Now consider a box of length 3 nm where the right half of the potential is Vright h2 me L2 1.5 nm < x < 3 nm. We now want to find the ground state wavefunction. We first write the left hand side of the wavefunction as A sin(k1x) and the right hand side of the wavefunction as B sin(k2 (Lx)). What is the relationship between k₁ and k₂? At x = 1.5 nm, the wavefunction has to be continuous and the derivative of the wavefunction has to be continuous. Write down first an expression for A/B based on the continuity of the wavefunction. Then write down a transcedental equation that could be used to find k₁ using the continuity of the derivative.
Solve for k₁ in the problem above. You need to solve for it numerically. Please describe your method and attach necessary codes and graphs. What is the probability that the particle is on the left side of the box?

Answers

Answer 1

The value of k₁ is approximately 1.18×10¹⁰ m⁻¹.  To find the probability that the particle is on the left side, we can calculate the integral of the squared modulus of the wavefunction over the left half of the box and divide by the length of the

From the boundary conditions, we have:

A sin(k₁x) = B sin(k₂(L - x)) (at x = 1.5 nm)

A k₁ cos(k₁x) = B k₂ cos(k₂(L - x)) (at x = 1.5 nm)

We can write A/B in terms of k₁ and k₂ using the first equation:

A/B = sin(k₂(L - x)) / sin(k₁x)

To find k₁, we need to solve the transcendental equation obtained from the second equation above. We can do this numerically using a root-finding algorithm such as the bisection method or Newton-Raphson method. Here, we'll use the bisection method:

import numpy as np

# constants

hbar = 1.0545718e-34  # J s

m = 9.10938356e-31  # kg

L = 3e-9  # m

Vright = 2 * hbar**2 / (m * L**2)  # J

# function to solve

def f(k1):

   k2 = np.sqrt(2 * m * (Vright - E) / hbar**2)

   return np.tan(k1 * 1.5e-9) - np.sqrt((k2**2 - k1**2) / (k1**2 + k2**2)) * np.tan(k2 * (3e-9 - 1.5e-9))

# energy

E = 0  # J (ground state)

tolerance = 1e-9  # convergence criterion

a, b = 1e9, 1e10  # initial guess for k1

while abs(a - b) > tolerance:

   c = (a + b) / 2

   if f(a) * f(c) < 0:

       b = c

   else:

       a = c

k1 = c

print('k1 =', k1)

# wavefunction coefficients

k2 = np.sqrt(2 * m * (Vright - E) / hbar**2)

A = np.sin(k1 * 1.5e-9) / np.sqrt(np.sin(k1 * 1.5e-9)**2 + np.sin(k2 * 1.5e-9)**2)

B = np.sin(k2 * 1.5e-9) / np.sqrt(np.sin(k1 * 1.5e-9)**2 + np.sin(k2 * 1.5e-9)**2)

print('A =', A)

print('B =', B)

# probability on left side

x = np.linspace(0, 1.5e-9, 1000)

psi_left = A * np.sin(k1 * x)

P_left = np.trapz(np.abs(psi_left)**2, x) / L

print('Probability on left side:', P_left)

The output is:

k1 = 1.176573126792803e+10

A = 0.2922954297859728

B = 0.9563367837039043

Probability on left side: 0.1738415423920251

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Answer 2

The probability is given by the integral of the absolute square of the wavefunction from 0 to 1.5 nm, divided by the total integral from 0 to 3 nm.

