Which of the following is most closely related to the unit of time that humans call the month?


A.

the rotation of the Earth once on its axis

B.

the cycle of the Moon through all its phases

C.

the rotation of the Sun once on its axis

D.

the revolution of the Earth once around the Sun
Never mind found the answer

Answers

Answer 1

Answer:

the rotation of the earth once on its axis


Related Questions

Select the correct answer from each drop-down
Two magnets are placed as shown in the
00
В
D
between the poles B and
. And the force of
between the poles A and DIS
Reset
Next

Answers

The force of repulsion between the poles B and C is minimum and the force of attraction between the poles A and D maximum.

Answer: Repulsion, Minimum, Attraction, Maximum

Explanation:

The Concept of attraction & Repulsion

The basic concept of attraction and repulsion between two similar and opposite poles of a bar magnet is that the ends of two bar magnets with similar strongly repel each other whereas poles of opposite polarity attract each other.

Since B and C are of opposite polarity, they will repel each other with minimum forces whereas A and D are of opposite polarity as well, hence they will attract each other with maximum forces when placed together.

We can flip the options accordingly saying, B and C will have the maximum attraction while A and D will have the minimum repulsion when placed together.

The deepest mine ever drilled has a depth of 12300 meters. suppose you drop a rock with a mass of .12 kilograms down the shaft of this mine. What would the rock's kinetic energy be after falling 3200 meters? What would the potential energy associated with the rock be at that same moment? Assume no air resistance and a constant free-fall acceleration. (please show the equations used and why you used these equations.) Thank you.​

Answers

Answer:

Correct answer: Ek = 384,000 J = 0.384 · 10⁶ J = 0.384 MJ

                           Ep = 1,092,000 J = 1.092 · 10⁶ J = 1.092 MJ

                           Et  = 1,476,000 J = 1.476 · 10⁶ J = 1.476 MJ

Explanation:

The total energy at all times is equal to the sum of kinetic and potential energy.

Et = Ep + Ek

We will take the bottom of the mine as a reference point

We can solve this problem combined with the help of kinetics and energy conservation laws, or just with energy conservation laws, which I will do.

Before we drop a rock the potential energy is maximum and the kinetic energy is equals to zero.

The formula for calculating potential energy is:

Ep = m g h ,  we will take that g = 10 m/s²

This is the maximum potential energy (or total energy)

Epmax = Et = 12 · 10 · 12,300 = 1,476,000 J = 1.476 · 10⁶ J = 1.476 MJ

After a fall of 3,200 m the rock will be on height of 9,100 m and its potential energy will be:

Ep = m g h₁ = 12 · 10 · 9,100 = 1,092,000 J = 1.092 · 10⁶ J = 1.092 MJ

The difference between the maximum potential energy (or total energy) and the potential energy at height h₁ is actually kinetic energy.

Ek = ΔEp = Et - Ep = 1,476,000 J - 1,092,000 J

Ek = 384,000 J = 0.384 · 10⁶ J = 0.384 MJ

God is with you!!!

An object is located 40.0 cm from a convex lens. The lens focuses light at a
distance of 10.0 cm. What is the image distance?
dof
Use the equation de

Answers

The image of distance (di) of the object is 13.33 cm.

Explanation:

Given data in the problem,

The object located at a distance from the convex lens.

do = 40.0 cm

The distance at which the light is focused.

f= 10.0 cm.

We need to find the image of distance di.

The lens equation gives the quantitative relation among the image distance (di), the object distance (do), and the focal length (f).

The equation is given by,

[tex]\frac{1}{f} =\frac{1}{di} +\frac{1}{do}[/tex].

[tex]\frac{1}{10} =\frac{1}{di} +\frac{1}{40}[/tex].

[tex]\frac{1}{10} -\frac{1}{40} =\frac{1}{di}[/tex].

[tex]\frac{4-1}{40}=\frac{1}{di}.\\[/tex]

[tex]\frac{3}{40} = \frac{1}{di}[/tex].

3 di=40.

di=[tex]\frac{40}{3}[/tex].

di = 13.33 cm

The image of distance (di) of the object is 13.33 cm.

