 0.000007 × 483,000,000 AU = 3.381 AUTherefore, Jupiter's distance from the Sun in astronomical units is 3.381 AU.Option D, 9.54 AU, is not the answer to the question as it is not equal to 3.381 AU.

Therefore, the correct answer is Option A, 1 AU.

Learn more about Jupiter  at https://brainly.com/question/1413868

#SPJ11

a machine gun is fired at a steel plate. in which case is there a greater impulse on the plate from the bullet impact (i) if the bullets bounce off; or (ii) if they are squashed and stick to the plate?

Answers

The case with a greater impulse on the plate is when the bullets bounce off rather than when they are squashed and stick to the plate.

How a machine gun is fired at a steel plate?

When a machine gun is fired at a steel plate, the impulse on the plate is determined by the change in momentum of the bullets upon impact.

(i) If the bullets bounce off the plate, the impulse on the plate is greater. When the bullets bounce, they experience a larger change in momentum as they reverse their direction. The plate experiences a greater force over a shorter period of time, resulting in a larger impulse.

(ii) If the bullets are squashed and stick to the plate, the impulse on the plate is smaller. In this case, the change in momentum of the bullets is reduced because they come to a stop and do not rebound. The plate experiences a smaller force over a longer period of time, resulting in a smaller impulse.

Therefore, the case with a greater impulse on the plate is when the bullets bounce off rather than when they are squashed and stick to the plate.

Learn more about momentum

brainly.com/question/30677308

#SPJ11

An electron is confined in a harmonic oscillator potential well. A photon is emitted when the electron undergoes a 3→1 quantum jump. What is the wavelength of the emission if the net force on the electron behaves as though it has a spring constant of 3.6 N/m? (m el = 9.11 × 10-31 kg, c = 3.00 × 108 m/s, 1 eV = 1.60 × 10-19 J, ħ = 1.055 × 10-34 J · s, h = 6.626 × 10-34 J · s)
Log in to add comment
Advertisement
Expert-Verified Answer
1 person found it helpful
author link
Histrionicus
Ace
7.7K answers
67.4M people helped
The wavelength of the emission if the net force on the electron behaves as though it has a spring constant of 3.6 N/m -
Formula:
The energy of the photon emitted in a harmonic oscillator:
Given:
m: initial state = 3
n: final state = 1
k = 3.6N/m
Solution:
By replacing the values of m for the electron, m, n
Get more Answers for FREE
Snap questions with the app, get community help, find expert textbook explanations, and see instant step-by-step math solutions.
Why am I seeing this?
By creating an account, you accept the Brainly Terms of Service⬈(opens in a new tab) & Privacy Policy⬈(opens in a new tab).
Already have an account? Log in
by watching video
0.0
(0 votes)
Answer
author link
mavila18
Ambitious
1K answers
3.9M people helped
0.0
(0 votes)
Still have questions?
You might be interested in
shelbmcc23171
asked 07/19/2019
An electron is confined in a harmonic oscillator potential well. What is the longest wavelength of light that the electron can absorb if the net force on the electron behaves as though it has a spring constant of 74 N/m? (m el = 9.11 × 10-31 kg, c = 3.00 × 108 m/s, 1 eV = 1.60 × 10-19 J, ℏ = 1.055 × 10-34 J · s, h = 6.626 × 10-34 J · s)
See answers (1)
4/5
2
ggutierrez1231139 avatar
ggutierrez1231139
asked 02/19/2020
What is the frequency for a beam of electrons orbiting in a field of 4.62 x 10^-3 T? Let the mass of an electrons m = 9.31 x 10^-31 kg, and the charge on an electron q = -1.60 x 10^-19 C.
See answers (1)
jackieec7926
asked 04/23/2019
Through what potential difference ΔV must electrons be accelerated (from rest) so that they will have the same wavelength as an x-ray of wavelength 0.150 nm ? Use 6.63×10−34 J⋅s for Planck's constant, 9.11×10−31 kg for the mass of an electron, and 1.60×10−19 C for the charge on an electron. Express your answer using three significant figures.
See answers (1)
mholt2212
asked 08/22/2019
The electrons in a beam are moving at 18 m/s. (melectron = 9.11 × 10^-31 kg, h = 6.626 × 10^-34 J ∙ s) (a) What is its momentum? (b) What is its de Broglie wavelength these electrons? (c) If the electron beam falls normally on a diffraction grating, what would have to be the spacing between slits in the grating to give a first-order maximum at an angle of 30° with the normal to the grating?
See answers (1)
New questions in Physics
Particles q₁, 92, and q3 are in a straight line. Particles q₁ = -5.00 10-6 C,q2 = +2.50 10-6 C, and 93 -2.50 10-6 C. Particles q₁ and q2 are
The wave function for a particle in a box of length 3.3 a.u. (arbitrary units) is shown below. ()=sin(()\(3.3)) In the wavefunction, is an integer
WHAT IS THE PURPOSE OF A SWITCH? a b C D Makes the electricity current flow safer Conserve energy Makes it easier to use electricity All of
WHAT IS THE PURPOSE OF A SWITCH? a b C D Makes the electricity current flow safer Conserve energy Makes it easier to use electricity All of
The ground state wavefunction of the hydrogen electron in spherical coordinates depends on the radius and the Bohr radius _0. Determine the expression
Previous
Next