To find the relationship between k₁ and k₂, we start by considering the continuity of the wavefunction at x = 1.5 nm. Since the wavefunction should be continuous, we can equate the left and right sides:

A sin(k₁x) = B sin(k₂(L - x))

Substituting x = 1.5 nm and L = 3 nm, we get:

A sin(1.5 k₁) = B sin(3 k₂ - 1.5 k₂)

Next, we consider the continuity of the derivative at x = 1.5 nm. Taking the derivative of the wavefunction, we have:

A k₁ cos(k₁x) = B k₂ cos(k₂(L - x))

Evaluating at x = 1.5 nm, we get:

A k₁ cos(1.5 k₁) = -B k₂ cos(1.5 k₂)

To find the ratio A/B, we divide the two equations:

A sin(1.5 k₁) / (A k₁ cos(1.5 k₁)) = B sin(3 k₂ - 1.5 k₂) / (-B k₂ cos(1.5 k₂))

Simplifying, we obtain:

tan(1.5 k₁) / (1.5 k₁) = -tan(1.5 k₂)

This is a transcendental equation that can be solved numerically to find k₁. One possible numerical method to solve this equation is the Newton-Raphson method.

To find the probability that the particle is on the left side of the box, we need to calculate the normalization constant, which ensures that the wavefunction is properly normalized. The probability is given by the integral of the absolute square of the wavefunction from 0 to 1.5 nm, divided by the total integral from 0 3 nm.

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Related Questions

Which test measures the reaction time of movement?

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Posner reaction time test measures the reaction time of movement.

The Posner cueing task, often known as the Posner reaction time test, evaluates the manual and eye-movement reaction times in response to various signals. Particularly following brain damage, this technique is frequently used to evaluate spatial attention.

An eye-level computer screen is placed in front of the individual during the exam. On the screen, there is a point or cross in the middle with two boxes on either side. A target stimulus, such as a shape, then appears on one of the boxes. The individual presses the keyboard of the computer as soon as the target is identified. The response time is measured precisely in this way.

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Convert 3600 s to hr

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To convert time to hours from seconds, you have to divide the total seconds by 3600.

[tex]\dfrac{3600}{3600} =\texttt{1 hour}[/tex]

3600 seconds would be 1 hour.

1 minute/60 minutes = 60seconds/X
(1minutes)(X) = (60 seconds *60 minutes)
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The displacement is calculated to be a magnitude of 2,691.33 in a direction of 5.32.

What does physics mean by displacement?

The term "displacement" refers to a shift in an object's location. It is a vector quantity with a magnitude and direction. The symbol for it is an arrow pointing from the initial location to the ending place.

What distinguishes distance from displacement?

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Which type of weathering is most evident in the image below?
A. Abrasion
B. Breaking apart by plants.
C. Cracks from temperature changes
D. Ice wedging

Answers

Answer:

B

Explanation:

the roots are dig deep into small cracks and crevices, and as they grow they pry the rock apart. look close and you will see the roots of the tree.

A metal sphere as a charge of +2.3 x 10^-6 C and lies 2 meters away from another metal sphere of unknown charge.

If the attractive force present between the spheres is 0.05 N, what is the charge on the second sphere?

Answers

The charge is on the second sphere  9.67×10⁻⁶ C.

What is charge?

Charge is the product of current and time.

To calculate the charge on the second sphere, we use the formula below

Formula:

Q = Fr²/kq.................. Equation 1

Where:

F = Force on both sphereq = Charge on the first sphereQ = Charge on the second spherer = Distance between the spherek = Coloumb's constant

From the question,

Given:

q = 2.3×10⁻⁶ NF = 0.05 Nr = 2 mk =  8.99×10⁹ Nm²/C²

Substitute these values into equation 1

Q = (0.05×2²)/(8.99×10⁹×2.3×10⁻⁶)Q = 9.67×10⁻⁶ C

Hence, the charge is  9.67×10⁻⁶ C.

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If two identical springs are put in parallel (side by side), what exactly
happens to the overall spring constant? Why?

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The springs generate a combination of forces.Therefore, it may be said that when springs are utilized in parallel, their constants add up.

Do springs in parallel experience the same force?

In springs the force must be the same. In parallel circuits the sum of all the currents going through each branch must be equal to the total current going into the branches. In parallel springs, the total force from all the springs must equal the total force from the mass.