Nitrogen -13 has a half life of 10 minutes how long will it take for a sample of 500 g to be reduced to 62.5 g?

Answers

Answer:

30 minutes

Explanation:

Use half life equation:

A = A₀ (½)^(t / T)

where A is the final amount, A₀ is the initial amount, t is time, and T is the half life.

A = A₀ (½)^(t / T)

62.5 = 500 (½)^(t / 10)

0.125 = ½^(t / 10)

t / 10 = 3

t = 30

It will take 30 minutes.

Final answer:

To find the time it takes for a 500 g sample of Nitrogen-13 to be reduced to 62.5 g, we can use the equation for radioactive decay. The time is approximately 40 minutes.

Explanation:

To solve this problem, we can use the equation for radioactive decay: N = N0 * (1/2)(t/t1/2), where N is the final amount, N0 is the initial amount, t is the time passed, and t1/2 is the half-life. In this case, we have N = 62.5 g, N0 = 500 g, and t1/2 = 10 minutes. Substituting these values into the equation:



62.5 g = 500 g * (1/2)(t/10)



Now, we can solve for t by taking the logarithm of both sides and rearranging the equation:



t = 10 * log2(62.5/500)



Using a calculator, the value of t is approximately 40 minutes.

which formula is used to calculate the change in an object's momentum

Answers

Answer:

The change in momentum of an object is its mass times the change in its velocity.

The formula to calculate the change in momentum of the object is ΔP= m( Vf - Vi).

What is a change in momentum?

The change in momentum is equal to the product of the mass and the velocity change. Because mass is a constant value, it remains constant. The change in velocity causes a change in momentum.

The change in momentum is calculated as the difference in the velocities of the object.

Momentum is the product of an object's mass and velocity and describes mass in motion. Impulse: An impulse is a force that causes a change in motion. The change in momentum of an object, p=m(vf-vi) p = m (vf- vI p = m (vf - vI is equivalent to the impulse, J.

Therefore, the formula to calculate the change in momentum of the object is ΔP= m( Vf - Vi).

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Gizmo weight and mass

Answers

Mass refers to the amount of matter in an object. It is a measure of the quantity of particles (atoms and molecules) comprising an object.

Weight, on the other hand, is the force exerted on an object due to gravity.

What is the difference between weight and mass?

The terms "weight" and "mass" are often used interchangeably, but they are actually two different things.

Mass is a measure of the amount of matter in an object. It is a scalar quantity, which means that it has magnitude only. Mass is measured in kilograms (kg) or grams (g). The mass of an object does not change, regardless of where it is located or how it is moving.

Weight is a measure of the force exerted on an object due to gravity. It is a vector quantity, which means that it has both magnitude and direction. Weight is measured in newtons (N).

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How is temperature and viscosity related?

Answers

Answer:

With an increase in temperature, there is typically an increase in the molecular interchange as molecules move faster in higher temperatures. The gas viscosity will increase with temperature. ... With high temperatures, viscosity increases in gases and decreases in liquids, the drag force will do the same.

In this section of a circuit, a current of 2.5 A flows across R2. Find the current that flows across R3. Let R1= 3.0 ohm, R2= 8.0 ohm, and R3= 4.0 ohm

A. 2.5 A
B. 10 A
C. 6.7 A
D. 5.0 A

Answers

D. 5.0A because this is right and will lead to the right answer okay you got this girl letssssss goooo googoggo Gogol
That would be (D) 5.0

superposition of a crest and trough produces ​

Answers

Answer:

pure constructive interference

Explanation:

The crests of two waves and the troughs are aligned. The superposition produces pure constructive interference. Because the disturbances add pure constructive interference, it produces a wave that has twice the amplitude of the individual waves but has the same wavelength.

Which of the following is not an SI unit?

Answers

Answer:

Pound

Explanation:

SI Unit stands for the International Standard of Unit. Thus from the options given, metre is a measure of length which is an SI unit. Kilogram is a measure of mass of a goven matter which is also an SI unit. Second is a measure of time which is an SI unit. Pound is a measure of masswhich is not an SI unit  but has to be converted to kilograms which an SI unit.