Answers

To find the wavelength of the emission when an electron undergoes a 3→1 quantum jump in a harmonic oscillator potential well, we can use the formula for the energy of the photon emitted in a harmonic oscillator.

In a harmonic oscillator potential well, the energy levels are quantized, and a photon is emitted when an electron transitions from a higher energy state to a lower energy state. The formula for the energy of the photon emitted in a harmonic oscillator is given by:

E = (n2 - n1) * ħ * ω

where E is the energy of the photon, n2 and n1 are the initial and final quantum numbers respectively, ħ is the reduced Planck's constant, and ω is the angular frequency associated with the harmonic oscillator.

In this case, the quantum jump is from state 3 (n2 = 3) to state 1 (n1 = 1). However, we do not have the information about the energy associated with this quantum jump, which is required to calculate the wavelength of the emission.

Learn more about emission here : brainly.com/question/14457310

#SPJ11

if the "shot heard around the world" could actually be heard around the world, how long would it take?

Answers

If the "shot heard around the world" could actually be heard around the world, it would take approximately 0.069 seconds.

Define the Sound travels through the air?

Sound travels through the air as a mechanical wave, propagating at a certain speed. The speed of sound depends on the medium through which it travels, such as air, water, or solids. In the given scenario, we will consider the speed of sound in air.

The speed of sound in air is approximately 343 meters per second (m/s) at room temperature. Since we are considering a hypothetical situation where the sound can be heard simultaneously around the world, we can assume a distance of roughly 40,000 kilometers (or 40 million meters) around the Earth's circumference.

To calculate the time it takes for the sound to travel this distance, we divide the distance by the speed of sound: t = d / v. In this case, t = 40,000,000 m / 343 m/s ≈ 116,600 seconds ≈ 0.069 seconds.

Therefore, if the "shot heard around the world" could be heard instantaneously across the globe, it would take approximately 0.069 seconds for the sound wave to travel the Earth's circumference.

To know more about Sound travels, refer here:

https://brainly.com/question/30416108#

#SPJ4

calculate the average binding energy per nucleon for chromium, (atomic mass = 51.940509 u).

Answers

The average binding energy per nucleon of the Chromium atom is

8.78 MeV.

No. of nucleons in Chromium atom, A = 52

No. of protons in Chromium, Z = 24

No. of neutrons in Chromium atom, N = A - Z = 52 - 24 = 28

The minimum amount of energy needed to separate an atom's nucleus into its component neutrons and protons is known as the binding energy per nucleon.