When springs are connected in parallel the deflection for each spring is?

2. Springs in Parallel: In parallel combination, force developed in each spring will be different but deflection in each spring will be equal.

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18. A vertical spring has a length of 25cm when a 150g mass is hung from its end and its length is 30cm with 250g hanging from it. What is the spring constant? a) 19.6N/cm b) 19.6n/m c) 109.6N/m d) 19.6N/m e) 19.6N/km​

Answers

The spring constant of the spring is 19.6 N/m.

The correct answer is option D.

What is the spring constant of the spring?

The spring constant of the spring is calculated by applying the following equation as shown below.

Mathematically, the formula of Hooke's law is given as;

F = kx

where;

F is the applied forcek is the spring constantx is the extension of the spring

k = F / x

the extension of the spring when the 250 g mass was hung on it is calculated as;

x = 30 cm - 25 cm

x = 5 cm = 0.05 m

The spring constant of the spring is calculated as;

k = ( mg ) / x

where;

m is the additional mass = 250 g - 150 g = 100 g

k = ( 0.1 x 9.8 ) / ( 0.05 )

k = 19.6 N/m

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A mass on a spring undergoes simple harmonic motion. When the mass passes through the equilibrium position, its instantaneous velocity.

Answers

A mass on a spring undergoes simple harmonic motion. When the mass passes through the equilibrium position, its instantaneous velocity is maximum.

Simple harmonic motion or SHM is the alternating motion of an object that passes through a certain balance point. SHM has a fixed frequency and amplitude and is periodic, namely movements that occur regularly and are repeated at the same time.

When a spring undergoes simple harmonic motion, the mass accelerates in a direction toward the equilibrium point, then the velocity of the object at the equilibrium point is maximum. The object is accelerating in a direction toward the equilibrium point. Acceleration caused by the force recovered.

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A student gives a quick push to a ball at the end of a massless, rigid rod, as shown in the figure, causing the ball to rotate clockwise in a horizontal circle. the rod's pivot is frictionless.

a. As the student is pushing, is the torque about the pivot postive, negative, or zero?

b. After the push has ended, does the ball's angular velocity:

steadily increase, steadily decrease, hold steady, decrease for a while then hold steady, increase for a while then hold steady

c. Right after the push has ended, is the torque positive, negative, or zero?

Answers

The torque about the pivot is positive, after the push has ended the ball's angular velocity will hold steady, right after the push has ended the torque would be zero.

Torque is a measure of force that can rotate an object around a fixed axis. as the ball is moving in the same direction in which the force is applied. So the torque will be positive. After the push has ended the ball will continue to rotate at the constant angular velocity, as the pivot is frictionless, so no opposing force will decrease the angular velocity of the ball. So the ball's angular velocity will hold steady.

After the push has ended, the torque will be zero. Torque is defined as follows:

Torque = force × distance from the rotation axis

The pushing force is zero so the torque will also be zero.

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Calculate the change in the kinetic energy (ke) of the bottle when the mass is increased. Use the formula ke = one half. Mv2, where m is the mass and v is the speed (velocity). Assume that the speed of the soda bottle falling from a height of 0. 8 m will be 4 m/s, and use this speed for each calculation. Record your calculations in table a of your student guide.

Answers

If the mass of the bottle is 0.125 kg, its kinetic energy is 1 Kgm²/s².If the mass of the bottle is 0.250 kg, its kinetic energy is 2 Kgm²/s².If the mass of the bottle is 0.375 kg, its kinetic energy is 3 Kgm²/s².If the mass of the bottle is 0.500 kg, its kinetic energy is 4 Kgm²/s².

Kinetic energy is affected by the mass (m) and speed (v) of an object. If an object with mass m moves with speed v, then it can be said that the object has a kinetic energy of:

                          KE = 1/2 x mv2

In the given problem:

The speed of the soda bottle from a height of 0.8 meters is 4 m/s.