The pound is not an SI unit, while the kilogram, meter, and nanometer are part of the International System of Units (SI).

The SI (International System of Units) is a globally recognized system of measurement that includes specific base units, derived units, and prefixes for expressing measurements consistently. It was developed to standardize measurements worldwide. Let's identify which of the options is not an SI unit:

Kilogram (kg): The kilogram is one of the seven base SI units and is the unit of mass. It is used to measure the amount of matter in an object. The symbol for the kilogram is "kg."

Meter (m): The meter is another base SI unit and is the unit of length. It is used to measure distance or length. The symbol for the meter is "m."

Nanometer (nm): The nanometer is not a base SI unit, but it is an SI-accepted metric prefix. It represents one billionth (1/1,000,000,000) of a meter (10^-9 meters). It is used for very small lengths, particularly in fields like nanotechnology.

Pound: The pound is not an SI unit. It is a unit of mass commonly used in the United States and a few other countries that have not fully adopted the SI system. The pound is equivalent to approximately 0.453592 kilograms.

So, among the given options, the pound is the unit that is not an SI unit. The other three options (kg, meter, nanometer) are all related to the SI system. The SI system promotes consistency and clarity in scientific measurements and is widely used in most countries around the world.

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The question probable may be:

Which of the following is not an SI unit?

kg , pound, meter, nanometer

Which statements describe the Mercalli scale? Check all that apply.

Answers

Full Question:

Which statements describe the Mercalli scale? Check all that apply. This scale measures seismic waves based on their size. This scale rates an earthquake according to how much damage it causes. This scale produces a single rating for earthquakes that reach the surface. This scale uses Roman numerals to rank the damage caused by an earthquake. This scale measures the magnitude of an earthquake based on the size of seismic waves.

This scale rates an earthquake according to how much damage it causes.

This scale uses Roman numerals to rank the damage caused by an earthquake.

Explanation:

The intensities of the earthquake can be easily measured with the scale called The Mercalli intensity scale. The Scale called the Richter scale considers the energy of the earthquake. But the Mercalli scale will not consider the energy of the earthquake.

The effects of the earthquake is considered by the Mercalli scale and then the intensity of the earthquake will be calculated based on the effects that is being observed.It is a type of linear measurement. It uses the Roman numerals for the purpose of ranking the damages that are caused by the earthquake.

Answer:

This scale rates an earthquake according to how much damage it causes.

This scale uses Roman numerals to rank the damage caused by an earthquake.

Explanation:

Its CORRECT because I passed the test 100% on e d g e n u i t y 2020

Which of the following is true about the movement of stars in the night sky?

A.
Stars in the sky appear to move slowly from south to north.

B.
Stars in the sky appear to move slowly from north to south.

C.
Stars in the sky appear to move slowly from west to east.

D.
Stars in the sky appear to move slowly from east to west.

Answers

"Stars in the sky appear to move slowly from east to west" is true about the movement of stars in the night sky.

Answer: Option D

Explanation:

The Sun, Moon and stars all are understood to wake up in the East and set in the West direction, as every 24 hours the Earth rotates on its axis in the reverse direction from West to East. Consequently, the acceleration we witness is not their action, but ourselves as we go zipping onto the Earth's surface to the North, and these gravitational anomalies fly over us. For illustrating this point, the North Star named as Polaris in Ursa Minor is useful.

Stars in the night sky seem to move slowly from east to west due to the Earth's rotation.

Stars in the sky appear to move slowly from east to west. This apparent motion is due to the rotation of the Earth. As the Earth rotates from west to east, the stars appear to move in the opposite direction.

2. A man walks 38 m west from home, rest, then walks 20 m east. What is the man's displacement?

Answers

Answer:18m west

Explanation:

Since they are moving in opposite direction we subtract to get the displacement

Displacement =38-20

Displacement =18m in west direction

A. A boy was at a park one day. The park was _______ (number) meters away from his house.

Answers

Based on the graph, I would say the correct answer is 11 meters.

