How can you say that m3 is called derived unit​

Answers

Answer 1

Answer:

m³ is a derived unit because it is a product of three basic units. ( meters*meters*meters)


Related Questions


3. When are ionic compounds able to conduct electricity?

Answers

Ionic compounds conduct electricity when molten (liquid) or in aqueous solution (dissolved in water), because their ions are free to move from place to place. Ionic compounds cannot conduct electricity when solid, as their ions are held in fixed positions and cannot move.

hope it helps...!!!

why does light reflecting off of a piece of paper get scattered in all directions even though it appears to be flat and smooth? (be sure to include the idea of the normal line in your explanation)

Answers

Answer:

If light meets a rough surface, each ray obeys the law of reflection. However, the different parts of the rough surface point in different directions, so the light is not all reflected in one direction. Instead, the light is reflected in all directions. This is called diffuse scattering

Explanation:

Hope this helps, please mark me as brainliest as it will help me!

A 5OKG mass is taken to the moon and the mass determined there, comment on the likely result of the measurement

Answers

Answer:

Mass will be the same

Explanation:

Mass does not change with gravity ....   WEIGHT will be different, but not mass.

By lessening the effects of friction there would be?

Answers

Lessening frictions Means it harder to stop

If a car accelerates at 6.4 m/s?
1, what will its velocity be after 9.0
seconds? (Answer to 1 decimal place)

Answers

initial velocity=u=0Acceleration=a=6.4m/sTime=t=9s

Final velocity be v

According to first equation of kinematics

v=u+atv=0+6.4(6)v=57.6m/s

What is ima of the
doorknob

Answers

Answer:

ima of the doornob is a show. they have a movie secires too

Explanation:

Explain how the intensity of the UV light varies across the Earth

Answers

Answer:

Much more UV radiation is absorbed and less reaches the Earth. UV levels are higher closer to the equator. Closer to the equator the sun's rays have a shorter distance to travel through the atmosphere and therefore less of the harmful UV radiation can be absorbed.

Explanation: Hope it helps you :)))))

Have a good day

A rock dropped down a well takes 2.5 seconds to hit the water. How far below the
top of the well is the surface of the water? [Answer to 1 decimal place)

Answers

Answer:

30.6 m

Explanation:

Given:

v₀ = 0 m/s

a = 9.8 m/s²

t = 2.5 s

Find: Δy

Δy = v₀ t + ½ at²

Δy = (0 m/s) (2.5 s) + ½ (9.8 m/s²) (2.5 s)²

Δy = 30.6 m

how many components can be realized of a vector?​

Answers

Answer:

two different components

Explanation:

Any two-dimensional vector can be conceived of as having two distinct components. The component of a single vector describes the vector's effect in a specific direction.

Describe how you come in direct contact with at least 5 of the 7 areas of the electromagnetic spectrum each day.

Answers

Answer:

Color, Radio Waves, Infrared Waves, Ultraviolet waves and Micro waves

Explanation:

you see color every day, radio signals are all around you, thats how you hear music in you car by radio, IR and UV waves both come from the sun that literally touches your skin(sun burn and tanning) and all of the waves come from the sun, you interact with a micro wave every day if you have a micro wave that uses micro waves to cook food in your microwave hence the name

Indicate the North Pole and the direction of the current in each of the wires below.

Answers

Answer:

Explanation Draw a diagram showing the direction of the magnetic field lines due to a straight wire carrying current. Also show the direction of current in the wire.

When electric current flows through a conductor, an induced EMF is created which in turn creates a magnetic field around it. The magnetic field lines form concentric circles around the conductor. The direction of the magnetic field is perpendicular to the wire and is in the direction of wrapped fingers of the right hand holding the conductor and the thumb pointing upwards indicates the direction of the current.

A magnetic field implies the existence of poles and the polarity of a current carrying conductor is north-south when the current flows in the anti-clockwise direction. When magnetic compass with the north end is brought closer to the 1st end of the conductor, the needle deflects towards the west, that is away from the conductor because the magnetic compass that is pointing in the direction of the earth's magnetic field, i.e. north- south direction repels with the north pole of current carrying conductor. Like poles repel each other. This is the fundamental principle of magnetism.

The North Pole of a magnet is the end that points towards the Earth's magnetic North Pole.

In terms of current flow, the direction of the current in a wire is determined by the flow of positive charge. To indicate the North Pole and the direction of the current in each of the wires below, we can use the right-hand rule. Here's how it works:

1. Hold the wire in your right hand with your thumb pointing in the direction of the current flow (from positive to negative).