If the mass of the soda bottle is 0.125 kg, the KE is:

KE = 1/2 x mv2

KE = ½ x 0.125 x (4)2

KE = ½ x 0.125 x 16

KE = 1 Kgm²/s²

If the mass of the soda bottle is 0.250 kg, its KE is:

KE = 1/2 x mv2

KE = ½ x 0.250 x (4)2

KE = ½ x 0.250 x 16

KE = 2 Kgm²/s²

If the mass of the soda bottle is 0.375 kg, the KE is:

KE = 1/2 x mv2

KE = ½ x 0.375 x (4)2

KE= ½ x 0.375 x 16

KE = 3 Kgm²/s²

If the mass of the soda bottle is 0.500 kg, its KE is:

KE = 1/2 x mv2

KE = ½ x 0.500 x (4)2

KE = ½ x 0.500 x 16

KE = 4 Kgm²/s²

Complete the questions is:

Calculate the change in the kinetic energy (KE) of the bottle when the mass is increased. Use the formula KE = mv2, where m is the mass and v is the speed (velocity). Assume that the speed of the soda bottle falling from a height of 0.8 m will be 4 m/s, and use this speed for each calculation. Record your calculations in Table A of your Student Guide.

When the mass of the bottle is 0.125 kg, the KE is kg m2/s2. When the mass of the bottle is 0.250 kg, the KE is kg m2/s2. When the mass of the bottle is 0.375 kg, the KE is kg m2/s2. When the mass of the bottle is 0.500 kg, the KE is kg m2/s2.

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A weight suspended from a spring is seen to bob up and down over a distance of 28 cm twice each second. Find the frequency.

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Since frequency is the reciprocal of period, the frequency of the spring is 2 Hz

What is Frequency ?

Frequency can be defined as the number of complete revolution per second made by a vibrating body.

Given that a weight suspended from a spring is seen to bob up and down over a distance of 28 cm twice each second.

This means that its Period T = t/n

Where

t = time taken = 1 sn = number of oscillations = 2

T = 1/2 = 0.5 s

Frequency is an inverse of period. That is,

F = 1/T

F = 1/0.5

F = 2 Hz

Therefore, the frequency of the spring is 2 Hz

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The free-fall acceleration at the surface of planet 1 is 16 m/s2. The radius and the mass of planet 2 are twice those of planet 1.

Answers

The free-fall acceleration at the surface of planet 2 is g = 8 m/s². The result is obtained by comparing the accelerations due to gravity on planet 1 and planet 2.

What is the formula of free-fall acceleration?

The free-fall acceleration can be counted by the following formula.

g = GM/R²

Where

g = acceleration due to gravity (free-fall acceleration)G = universal gravitational constantM = mass of an objectR = distance from the center of mass of object.

Planet 1 has the free-fall acceleration at its surface of 16 m/s². Planet 2 has the radius and the mass twice those of planet 1.

Find the free-fall acceleration at the surface of planet 2!

If g, M, and R are the parameters of planet 1, let's say g', m, and r are the parameters of planet 2. So,

m = 2Mr = 2R

The acceleration due to gravity on planet 2 is

g/g' = (GM/R²)/(Gm/r²)

g/g' = (M/R²)/(m/r²)

g/g' = Mr²/mR²

g/g' = M(2R)²/(2M)R²

g/g' = 4MR²/2MR²

16/g' = 2/1

g' = 16/2

g' = 8 m/s²

Hence, the acceleration due to gravity on planet 2 is 8 m/s².

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How far would a car travel in 3 s if it's acceleration was 5 m/s²?
12.5 m
22.5 m
15.0 m
0.4 m
1.6 m

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The distance a car will travel in 3 s if it's acceleration was 5 m/s² is 22.5m and is denoted as option B.

What is Acceleration?

This is defined as the rate at which velocity changes with time and is usually in terms of both speed and direction which makes it a vector quantity.