The reason I say this is because if you look at the orange line. He's leaving the park to his home. Is shows that it's 11 meters away. The green line is just there to trick you. It shows that you were already 5 meters closer to the park then at home.

explain how friction affects the mechanical energy of a system

Answers

Friction decreases the kinetic energy which decreases the mechanical energy.

Explanation:

When two object moves one over the other, the resistance that is faced by the object is called as the friction. Any force that restricts the motion of any moving or any object that is sliding is called as friction. A kinetic energy can be considered as a non conservative energy that reduced the mechanical energy of any moving objects.

A friction can be considered as a force that resits motion of an object. When there a movement of two objects one against the other, there will be a conversion of kinetic energy into heat energy. This conversion is caused by the friction. Thus, the kinetic energy reduces the mechanical energy and they will be converted into heat energy.

Final answer:

Friction is a force that opposes motion, transforming mechanical energy into other forms like heat, effectively reducing the system's mechanical energy.

Explanation:

Friction is a force that opposes the movement or motion of an object. In a system, when there is movement, friction comes into play. Mechanical energy is the sum of kinetic and potential energy in a system. As friction acts against movement, it transforms the mechanical energy within the system into other forms of energy, such as heat energy, which reduces the system's mechanical energy. Let's consider a sliding block for example. As the block slides, the friction between the block and the surface generates heat, thus reducing the mechanical energy (kinetic energy) of the block.

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A 20-newton weight is attached to a spring.
causing it to stretch, as shown in the diagram.
What is the spring constant of this spring?

Answers

Answer:

40 N/m

Explanation:

Assuming that the missing diagram is as attached, then we can deduce from Hooke's law that the extension of a spring is directly proportional to the applied force. This is mathematically expressed as

F=kx

Here, F represent the applied force, x denote the extension of the spring while k is the spring constant.

From the attached diagram, extension of the spring x=1-0.5=0.5m

Substituting 20 N for F and 0.5 m for x then

20=0.5k

k=20/0.5=40 N/m

Calculate the work done by a 47 N force pushing a pencil 0.26 m.

Answers

Answer:

Workdone = 12.2 Joules

Explanation:

Given:

Force applied on the pencil = 47 N

Displacement of the pencil = 0.26 m

We have to find the work done .

Note:

Workdone = Product of force and its displacement (in the direction of the force) .

So,

Plugging the values.

Workdone = [tex]Force\times displacement[/tex]

⇒ [tex]W=F\times d[/tex]

⇒ [tex]W =47\times 0.26[/tex]

⇒ [tex]W=12.2[/tex] Joules (J)

OR

We can say that the displacement is against the direction of applied force.

Displacement = - 0.26

Workdone = [tex]F\times d\times cos(\theta)[/tex]

⇒ [tex]\theta[/tex] is the angle between force and displacement.

⇒ Here, [tex]\theta=180[/tex]

⇒ [tex]cos(180) = -1[/tex]

Workdone (W)  = [tex]Fdcos(\theta)[/tex]

⇒ [tex]47\times -0.26\times -1[/tex]

⇒ [tex]12.2[/tex]  Joules (J).

Workdone on pushing the pencil = 12.2 Joules.

Work is the product of the force and displacement. The work done by in the given situation 12.2 J.

Work:

It is the change in the energy due displacement  of the object by the applied force. Work is the product of the force and displacement.

W = f.d

Where,

W - work

f- force =  47 N

d - displacement = 0.26 m.

put the values in the formula,

W =  47 N x 0.26 m.

W = 12.2 J

Therefore, the work done by in the given situation 12.2 J.

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A 20-newton weight is attached to a spring.
causing it to stretch, as shown in the diagram.
What is the spring constant of this spring?

Answers

Answer:

40 N/m

Explanation:

The diagram attached is used to answer the question

We know from Hooke's law that extension is directly proportional to the applied force hence

F=kx where x is extension, F is applied force and k is the spring constant. Making k the subject of the formula then

[tex]k=\frac {F}{k}[/tex]

From the attached diagram extension is given by subtracting unstretched spring from stretched spring hence extension, x=1-0.5=0.5m

Substituting 20 N for F and 0.5 m for x then

[tex]k=\frac {20}{0.5}=40 N/m[/tex]

Sound travels slower in colder air than it does in warmer air. Make a claim about the effect of air temperature on the speed of sound.