2. Curl your fingers around the wire. The direction in which your fingers curl represents the direction of the magnetic field created by the current. 3. The direction in which your thumb points represents the North Pole of the magnet. Let's apply this rule to the wires below: Wire 1: - If the current flows from left to right in wire 1, then your thumb points to the right, indicating the North Pole of the magnet.

Wire 2: - If the current flows from top to bottom in wire 2, then your thumb points downwards, indicating the North Pole of the magnet. Wire 3: - If the current flows from right to left in wire 3, then your thumb points to the left, indicating the North Pole of the magnet. Remember, the direction of the current flow can be reversed, which would also reverse the direction of the magnetic field and the indication of the North Pole. By using the right-hand rule, you can determine the direction of the current and identify the North Pole of a magnet in a wire.

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Einstein published three major scientific papers. One of these put forward a new way of calculating the size of molecules. Another explained Brownian motion — the random dance performed by specks of dust trapped in a fluid. Einstein suggested that the tiny particles making up the fluid — its atoms or molecules — were bouncing against the specks of dust and causing the motion. These papers helped to establish the reality of atoms and molecules. Another of Einstein’s 1905 papers explained the photoelectric effect — the way that metals could emit electrons (tiny charged particles) from their surface when light was shone on them. Most scientists believed that light travelled in waves — like sound or water waves. But Einstein suggested that the photoelectric effect could be explained if light could also behave as a stream of tiny packets of energy.
(2) Einstein’s paper on the photoelectric effect helped give birth to quantum theory, and it was for this paper that Einstein received the Nobel Prize in 1922. Quantum theory led, in the 1920s and 1930s, to another revolution in physics. Physicists showed that, as well as light waves behaving like particles, particles could sometimes act as waves. This theory established “objective probability” in physics. This was the idea that completely unpredictable chance events can take place at the subatomic level. Einstein never fully accepted the prevalent interpretation of quantum theory. But, while many of these interpretations involve wild metaphysical flights of fancy, the physical results are, like those of relativity, very well established.
(3) Marrying together the two pillars of 20th century physics — relativity and quantum theory — is a central problem for physics even today. Successfully doing this may require a revolution in science similar to those begun by Newton and Einstein. There are three main interconnected driving forces for such changes in science. The first is the development of technology. Changes in technology can make new experiments possible and they also influence the problems that scientists develop an interest in. Newton was fascinated by the new machines of the 17th century. Similarly, Einstein was fascinated by electricity and magnetism. This influence also works in a negative way. The governments and multinationals that control technology are often able to dictate what is researched.
(4) The second factor driving scientific progress is the way that the dominant ideas in society change. Ideas from the broader culture can impinge upon science. Newton’s ideas were part of a revolutionary new attempt at a rational explanation of both nature and society. On the other hand, the dominant ideas in society can also limit the development of science. This is most obvious in the social sciences, where delving too deeply into how society is organized might raise difficult questions for our rulers. Less is at stake in the natural sciences. Indeed, improvements in natural sciences are vital to our rulers if they want to compete effectively with each other. But the distorted worldview of capitalism still impacts on science. Extremely narrow and specialized bodies of knowledge develop—creating problems for scientists trying to bring about the kind of sweeping revolution heralded by Einstein.
(5) Finally, science moves forward because scientists seek to develop logically consistent theories. This can push them beyond the dominant or common sense ideas of their time. Einstein’s breakthrough cannot be reduced simply to changes in technology or wider cultural and ideological shifts. Science is not simply the gathering and ordering of data about the outside world. It also requires abstraction—developing theories about the underlying laws of nature that are usually not immediately apparent. This crucial role of theory is not just a feature of the natural sciences.
(6) Einstein argued that “common sense is the prejudices acquired by age 18”. Marxist theory, which is a social science topic, challenges “common sense” political ideas. If we, according to this theory, want to change the world, we need to combine our actions with theory that digs below the surface appearance of society to understand how the system works.What is the writer’s point of view?

Answers

For the author, science is a field that does not just require the collection and ordering of data about the outside world.

According to the text, science must also be the development of theories about the invisible and non-apparent laws of nature.

What factors drive scientific progress?

For the author, progress is related to the development of technology, the cultural ideas of society, which change over time, and the logical theories that are developed by scientists.

Therefore, the author proposes a reflection on the challenges of the development of science in today's society, according to the two pillars of physics, which are relativity and quantum theory.

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A car travels a distance of 200 miles in 3.5 hours in a given trip. What is the average speed of the car in that
trip? Write the data given, equation, substitution and the answer with correct units for full credit.

Answers

Taking into account the definition of speed, the average speed of the car in the trip is 57.14 [tex]\frac{miles}{hour}[/tex].

Definition of speed

Speed is a physical magnitude that relates the displacement of an object and the time it takes to make this change in position.