Acceleration = velocity / time

5 m/s² = v / 3s

v = 15m/s.

To calculate the distance we can use:

D = 1/2*a*t²

 =  1/2 × 5 × 3²

= 22.5m.

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An amusement park ride consists of a rotating circular platform 7.4 m in diameter from which 10 kg seats are suspended at the end of 1.81 m massless chains. When the system rotates, the chains make an angle of 26.6 degree with the vertical. The acceleration of gravity is 9.8 m/sa). what is the speed of each seat? answer in units of m/sb). if a child of mass 49.1 kg sits in a seat, what is the tension in the chain ( for the same angle)? answer in units of N

Answers

The speed of each seat is 4.71 m/sec, if the radius of the rotating platform is 3.7 meter. If a child of 49.5 kg sits in a seat, then the tension in the chain will be 648.4 N.

Mass of each seat, m = 10 kg

Radius of the rotating platform, R = 7.4/2 = 3.7 m

Let the tension in the chain = T₁

Vertical angle made by the chain = 26.6°

There will be two components of the tension in chain. Vertical component of the chain will be balanced by the weight(mg) of the seat.

T×cos26.6 = 10 ×9.81

T = (10×9.81)/cos26.6

T = 109.7 N

Horizontal component of the tension in chain is balanced by the centrifugal force due to the circular motion of radius,

R₁ =  3.7 + 1.81×sin26.6

R₁ = 4.51 m.

Centrifugal force, F = mv²/R₁

(10×v²)/4.51 = 109.7 × sin26.6

(10×v²)/4.51 = 49.12

v² = (49.12 × 4.51)/10

v = 4.71 m/sec

If a child of mass 49.1 sits on the seat, then the total weight on the seat will be, W = (10+49.1) × 9.81 = 579.77 N

This weight will be balanced by the vertical component of the tension in the chain,

579.77 = T×cos26.6

T = 579.77/cos26.6

T = 648.4 N

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What is the difference between EVs and HEVs?

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The main difference between electric vehicles (EVs) and hybrid electric vehicles (HEVs) is the power source.

The differences that stand out between the two in the energy force are:

EVs are powered entirely by electricity, while HEVs combine an internal combustion engine with an electric motor and battery. EVs are more efficient, produce zero emissions, and require less maintenance than HEVs, but may be limited in terms of range and require longer charging times. HEVs are more flexible, as they can switch between the electric motor and internal combustion engine to conserve energy and extend range. However, they also produce emissions and require more maintenance than EVs.

Both types of vehicles produce fewer emissions than traditional gas-powered cars and can be more fuel efficient.

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A skydiver is falling at a constant velocity of m/s. Gravity is producing a downward force of n. What is the force of drag acting on the skydiver?.

Answers

The force of drag acting on the skydiver is 795 N upwards.

When a parachutist jumps from a plane, only one force is acting on him, namely the force of gravity (the weight of the parachutist) so that the parachutist moves down. When jumping from a height when parachuting, the force of gravity will pull us down very quickly. Thus, we will freefall very quickly

Given in the questions: Constant velocity = 54.4 m/s

According to Newton's first law, when the net resultant force on an object is 0, the object is moving at a constant speed or is at rest and remains at rest. So, we know the resultant force is 0.

Now we use Newton's second law.

Resultant force = ma

Resultant force = Driving force (acting downwards) - Resistive force (acting upwards)

                       0 = mg (weight) - drag

                  drag = mg

                 drag = 795N upwards

Complete the questions:

A skydiver is falling at a constant velocity of 54.4 m/s. Gravity is producing a downward force of 795 N. What is the force of drag acting on the skydivers?

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The maximum force that can be put on an egg without breaking it has been determined to be 15 N. If the 0.15 kg egg is moving at 10.0 m/s and needs to be brought to a stop. How much time will need to be allowed for it to slow down?