The expression for the mass defect is given by,

Δm = Z × m(p) + N × m(n) - M

Δm = 24 × 1.007825 + 28 × 1.008665 - 51

Δm = 52.4304 - 51.9405

Δm = 0.4899 u

So, the energy,

E = Δmc²

E = 0.4899 x 931.5

E = 456.35 MeV

The expression for binding energy per nucleon is given by,

BE = E/A

BE = 456.35/52

BE = 8.78 MeV

To learn more about binding energy per nucleon, click:

https://brainly.com/question/32066931

#SPJ1

suppose an apple (mass 200 g ) sits at the edge of a cliff with height h . the apple then tips over the edge and hits the ground with a speed of 26 m/s . how tall is the cliff?

Answers

The cliff is approximately 34.5 meters tall. When apple (mass 200 g ) sits at the edge of a cliff with height h . the apple then tips over the edge and hits the ground with a acceleration of 26 m/s .


First, let's calculate the potential energy of the apple when it is at the edge of the cliff. The formula for potential energy is mgh, where m is the mass of the apple, g is the acceleration due to gravity (9.8 m/s^2), and h is the height of the cliff.

So, potential energy = (0.2 kg) x (9.8 m/s^2) x h = 1.96h Joules.

Next, let's calculate the kinetic energy of the apple just before it hits the ground. The formula for kinetic energy is (1/2)mv^2, where m is the mass of the apple and v is the velocity (speed) of the apple just before it hits the ground.

So, kinetic energy = (1/2)(0.2 kg)(26 m/s)^2 = 135.2 Joules.

According to the principle of conservation of energy, the total energy of the system (potential energy + kinetic energy) must remain constant. Therefore, we can set the potential energy equal to the kinetic energy:

1.96h = 135.2

Solving for h, we get:

h = 135.2 / 1.96 = 68.98 meters

Therefore, the height of the cliff is approximately 68.98 meters.

To find the height of the cliff, we can use the following equation:

v^2 = u^2 + 2as

where:
v = final velocity (26 m/s)
u = initial velocity (0 m/s, since the apple starts at rest)
a = acceleration due to gravity (-9.81 m/s^2, negative because it's acting downward)
s = height of the cliff (which we're trying to find)

Substituting the values, we get:

(26 m/s)^2 = (0 m/s)^2 + 2(-9.81 m/s^2)s

Now, we can solve for 's':

676 m^2/s^2 = -19.62 m/s^2 * s
s ≈ 34.5 meters

To know more about acceleration visit:-

https://brainly.com/question/2303856

#SPJ11

O 4.90m/s 2.21m/s 3.13m/s 9.80m/s Previous 4 1 point How high must a 19.0kg object be to have 915.J of gravitational potential energy? 170.m 729m 4.91m O ...

Answers

To determine the height at which a 19.0 kg object must be to have 915 J of gravitational potential energy, we can use the formula for gravitational potential energy:

Gravitational potential energy (PE) = mass (m) × acceleration due to gravity (g) × height (h)

Given:

Mass (m) = 19.0 kg

Gravitational potential energy (PE) = 915 J

Acceleration due to gravity (g) = 9.80 m/s^2

h = PE / (m * g)

h = 915 J / (19.0 kg * 9.80 m/s^2)

= 915 J / 186.2 N

4.91 m

Therefore, the object must be at a height of approximately 4.91 meters to have 915 J of gravitational potential energy.

Note: The provided numbers at the beginning of the question (4.90 m/s, 2.21 m/s, 3.13 m/s, 9.80 m/s) and the multiple-choice options (170 m, 729 m, 4.91 m) are not relevant to solving the problem.

Learn more about gravitation here : brainly.com/question/3009841

#SPJ11

PLEASE HELP ASPA !What is the weight of a 82-kg linebacker?

Answers

The weight of the 82-kg linebacker on Earth is approximately 803.6 Newtons.