So, the speed can be defined as the amount of space traveled per unit of time with which a body moves and can be calculated using the expression:

[tex]speed=\frac{displacement}{time}[/tex]

Speed has units of [tex]\frac{distance}{time}[/tex], such as [tex]\frac{meters}{second}[/tex] or [tex]\frac{miles}{hour}[/tex].

Average speed of the car

In this case, you know that:

displacement= 200 milestime= 3.5 hours

Replacing in the definition of speed:

[tex]speed=\frac{200 miles}{3.5 hours}[/tex]

speed= 57.14 [tex]\frac{miles}{hour}[/tex]

Finally, the average speed of the car in the trip is 57.14 [tex]\frac{miles}{hour}[/tex].

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help which is the balanced equation

Answers

Answer:

b

Explanation:

If two balls have the same volume, but ball A has twice as much mass as ball B, which one will have the greater density?

Answers

Answer:

A

Explanation:

Density is    mass/ volume    

     if the numerator is greater ( A) then the density is greater than B

If you apply an effort of 240N to a simple machine with a mechanical advantage of 3, what resistance force will the machine produce?

Answers

Answer:

720

Explanation:

240x3=720

3. Specify the wrong sentences.
a) young stars at this stage are called red giant. True/False
b) The stars go to the end of their lives by turning most of their hydrogen into helium. True/False
c) Helium sink inside the star, causing its temperature to rise and swelling on the outside, thus extending it. These stars "swollen (puffy)" are known as Supernova. True/False​

Answers

Answer:

a: false

b: True

c: i dont know

Explanation:

A force of 77 N is used to move a desk 1.5 m. How much work was done?
A. 75.2 J
B. 121.0 J
C. 115.5 J
D. 51.3 J​

Answers

Answer:

As we know,

work = 77 N × 1.5m

therefore 115.5 J work was done

What is the typical magnification of an ocular lens? what other magnifications are possible?.

Answers

Your scope's ocular lenses have a magnification of 10X. Magnification typically falls between 10x and 1,000x, with some versions even going up to 2000x.

What is magnification?

Magnification refers to the image's size in relation to the item that produced it.

The ratio of image length to object length, measured in planes perpendicular to the optical axis, is referred to as linear magnification.

For imaging, optical microscopes combine ocular and objective lenses. The sum of the magnifying powers of the individual lenses produces the observation magnifying power.

This typically falls between 10x and 1,000x, with some versions even going up to 2000x.

Hence, the ocular lenses of your scope are 10X magnified and magnification usually ranges from 10x to 1,000x, while some versions can reach 2000x.

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The Shanghai World Financial Center is one of the tallest buildings in the world. It features a large trapezoidal opening to allow wind to pass through. The opening is about 35 meters tall. It is about 40 meters along the bottom and 50 meters along the top. What is the approximate area of the opening?

Answers

The approximate area of the trapezoidal opening allow wind to pass through is 1575 m².

What is the area of trapezium?

The area of the trapezium is the product of height and mean of the top and bottom side of trapezium.

Given is the height h = 35m, the base a =40 m and top b = 50m, then the area of the trapezium is

A = (a +b / 2) x h

Substitute the value into the expression, we get

A = (40 +50/2) x 35

A = 1575 m²

Thus, the approximate area of the trapezium is 1575 m².

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A jogger has an average stride length of 140 cm and takes an average of 200 steps per minute. The jogger's average speed would be

Answers

From the calculations, the speed of the jogger is calculated as 4.7 m/s.

What is speed?

The term speed refers to the ratio of distance covered to time taken. In this case we know that;

steps per minute  = 200 steps per minute.

1 stride length = 140 cm

Distance covered in 200 strides = 200 * 140 = 28000 cm or 280 m

time taken = 1 minute or 60 seconds

Speed of the jogger = 280 m/60 seconds = 4.7 m/s

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Which of the following would cause the greatest increase in gravitational
force between two objects?
OA. Reducing the mass of one object by half
OB. Doubling the mass of one object
OC. Doubling the distance between the objects
D. Halving the distance between the two objects

Answers

Explanation:

To be honest, it depends how far away the object is. half of 2 is 1, half of 1000000 is 500000 soo, but I would say doubling the mass.

A ball of mass 50 g is suspended at a height of 2.5 m from the ground. In terms of the gravitational
potential energy (GPE) and kinetic energy (KE) of the ball, which of the following statements is
correct?

A GPE is maximum, KE is 0
B. KE is maximum, GPE is 0
C. GPE = KE at this point
D. the ball has no GPE

Answers

Answer:

A

Explanation:

Finding Gravitational Potential Energy :

GPE = mass x gravitational acceleration x height

GPE = 50 x 10⁻² x 10 x 2.5GPE = 5 x 2.5GPE = 12.5 J

Finding Kinetic Energy :

KE = 1/2 x mass x (velocity)²

KE = 1/2 x 5 x 10⁻² x (0)²KE = 0

Hence, option A is correct.