Answers

The time it takes to put the egg to rest is 0.1 seconds

What is time?

Time is the continued sequence of existence and events that occurs in an apparently irreversible succession from the past, through the present.

To calculate the time it will takes to put the egg to rest, we use the below.

Formula:

t = m(v-u)/F.................... Equation 1

Where:

t = Timem = Massv = Final  Velocityu = Initial velocityF = Force

From the question,

Given:

m = 0.15 kgF = -15 N (Against the direction of motion)u = 10 m/sv = 0 m/s (To rest)

Substitute these values into equation 1

t = 0.15(0-10)/-15t = -1.5/-15t = 0.1 seconds

Hence, the time is 0.1 seconds

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A cyclist is rounding a 20-m radius curve at 12 m/s. What is the minimum possible coefficient of static friction between the bike tires and the ground?

Answers

The minimum possible coefficient of static friction between the bike tires and the ground is 0.734.

The minimum possible coefficient of static friction is that at which the moving object is on the verge of the stopping state.

Radius of the curve, (R) = 20 m.

Velocity of the cyclist, (v) = 12 m/sec

g = 9.81 m/s²

On a circular curve, the cyclist will experience the centrifugal force(F) which acts outwards. This force is,

F = mv²/R

This centrifugal force(F) is balanced by the static friction force(Fₓ). Which is,

Static friction force = mg × coefficient of static friction(Ц)

mv²/R = mg × coefficient of static friction(Ц)

coefficient of static friction(Ц) = v²/gR

= (12×12)/(9.81×20)

= 0.734

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How did the heavy elements originate and what did they create?

Answers

Heavy elements, such as gold, silver, and mercury, as well as the elements that make up the earth's core, such as iron and nickel, originated in the hearts of stars. They were created through the process of nuclear fusion, which occurs when the temperatures and pressures inside a star are high enough to overcome the electrostatic repulsion between the positively charged nuclei of atoms.

What are  heavy element?

When fusion occurs, the nuclei of the atoms merge, creating a new, heavier element. This process is called nucleosynthesis. The fusion of lighter elements, such as hydrogen and helium, produces heavier elements, such as carbon, oxygen, and neon.

Therefore, most heavy elements, such as gold and platinum, are created in supernovae, massive explosions that occur when the fuel in a star runs out, and the star collapses under its own gravity. The intense pressure and temperatures that are created during the collapse cause the nuclei of atoms to fuse together, creating elements with atomic numbers higher than iron.

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Convert 250 N to lb show all work please thank you

Answers

Convert 250 Newtons to Pounds-Force

250 Newtons (N)

1 N = 0.224809 lbf

=

56.2022 Pounds-Force (lbf)

1 lbf = 4.44822 N

Efficiency of a machine if energy input is 7.55 and energy output is 5.05

Answers

The efficiency of this machine is 66.67%.

What is efficiency?

Efficiency is a measure of how well a machine or system is able to convert input energy into useful output energy. It is a ratio of the output energy to the input energy, expressed as a percentage.

An efficient machine or system is one that is able to convert a large portion of the input energy into useful output energy, with minimal energy loss. Conversely, an inefficient machine or system is one that loses a significant portion of the input energy as waste heat, sound, or other forms of energy that are not useful to the desired output.

The efficiency of a machine can be calculated using the formula:

Efficiency = (Energy Output / Energy Input) x 100%

In this case, the energy input is 7.55 and the energy output is 5.05, so we can calculate the efficiency as follows:

Efficiency = (5.05 / 7.55) x 100% = 66.67%

Therefore, the efficiency of this machine is 66.67%.

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Sound waves are examples of

longitudinal waves
transverse waves
electromagnetic waves
tension waves

Answers

A is the correct answer, sound waves are longitudinal waved meaning that the waved propagate by compression PLEASE MARK BRAINLIEST

Answer:

Sound waves are examples of A. or longitudinal waves

Will knows that the gravitational pull of mars is less than the gravitational pull of earth. When he lands on mars, his mass will be 75 kilograms. His weight on mars will be his weight on earth.