The weight of a 82-kg linebacker on Earth can be calculated using the formula W = mg, where W represents weight, m represents mass, and g represents the acceleration due to gravity.

On Earth, the value of g is approximately 9.8 m/s². Therefore, the weight of the 82-kg linebacker would be:

W = (82 kg) * (9.8 m/s²)

W = 803.6 N

Thus, the weight of the 82-kg linebacker on Earth is approximately 803.6 Newtons.

Learn more about gravity

https://brainly.com/question/31321801

#SPJ4

Full Question ;

What is the weight of a 82-kg linebacker on Earth?

what is the maximum emf e that the battery can have without burning up any of the resistors

Answers

The maximum emf (E_max) that the battery can have without burning up any of the resistors is equal to V_max.

To determine the maximum electromotive force (emf) that a battery can have without burning up any of the resistors in a circuit, we need to consider the power dissipation in the resistors and the maximum power that they can handle without overheating or damaging.

The power dissipated in a resistor can be calculated using the formula:

P = I^2R

Where P is the power, I is the current flowing through the resistor, and R is the resistance.

The maximum power that a resistor can handle without burning up is often specified by its power rating, denoted in watts (W). Let's assume that the resistors in the circuit have a maximum power rating of P_max.

Now, let's consider the circuit with the battery. The total resistance in the circuit can be calculated by summing up the resistances of the individual resistors, denoted as R_total.

When the battery is connected to the circuit, the current flowing through the resistors can be determined using Ohm's Law:

I = V / R_total

Where V is the voltage across the resistors, which is equal to the emf of the battery, denoted as E.

Substituting this into the power equation, we can express the power dissipated in the resistors in terms of the emf:

P = (V / R_total)^2 * R

Since we want to find the maximum emf that the battery can have without burning up any of the resistors, we need to find the maximum power dissipation and set it equal to the maximum power rating of the resistors:

P_max = (V_max / R_total)^2 * R

Solving for V_max, we have:

V_max = √(P_max * R_total / R)

Therefore, the maximum emf (E_max) that the battery can have without burning up any of the resistors is equal to V_max.

It's important to note that this calculation assumes that the resistors in the circuit have a power rating that corresponds to the maximum power they can handle without damage. If the resistors are not rated for a specific power or the power rating is unknown, it is essential to consult the specifications provided by the manufacturer or use alternative methods to determine the maximum allowable emf. Additionally, factors such as temperature and other environmental conditions should also be considered to ensure the safe operation of the circuit.

Learn more about emf here

https://brainly.com/question/13744192

#SPJ11

you have a 1.50-m-long copper wire. you want to make an n-turn current loop that generates a 0.500 mtmt magnetic field at the center when the current is 0.500 aa . you must use the entire wire.

Answers

Needed approximately 97 turns in the copper wire to create a current loop that generates a 0.500 mT magnetic field at the center when the current is 0.500 A.

To create a current loop using the entire length of a copper wire, we need to determine the number of turns required (n).

The formula to calculate the magnetic field at the center of a current loop is given by:

B = (μ₀ * n * I) / (2 * R)

where B is the magnetic field, μ₀ is the permeability of free space (4π × [tex]10^{(-7)[/tex] T·m/A), n is the number of turns, I is the current, and R is the radius of the loop.

Given:

Length of the copper wire (L) = 1.50 m

Magnetic field (B) = 0.500 mT = 0.500 × [tex]10^{(-3)[/tex] T

Current (I) = 0.500 A

The radius of the loop can be calculated using the formula:

R = L / (2π * n)

Substituting the values into the formula:

0.500 × [tex]10^{(-3)[/tex] T = (4π × [tex]10^{(-7)[/tex] T·m/A) * n * 0.500 A / (2 * R)

Simplifying:

