What is meant by the phrase "a consistent method of measurement"?
A. All measurements are in SI units.
B. Every measurement is exactly the same numerical value.
C. The same person performs all measurements.
D. Measurements are taken in a way that is the same every time.

Answers

Answer 1

Answer:

D. Measurements are taken in a way that is the same every time

Explanation: I took the quiz and got it right.


Related Questions

Diagram
atomic number: 9
mass number: 19
Fill in the blanks
with information
on a neutral
fluorine atom
À
to find the number of neutrons
in the nucleus, subtract the
atomic number from the mass
number.
# of protons:
# of neutrons:
# of electrons:
# of positive charges:
# of negative charges:
Total charge of the atom:
#valence electrons:

Answers

I hope this help
If mass # 19.97 you change it 20 why because 7 and 9
I hope you understand it

how do the coils impact the strength of the magnetic fieldhow do the coils impact the strength of the magnetic field

Answers

A wire coil is an electrical conductor with one or more turns designed to produce a magnetic field. This is commonly used to increase the strength of a magnetic field. The more turns of wire on the coil, the stronger the magnetic field will be.

The two characterists of stars shown on an H-R diragram are absolute brightness
and

Answers

Surface temperature im quite certain

2. A 2 kg mass has an acceleration of 3 m/s2. What is the force of the mass?

Answers

Answer: 6N

Explanation:

F=ma

F = 2kg*(3 m/s^2)

F = 6 kg*m/s^2

[kg*m/s^2 = 1 Newton]

F = 6 N

A treasure map directs you to start at palm tree
and walk due north for 15.0 m. You are then to turn
90° and walk 22.0 m; then turn 90° again and
walk 5.00 m.
Give the distance from the palm tree,and the direction to north, for each of the four possible locations of the treasure .

Answers

The direction of the 90° turns are the possible directions used for the calculations

The four distances and directions are;

24.2 m, 65.6° West of North29.7 m, 42.7° East of North24.2 m, 65.6° East of North29.7m, 47.7° West of North

Reason:

Let point A represent the motion of the treasure hunter, we have:

Turning West then West;

Walking due north to location (0, 15)

Turn 90° West and walk 22.0 m to the location (-22, 15)

Turn 90° West again and walk 5.00 m. to the location (-22, 10)

The location of point A = (-22, 10)

[tex]Direction \ of \ point \ A = arctan \left(\dfrac{10}{-22} \right) \approx -24.4^{\circ}[/tex]

Direction to North = 90° - 24.4° ≈ 65.6°

Distance = √((-22)² + 10²) ≈ 24.2

Therefore, we have;

24.2 m, 65.6° West of North

Turning East then West:

Turn 90° East and walk 22.0 m to the location (22, 15)

Turn 90° West again and walk 5.00 m. to the location (22, 20)

The location of point A = (22, 20)

[tex]Direction \ of \ point \ A = arctan \left(\dfrac{20}{22} \right) \approx 42.7^{\circ}[/tex]

Direction to North = 90° - 42.3° ≈ 47.7° East

Distance = √((-22)² + 20²) ≈ 29.7

Therefore, we have;

29.7 m, 42.7° East of North

Turning East then East:

Turn 90° East and walk 22.0 m to the location (22, 15)

Turn 90° East again and walk 5.00 m. to the location (22, 10)

The location of point A = (22, 10)

[tex]Direction \ of \ point \ A = arctan \left(\dfrac{10}{22} \right) \approx 24.4^{\circ}[/tex]

Direction to North = 90° - 24.4° ≈ 65.6° East

Distance = √((-22)² + 10²) ≈ 24.2

Therefore, we have;

24.2 m, 65.6° East of North

Turning West then East:

Turn 90° West and walk 22.0 m to the location (-22, 15)

Turn 90° East and walk 5.00 m. to the location (-22, 20)

The location of point A = (-22, 20)

[tex]Direction \ of \ point \ A = arctan \left(\dfrac{20}{-22} \right) \approx -42.7^{\circ}[/tex]

Direction to North = 90° - 42.7° ≈ 47.7° West

Distance = √((-22)² + 20²) ≈ 29.7

Therefore, we have;

29.7m, 47.7° West of North

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Name nine elements that have been around so long that we don't even know when they
were discovered?

Answers

What was the first known element? Actually, there were nine elements known to ancient man. They were gold, silver, copper, iron, lead, tin, mercury, sulfur, and carbon.

Nine elements that have been known since ancient times, and their discovery dates are not precisely recorded are Gold (Au), Silver (Ag), Copper (Cu),  Iron (Fe), Lead (Pb), Tin (Sn), Mercury (Hg),  Sulphur (S) and Carbon (C).

1. Gold (Au): Gold has been used by humans for thousands of years, with evidence of its use dating back to ancient civilizations like the Egyptians, Sumerians, and Indus Valley people.

2. Silver (Ag): Like gold, silver has a long history of human use and has been mined and utilized for various purposes since ancient times.