Describe the mechanisms by which out-of-plane deformation in the laser forming
process can occur. As part of your answer, identify the mechanism of laser forming
which is active for the experimental results provided.

Answers

The mechanisms by which out-of-plane deformation in the laser forming process can occur include:

Temperature gradient mechanismBuckling mechanismUpsetting mechanism.

What is Temperature gradient mechanism?

This is the mechanism which involves bending the sheet to a laser light source.

The experiment shown in this scenario depicts it as one plane of the sheet can be seen raised.

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Calculate the force on a unit positive charge at p on x axis whose co-ordinates are (x=2m,y=0) due to the following two charges 1. A positive charge of 10−9C situated in air at the origin (X=0,y=0). 2. A negative charge of -2*10−9C situated on X axis(x=1m, y=0

Answers

The force on a unit positive charge at the given position is determined as 1.8 x 10⁻⁸ N.

Force on the charge

The force on the charge is calculated as follows;

F = k(q1q2)/r²

where;

r is the distance between the charges = 2 m - 1m = 1m

F = (9 x 10⁹ x 10⁻⁹ x 2 x 10⁻⁹)/(1)²

F = 1.8 x 10⁻⁸ N

Thus, the force on a unit positive charge at the given position is determined as 1.8 x 10⁻⁸ N.

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During radioactive beta-decay, a neutron (1.6749x10-27 kg) at rest decays into a very slow moving proton (1.6726x10-27 kg) and a fast electron (9.109x10-31 kg). What is the speed of the electron? (Hint: find the total energy of the electron)

Answers

The speed of the electron emitted in the radioactive beta-decay is determined as 2.186 x 10⁶ m/s.

Speed of electron

The speed of the electron is determined from the total energy of the electron.

Assuming the emitted electrons are in first energy level, E = 13.6 eV

K.E = ¹/₂mv²

v² = 2K.E/m

v² = (2 x 13.6 x 1.6 x 10⁻¹⁹)/(9.11 x 10⁻³¹)

v² = 4.777 x 10⁻¹²

v = 2.186 x 10⁶ m/s

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describe fluid friction and static friction in your own words

Answers

Answer:

friction

Explanation: The resistance that one surface or object encounters when moving over another.

Which statement best describes the relationship between atoms and nuclear forces? (2 points)
Group of answer choices

Strong nuclear forces hold the nucleus of an atom together. Weak nuclear forces hold neutrons and electrons together.

Weak nuclear forces hold the nucleus of an atom together. Strong nuclear forces are responsible for breaking down atoms.

Weak nuclear forces hold small atoms together. Strong nuclear forces hold large atoms together.

Strong nuclear forces hold the nucleus of an atom together. Weak nuclear forces are involved when certain types of atoms break down.

Answers

Answer:

D. Strong nuclear forces hold the nucleus of an atom together. Weak nuclear forces are involved when certain types of atoms break down.

Explanation:

an object is dropped from a height of 25 meters.at what velocity will it hit the ground?
a.)7.0 m/s
b.)11 m/s
c.)22m/s
d.) 49 m/s
e.) 70 m/s

Answers

Answer:

C. 22 m/s

Explanation:

Ignoring air friction....all of the Potential energy will be converted to Kinetic Energy

mgh = 1/2 m ^v^2

gh = 1/2 v^2

sqrt (2 gh) = v   =   ~ 22.1 m/s

Mr. Mock sets up a demonstration on a moving bus. The device consists of a ball attached with a string to a magnet. He uses the magnet to hang the ball from the top of the school bus as the bus turns the corner at a constant speed. What will the ball do?

A) Nothing changes.
B) The ball rolls forward slowly.
C) The ball rolls forward rapidly.
D) The ball rolls backward.

Answers

When the bus turns the corner at a constant speed, the velocity of the ball will change and the ball will rolls forward slowly.

Motion of an object at constant speed

The speed of an object is defined by magnitude only while the velocity of an object is defined by both magnitude and direction.

Suffice it to say that when an object is moving at a constant speed changes direction, its velocity will change.

Velocity of ball

The velocity of the ball can be determined by modelling the speed of the car in the bend or corner.

v = √μrg

where;

μ is coefficient of frictionr is radius of the cornerg is gravity

Since the velocity of the bus changes, the velocity of the ball will change.

Thus, when the bus turns the corner at a constant speed, the velocity of the ball will change and the ball will rolls forward slowly due to magnetic force acting as resistive force.

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