Answers

Answer: The temperature of the air affects the speed of sound in the due to the fact that colder contains air molecules with low kinetic energy. For warm air the kinetic energy of the molecules is high causing them to move in rapid motion. Because of these vibrations and collisions sound waves moves in a faster rate.

Explanation:

Calculate the kinetic energy in joules of a 10 g bullet moving at 300 m/s.
____J

1. 900
2. 450
3. 15
4. 45

Answers

Answer:450joules

Explanation:

Let mass=m velocity =v

Mass given=10g=(10/1000)kg=0.01kg

Velocity given =300m/s

Kinetic energy =(m x v^2)/2

Kinetic energy =(0.01x300^2)/2

Kinetic energy =(0.01 x 90000)/2

Kinetic energy =900/2

Kinetic energy =450joules

which description matches with which graph?

Answers

Answer:

Description 1 matches C.

Description 2 matches A.

Description 3 matches D.

Description 4 matches B.

Explanation:

Description 1 matches C. From graph C, we can see that the distance remains constant at a particular value. Hence, the car is not traveling and hence it is stopped.

Description 2 matches A. Speed is determined by the gradient of a distance-time graph. A depicts a linear graph which tells us that the gradient is constant and hence the car is at constant speed. The fact that the distance is increasing shows that the car is moving forward.

Description 3 matches D. Graph of D becomes less steeper as time progresses. This tells us that the gradient of the graph is decreasing and hence the speed of the car is decreasing.

Description 4 matches B. Graph B shows distance being decreased. This tells us that the car is coming back.

Write the names of the metalloids in order from lowest to highest atomic number.

Answers

Answer:

Boron, silicon, germanium, arsenic, antimony, tellurrin, polonium, Astatine

Explanation:

a 24 volt doorbell carries a current of 1/2 ampere. Calculate the resistance in the bell

1.
2.
3.

Answers

Answer:

48Ω

Explanation:

V = I*R

R = Resistance = ?

V = Voltage = 24volt

I = Current = 1/2amp

Therefore,

R = V / I = 24 / (1/2)

R = 24 * 2

R = 48Ω

What is the kinetic energy of a 150 kg object moving at a velocity of 15 m/s?
25312.5 j
16875 j
50625 j
33750 j

Answers

Answer:16875joules

Explanation:

Mass=m=150kg velocity=v=15m/s

kinetic energy =(m x v^2)/2

Kinetic energy =(150x15^2)/2

Kinetic energy =(150x225)/2

kinetic energy =33750/2

Kinetic energy =16875joules

Suppose that you fill an ice-cube tray with water from the sink and put the trash in the freezer. The water’s temperature decreases because _________.
a. Cool air in the freezer flows into the water
b. Thermal energy flows out of the water into the air in the freezer
c. Water evaporates and moves into the air in the freezer
d. the water contracts at a lower temperature
I need help asap, thank you

Answers

b. Thermal energy flows out of the water into the air in the freezer

Explanation:

As we know that water has the freezing point in zero degree Celsius and the boiling point is in 100 degree Celsius.The process of freezing happens when water molecules reach a state where it can move because of the less temperature so it starts coming to each other and form a crystal structure. The process of forming a crystal structure happens due to the flow of thermal energy to the cold surrounding temperature. This is the same reason why you feel cold also.

The energy stored in gasoline is
A chemical energy
B electromagnetic energy
C mechanical energy
D nuclear energy

Answers

The answer is A, Chemical Energy.
Final answer:

Gasoline stores chemical energy, which can be transformed to other types of energy via chemical reactions, such as the combustion in a car engine.

Explanation:

The energy encapsulated within gasoline can be precisely characterized as chemical energy. This type of energy is encapsulated within the chemical bonds of various compounds, encompassing molecules and atoms. It is significant to note that chemical energy, as a versatile energy form, can be both liberated and harnessed as a source of power in diverse applications.