0.500 × [tex]10^{(-3)[/tex] T = (2π × [tex]10^{(-7)[/tex]T·m/A) * n / R

Rearranging the equation:

n = (0.500 × [tex]10^{(-3)[/tex] T) * R / (2π × [tex]10^{(-7)[/tex] T·m/A)

Substituting R = L / (2π * n) into the equation:

n = (0.500 × [tex]10^{(-3)[/tex] T) * L / (2π × [tex]10^{(-7)[/tex] T·m/A) / (2π * n)

Simplifying further:

n² = (0.500 × [tex]10^{(-3)[/tex] T) * L / (2π × [tex]10^{(-7)[/tex] T·m/A)

Finally, solving for n:

[tex]n = \sqrt{[(0.500 * 10^{(-3)} T) * L / (2\pi * 10^{(-7)} Tm/A)][/tex]

Substituting the given values:

n = [tex]\sqrt{[(0.500 * 10^{(-3)} T) * (1.50 m) / (2\pi × 10^{(-7)} Tm/A)][/tex]

Calculating the result:

n ≈ 96.83

To know more about current loop refer here

https://brainly.com/question/30268174#

#SPJ11

At what rate is electrical energy being converted to other forms in the 8.0-V battery? Express your answer using two significant figures.

Answers

The result will be the rate at which electrical energy is being converted, expressed in watts (W).

To calculate the rate at which electrical energy is being converted to other forms in the 8.0-V battery, we need to know the current (I) flowing through the battery. Unfortunately, the current value is not provided in your question.

Once you have the current value, you can calculate the power (P) using the formula:
P = V × I


Where V is the voltage (8.0 V) and I is the current. The result will be the rate at which electrical energy is being converted, expressed in watts (W). Make sure to use two significant figures in your final answer.

Learn more about electrical energy click here:

https://brainly.com/question/776932

#SPJ11

which of the following decibel measurements can cause hearing damage
a. 95
b. 45
c. 55

Answers

A. 95 decibel measurement can cause hearing damage. Sound levels above 85 decibels can cause hearing loss, and the risk of hearing damage increases as the sound gets louder.

The decibel (dB) is a unit of measurement used to express the relative intensity of a sound or signal. It is a logarithmic scale that measures the ratio of the sound or signal to a reference level. In general, sounds with a higher decibel level are perceived as louder.

The maximum safe exposure time to a sound level depends on the intensity of the sound and the duration of the exposure. The Occupational Safety and Health Administration (OSHA) in the United States has set a permissible exposure limit (PEL) of 90 dBA for an 8-hour workday. Prolonged exposure to sound levels above this limit can cause hearing damage over time.

A sound level of 95 dB is considered to be safe for a maximum exposure time of 4 hours per day, while a sound level of 85 dB is safe for up to 8 hours per day. However, a sound level of 110 dB can cause hearing damage after only 1 minute of exposure, and a sound level of 140 dB can cause immediate hearing damage and even physical pain.

It is important to protect your hearing from loud sounds by using earplugs or earmuffs, limiting your exposure to loud sounds, and maintaining a safe distance from sources of loud noise.

To know more about decibel measurements refer here

https://brainly.com/question/30870100#

#SPJ11

an electromagnetic wave propagates along the y direction as shown in the figure. if the electric field at the origin is along the z direction, what is the direction of the magnetic field?

Answers

There is no figure provided in the question. However, based on the given information, the direction of the magnetic field of an electromagnetic wave can be determined using Maxwell's equations and the right-hand rule.

If the electric field is along the z direction and the wave propagates along the y direction, the magnetic field must be either along the x or y direction.

The direction of the magnetic field can be determined using the right-hand rule, which states that if the fingers of the right-hand curl in the direction of the electric field, then the thumb points in the direction of the magnetic field.

The magnetic field must be in the x direction if the wave is propagating towards the positive z direction, or in the y direction if the wave is propagating towards the negative z direction.