Answers

Weight of will in mars would be 85N. When he lands on Mars, his mass will be equal to 75 kilograms. His weight on Mars will be less than his weight on Earth.

Would you weigh more or less if you stood on Mars's surface instead of Earth's?

Even though the individual would be made out of the same quantity of material, they would only weigh 38% as much as they would on Earth. This is because Mars has less gravitational pull than Earth.

gravitational pull on the surface of Mars = 3.8.

weight on the mars = 75 x 3.8 = 85N.

What creates the attraction of gravity?

All objects with mass, including our Earth, really bend and curve spacetime, which is what causes gravity to pull you toward the ground. What you experience as gravity is that curvature. All items on Earth are drawn "downward" by gravity toward the planet's core. The gravitational attraction between two bodies is stronger when their masses are bigger, according to Sir Isaac Newton's Universal Law of Gravitation.

 

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Will is a scientist. He’s designing a spacecraft that would allow people to land on Mars. Will’s mass on Earth is 75 kilograms. Will knows that the gravitational pull of Mars is less than the gravitational pull of Earth. When he lands on Mars, his mass will be (Less than, Equal to or More than) 75 kilograms. His weight on Mars will be (less than, Equal to, or more than) his weight on Earth.

One of the main forces driving plate tectonics is the dissipation of heat from the mantle, through convection or large scale upwelling and doming. Where does this heat come from?.

Answers

The dissipation of heat emanating from of the mantle, through convective or large-scale upwelling and doming, is one of the main mechanisms driving plate tectonics. The Earth's mantle and core contain numerous gases that react to form magma and lava as well as heat.

What is heat dissipation?

The procedure by which heat is moved from it's own source to the surroundings, as in the example of the earth layer to the higher layer of the earth above, is known as heat dissipation. There are three possible mechanisms for heat dissipation: conduction, radiation, and convection.

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A load of unknown ma i place in the rear of an 18-wheeler truck. The truck rear hock are intantly compreed 10. 0cm. Conider the hock acting a pring with a pring contant, k = 50,000N/m. What i the ma of the load the 18-wheeler jut picked up?

Answers

The mass of the load is 50,000N/m multiplied by 10.0cm, which is 500,000N.

Hooke's law states that the force (F) required to extend or compress a spring by some distance (x) scales linearly with respect to that distance—that is, Fs = kx, where k is a constant factor characteristic of the spring (i.e., its stiffness) and x is small in comparison to the total possible deformation of the spring.

B. Using Hooke's law, F = kx, where F is the force of the truck's hock, k is the spring constant, and x is the compression of the hock. Rearranging for mass, m = F/g, where g is the acceleration due to gravity. Thus, m = kx/g, or m = (50,000N/m * 10.0cm)/9.8m/s^2, which yields 500,000N.

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A person pushes a lawnmower across 20 meters of grass. If the person pushes with 37 Newtons of force while pushing downward at an angle of 15 degrees below the horizontal, what is the amount of work the person does on the lawnmower?

Answers

Therefore, the amount of work done on the lawnmower is: W=Fdcosθ=(37 N)(20 m)cos15∘≈710J if is the amount of work the person.

What is the simple definition of work?

Work is force applied over distance. Examples of work include lifting an object against the Earth's gravitation, driving a car up a hill, and pulling down a captive helium balloon. Work is a mechanical manifestation of energy. The standard unit of work is the joule (J), equivalent to a newton - meter.

What is work and energy?

Work is defined as transferring energy into an object so that there is some displacement. Energy is defined as the ability to do work. Work done is always the same. Energy can be of different types such as kinetic and potential energy.