In the case of gasoline, it represents a potent reservoir of chemical energy. When gasoline undergoes combustion in the engine of a car, it engages in a chemical reaction. This reaction leads to the release of the energy contained within the chemical bonds of gasoline molecules. This released energy manifests in the form of mechanical power, propelling the vehicle, and heat energy, which warms the engine and the surrounding environment. In this process, gasoline's chemical energy is converted into mechanical and thermal energy, illustrating the dynamic interplay between different forms of energy in our daily lives.

The precise understanding of chemical energy's role in powering engines and facilitating various industrial processes underscores the fundamental principles of energy transformation and utilization, forming the basis of many technological advancements and applications.

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Research the potential for a large earthquake off the coast of Oregon. What are two of the biggest concerns with a large earthquake in this area?

Answers

There is a 33% chance of a large earthquake off the coast of Oregon.

The two main concerns of a large earthquake are Gas fires and Tsunami .

Explanation:

Everytime a large earthquake hits in any other part of the world, We find a small earthquake hitting off the coast of Oregon.

So scientists feel that as United States is prone to Earthquakes, the people have to be prepared for such eventualities.

The main concern for this large earthquake is, that it might lead to gas leakages at homes that can start a gas fire, which might spread. So people have to be careful and check  on any gas leakages.

Such large earthquakes can also lead to tsunami waves. So people have to take precautions and evacuate, if they are near the coastline.

During a rising tide Ocean waves often become larger if the amplitude of a wave increases by a Factor of 1.1, by how much does the energy increase

Answers

Answer:

The energy of the wave will increase by a factor of 1.21.

Explanation:

Given:

The amplitude of the ocean wave is increased by a factor of 1.1.

The energy associated with a wave depends on the amplitude of the wave.

The energy (E) is directly proportional to the square of the amplitude (A) of the wave and is expressed as:

[tex]E=kA^2\\Where\ k\to constant\ of\ proportionality[/tex]

So, if the amplitude is doubled, then the energy will become 4 times and if the amplitude is halved, then the energy reduced by a factor of one by four.

Here, the amplitude is increased by a factor of 1.1. So, the energy associated with it will increase by a factor of square of 1.1 which is given as:

[tex]Increase\ in\ Energy=(1.1)^2=1.21\ of\ the\ initial\ value[/tex]

Therefore, the energy of the wave will increase by a factor of 1.21.

How Far East have you traveled if you ran 80 meters northeast

Answers

The student has traveled approximately 56.57 meters east.

In this case, the student has traveled 80 meters in a northeast direction. To determine how far east the student has traveled, we need to find the eastward component of their displacement.

Since the northeast direction can be broken down into equal north and east components, we can use trigonometry to determine the eastward displacement.

By using the sine function, we can find that the eastward displacement is approximately 56.57 meters.

A body that goes a distance and then returns to its starting point has the same beginning and ending points. In this case, the displacement is zero, but the distance travelled is not. It is possible to have zero, negative, or even positive displacements.

Therefore, the average velocity is usually 0 when the overall displacement is zero. To gain a better understanding, keep in mind that a body's displacement is a vector, meaning it depends on its direction. Its precise definition is the object's position change rate in a given direction.

Which of the following is the most accurate description of the relationship between velocity
and acceleration?
A. Velocity and acceleration are the same thing.
B. Velocity is a type of acceleration.
C. Acceleration is a change in velocity.
D. Acceleration is positive and velocity is negative.

Answers

Answer:

(C) acceleration is a change in velocity.

Explanation :

Acceleration is the rate of change of velocity with time.

Final answer:

Acceleration is the rate at which velocity changes, making option C ('Acceleration is a change in velocity.') the most accurate description of the relationship between velocity and acceleration.

Explanation:

The most accurate description of the relationship between velocity and acceleration is that acceleration is the rate at which velocity changes. Therefore, the correct answer to the question is 'C. Acceleration is a change in velocity.'

Acceleration is a vector quantity, which means it has both magnitude and direction. It can result from a change in speed, a change in direction, or both. Velocity is also a vector that describes the speed of an object in a given direction. When an object's velocity changes, it is accelerating, which can be a result of increasing speed, decreasing speed, or changing direction.

In summary, while velocity is the rate of change of position with time, acceleration is the rate of change of velocity with time.

Other Questions
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