Read more about Maxwell's equations.

https://brainly.com/question/31518879

#SPJ11

A gasoline engine has a power output of 190 kW (about 255 hp). Its thermal efficiency is33.0%.
(a) How much heat must be supplied to the engine persecond?
J
(b) How much heat is discarded by the engine per second?
J

Answers

The formula for thermal efficiency:

Thermal efficiency = (Useful work output) / (Heat input)

Given that the power output of the engine is 190 kW and the thermal efficiency is 33.0%, we can proceed with the calculations.

First, we need to calculate the useful work output of the engine. Since power is the rate at which work is done, we can convert the power output from kilowatts to joules per second (Watts).

Power output = 190 kW = 190,000 W

The useful work output can be calculated using the equation:

Useful work output = Power output * Time

Since we are interested in the heat supplied per second, the time can be taken as 1 second.

Useful work output = 190,000 W * 1 s = 190,000 J

Next, we can use the formula for thermal efficiency to find the heat input:

Thermal efficiency = (Useful work output) / (Heat input)

Rearranging the equation, we can solve for the heat input:

Heat input = (Useful work output) / (Thermal efficiency)

Heat input = 190,000 J / 0.33

Heat input ≈ 575,757 J

Therefore, the heat that must be supplied to the engine per second is approximately 575,757 J.

(b) How much heat is discarded by the engine per second?

Since the thermal efficiency is given as the ratio of useful work output to heat input, the heat discarded by the engine can be calculated as the difference between the heat input and the useful work output.

Heat discarded = Heat input - Useful work output

Heat discarded = 575,757 J - 190,000 J

Heat discarded ≈ 385,757 J

Therefore, the heat discarded by the engine per second is approximately 385,757 J.

To know more about  thermal efficiency:

https://brainly.com/question/12950772

#SPJ1

If reaction with ΔG < 0, which has to be true?
The reaction must be exothermic
The reaction must be endothermic
Keq > 1
None of the above

Answers

If the reaction has a negative ΔG (Gibbs free energy), it indicates that the reaction is spontaneous and thermodynamically favorable. The correct statement is "Keq > 1" when ΔG < 0.

In this case, the following statement must be true:

Keq > 1.

Keq represents the equilibrium constant of the reaction, which is a ratio of the concentrations (or pressures) of the products to the concentrations (or pressures) of the reactants, each raised to the power of their stoichiometric coefficients. When Keq is greater than 1, it implies that the concentration of products is higher than the concentration of reactants at equilibrium, indicating that the reaction favors the formation of products.

The terms "exothermic" and "endothermic" refer to the heat transfer of a reaction, not the Gibbs free energy change. The sign of ΔG does not provide direct information about whether the reaction is exothermic or endothermic. The exothermic or endothermic nature of a reaction is determined by the overall energy change (enthalpy change, ΔH) of the reaction.

Learn more about Keq at: brainly.com/question/30884560

#SPJ11

Which type of front typically produces the fastest rise of air? A) cold B) warm C) stationary D) occluded

Answers

The type of front that typically produces the fastest rise of air is option A, the cold front.

When a cold front moves into an area, it displaces warmer air and causes it to rapidly rise, leading to the development of thunderstorms and other forms of severe weather.

A cold front typically produces the fastest rise of air compared to other types of fronts. During a cold front, a cold air mass advances and replaces a warm air mass. The cold air is denser and pushes underneath the warm air, causing it to rapidly rise. This abrupt lifting motion of the warm air can result in the formation of towering cumulonimbus clouds and potentially severe weather conditions, including thunderstorms and heavy rainfall.

The steep slope of a cold front contributes to its ability to generate a faster rise of air compared to warm fronts, stationary fronts, or occluded fronts.

Learn more about cumulonimbus clouds : https://brainly.com/question/27960450

#SPJ11

At what pressure ratio does a Brayton cycle using a monatomic gas have an efficiency of 52%?.