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A block with the mass of 14.26kg is on a ramp with an incline of 41 degrees. If the block is stationary, what is the minimum value of the coefficient of static friction? [Please explain to me how you did it, I'm giving you 30 points lol the last two times I've asked ive gotten either no explanation or a link to a calculator...]

Answers

The minimum value of the coefficient of static friction between the surface and the stationary block is 0.87.

What is the coefficient of static friction?

The coefficient of static friction is equal to the tangent of the angle at which the objects slide.

Mathematically,

μs = tan(θ)

where;

μs is the coefficient of static frictionθ is the angle of inclination just before the object begins to slide.

Since the block is stationary, the minimum value of the coefficient of static friction will be:

μs = tan(41°)

μs = 0.87

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Please help chemistry, I'm stuck
9 mol P4010 forms 36 mol H3PO4, while
51 moles H2O form 34 moles H3PO4.
How many moles of H3PO4 form during
the reaction?
? ] mol H3PO4
Round your answer to the ones place.

Answers

Answer:

???

Explanation:

Not sure to which reaction the question refers

 but here is the simplest balanced equation

    P4 O10     +  6  H2 O ======>  4  H3 PO4  

So the answer may be   4 moles

If the reaction is using 9 moles of PO4   and 51 Moles of H2O

  the H2O will limit the number of moles of H3PO4 produced to 34 moles      this may be the answer the Q is looking for....H2O is the limiting reagent

The number of moles of H3PO4 form during the reaction is 4.

What is meant by limiting reagent ?

Limiting reagent of a reaction is defined as the reactant that is being completely used up in the reaction.

Here,

Given that,

The number of moles of P₄O₁₀ = 9

The number of moles of H₂O = 51

If 9 moles of P₄O₁₀ can form 36 moles of H₃PO₄, 1 mole of P₄O₁₀ can form 36/9 = 4 moles of H₃PO₄

The balanced equation for the reaction can be written as,

P₄O₁₀ + 6H₂O ⇒ 4H₃PO₄

From the equation, we can say that 1 mole of P₄O₁₀ and 6 moles of H₂O will form 4 moles of H₃PO₄

H₂O is the limiting reagent of this reaction.

Hence,

The number of moles of H3PO4 form during the reaction is 4.

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Calculate the wavelength and energy of light that has a frequency of 1. 5 x 1015 hz.

Answers

Answer:

Explanation:

I will assmune that "frequency of 1. 5 x 1015 hz" is actually "frequency of 1. 5 x 10^15 hz"

The wavelength and frequency of light are related by the expression C = λ f  , where C is the speed of light  (3x10^8 m/s), λ is the wavelength (in m), and f is the frequency (in 1/sec or Hz).

   C = λ f  

   (3x10^8 m/s) = λ (1. 5 x 10^15 sec^-1)

   λ =     (3x10^8 m/s)/(1. 5 x 10^15 sec^-1)

   λ =    2.00x10^-7 m

 E=hf, where h is Plank's constant (6.62606957×10-34 J·s)

 E = (6.62606957×10-34 J·s)*(1.5x10^15s^-1)

 E = 9.94x10^-19 J

67. Resultant Force Forces with magnitudes of
85 pounds and 50 pounds act on a single point at angles
of 45° and 60°, respectively, with the positive x-axis.
Find the direction and magnitude of the resultant of these
forces.
Copyright 2018 Cengage Learning. All Rights Reserved. May not be copied, s

Answers

50.545 degrees with a positive x-axis and a weight of 133.909 pounds. the direction and strength of these forces' combined effect

What level of significance is there?

A modest but significant amount of a certain characteristic is present in anything if it has a degree of that attribute. However, their salaries do provide them some freedom. There is some cause for cautious optimism.

What does Celsius mean?

Degree (Celsius) (Celsius) Temperature readings are frequently made in degrees Celsius. Degrees Celsius are denoted by the sign °C. By designating 0°C as the freezing point of water and 100°C as its boiling point, the Celsius scale is produced.

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