Answers

To determine the pressure ratio at which a Brayton cycle using a monatomic gas has an efficiency of 52%, we need to use the formula for the thermal efficiency of a Brayton cycle: η = 1 - (1/r)^((γ-1)/γ).

where η is the efficiency, r is the pressure ratio, and γ is the ratio of specific heat for a monatomic gas (which is 5/3).

Setting η = 0.52 and γ = 5/3, we can solve for r:

0.52 = 1 - (1/r)^((5/3-1)/(5/3)).

0.48 = (1/r)^(2/5).

r = (1/0.48)^(5/2).

r = 2.85.

Therefore, the pressure ratio at which a Brayton cycle using a monatomic gas has an efficiency of 52% is 2.85.

Read more about Brayton cycle.

https://brainly.com/question/28232829

#SPJ11

Other Questions
A 18-year-old man presents with a depressed mental status. Which of the following could be empirically given?A. Activated charcoalB. Dextrose and thiamineC. FlumazenilD. Syrup of ipecac a chemical compound added to water to prevent tooth decay Let f(x) = x4 4.3 + 4x2 + 1 (1) Find the critical numbers and intervals where f is increasing and decreasing (2) Locate any local extrema of f. (3) Find the intervals where f is concave up and concave down. Lo- cate any inflection point, if exists. (4) Sketch the curve of the graph y = f(x). A cosmic ray travels 60.0 km through the earth's atmosphere in 350 s , as measured by experimenters on the ground. You may want to review (Pages 1035 - 1039).How long does the journey take according to the cosmic ray? find the mass and center of mass of the solid e with the given density function . e is the tetrahedron bounded by the planes x = 0, y = 0, z = 0, x y z = 3; (x, y, z) = 5y. m = x, y, z = what is the charge qencl contained within the gaussian cylinder? little books, inc. reclittle books, inc. recently reported 3.000 million usd of net income. the firm's ebit was 6.577 million usd. the firm's average tax rate was 31.5%. calculate the interest expense.ently reported 3.000 million usd of net income. the firm's ebit was 6.577 million usd. the firm's average tax rate was 31.5%. calculate the interest expense. astronauts on our moon must function with an acceleration due to gravity of 0.165g .if an astronaut can throw a certain wrench 15.0 m vertically upward on earth, how high could he throw it on our moon if he gives it the same starting speed in both places? your goal during the interview process should be group of answer choices to find the right match for your goals and capabilities. to fill an available job opening. to get an offer. to find the position that pays the most. to look first to the largest companies for job openings, then consider smaller companies if those don't work out. which risk factor is associated with prostate cancer quizlet A rectangles width is 1/2 of its length. Its area is 338 square centimeters. What are its dimensions? Apply any five factors that should be considered when Pick n Pay chooses locations for its Boxer stores in South Africa. A 25 degree angle has an opposite leg 6cm long. How long is the adjacent leg? candace enters into a contract to pay parker for a business survey and review of candace's competitors, which parker delivers on june 1. candace's offer, on the same date, to pay parker is Why do researchers believe color deficient vision often has genetic causes?A. Color deficiencies are more common in some cultures.B. Color perception changes somewhat as we get older.C. More males than females suffer from color deficiencies.D. Dietary patterns affect color deficiencies. Amy's apple tree has 18 apples, and she wants to share them with her neighbors Beth and Carol, with Beth and Carol each getting no more than 7 apples. In how many ways she can share her apples? (Your solution must use the method for computing the number of integer partitions covered in class.) the estimated urban share of the world population today is approximately Which idea best characterizes the Beat Generation during the 1950s?restoring fundamental moral values to societypromoting nonconformity and anti-consumerismleading international efforts to contain communismsupporting goals of big business and personal prosperity X is a normally distributed random variable with mean 54 and standard deviation 14.What is the probability that X is between 12 and 96?Use the 0.68-0.95-0.997 rule and write your answer as a decimal. Round to the nearest thousandth if necessary. when marketers define their target market, they simultaneously establish a set of