3. Copper (Cu): Copper is one of the oldest metals known to humans, and its use dates back over 10,000 years. It was one of the first metals to be smelted and used in tools, weapons, and art.

4. Iron (Fe): Iron is another ancient element that has been used for thousands of years. Early civilizations discovered iron in meteorites and later learned to smelt it from iron ores.

5. Lead (Pb): Lead has been known to humans since ancient times and was used by the ancient Egyptians, Greeks, and Romans. It was widely used in plumbing, as well as for making containers and pigments.

6. Tin (Sn): Tin has been used by humans for thousands of years, mainly in the form of an alloy called bronze (copper-tin alloy), which was crucial for the Bronze Age.

7. Mercury (Hg): Mercury has a long history of use in various cultures for medicinal, alchemical, and decorative purposes.

8. Sulphur (S): Sulfur has been used since ancient times for various purposes, including medicine, bleaching, and as a component in sulfuric acid production.

9. Carbon (C): While the element carbon itself has always existed on Earth, the awareness of its presence and significance as an element is ancient.

These elements were used by ancient civilizations for various purposes such as jewelry, tools, construction, and religious rituals. Their discovery dates are lost in antiquity, as they have been known to humans for thousands of years.

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What is the acceleration of your car if it has a force of 8000N acting upon
it, and it has a mass of 1000kg?

Answers

Explanation:

F = m a

8000 = 1000 a

a= 8 m/s²

A mason is shot with a constant speed of 7.5 x 10²m/sinto a region, when an electric field produces acceleration on the mason of magnitude 1.5 x 1025 ms-2 directed opposite to the velocity. Find the time taken (b) the distance covered by the mason before coming to rest and (c) the time for which it remains at rest.​

Answers

Answer:

Distance, d = 0.1 m

It is given that,

Initial velocity of meson,

Finally, the meson is coming to rest v = 0

Acceleration of the meson,  (opposite to initial velocity)

Using third equation of motion as :

s is the distance the meson travelled before coming to rest.

So,

 

s = 0.1 m

The meson will cover the distance of 0.1 m before coming to rest. Hence, this is the required solution.  

The arrow is pointing to sodium’s

number of neutrons.
chemical symbol
atomic mass
combined number of electrons and protons.

Answers

Answer atomic mass

Explanation:

i took the test and got 100

what is the difference between a respirator and a ventilator

Answers

Have a Good day!! (♡_♡)

mark me as BRAINLIEST

NEED HELP!!!!

When people are sick, it is often recommended that they consume a lot of liquids, particularly water. What is the biological basis of this advice?

OPTIONS:
A.
Water will help flush toxins out of the body.
B.
Drinking will distract them from their illness.
C.
It is always easier to drink than to eat if you are sick.
D.
They are probably sick because they were dehydrated.

PLEASE NO LINKS

Answers

Answer:

A.

Explanation:

Drinking water usually helps with gaining hydration cause usually when you get sick you get weak. thats what u think though

Water will help expel toxins from the body that's why it is recommended to sick people to consume more water. Therefore, option (A) is correct.

Why is it important to stay hydrated during sick?

Proper hydration can be helpful to the skin and mucous cell membranes play a barrier to stop bacteria from entering the body when sick with a virus. Fluid can also help decrease irritation when sneezing, coughing, and even breathing.

Water can help to regulate body temperature, maintain healthy skin and joints, digest food, and help the brain function at its best. Producing requires bodily fluids, like tears and saliva, and removing waste through sweat, and urination.

Dehydration can happen when we lose a high amount of bodily fluids than we’re consuming. This can occur through bodily functions that bring the loss of fluids and electrolytes.

Therefore, it is important to stay hydrated when you are sick.

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What is the difference between thrust and applied force?

Answers

Answer:

Thrust acts on the accelerated object in the direction opposite to the applied force hence it accelerates the object in the direction opposite to the applied force. ... Its magnitude is equal to that of applied force. It always increases the velocity of the object.

Explanation:

A car on a straight road starts from rest and accelerates at 1.0 meter per second? for 10. seconds.
Then the car continues to travel at constant speed for an additional 20. seconds.
[6]
Determine the speed of the car at the end of the first 10. seconds.
m/s

Answers

Answer:

11 or 10 meters a second

Explanation:

pretty sure thats my explanation "pretty sure" like my confidence? mark me brainliest bad at spelling lol

How much work is done when 0.0042C is moved through a potential difference of 12.0V? Use W = qV
A. 2900J
B. 12J
C. 0.00035J
D. 0.050J

Answers

Answer:

Work done by charge (W) = 0.050 (Approx)

Explanation:

Given:

Charge (q) = 0.0042 C

Potential difference(V) = 12.0 V

Find:

Work done by charge

Computation:

Work done(W) = qV

Work done by charge (W) = (0.0042)(12)

Work done by charge (W) = 0.0504

A whale comes to the surface to breathe and then dives at an angle of 20.0 ∘ below the horizontal (see the figure (Figure 1)). If the whale continues in a straight line for 160 m , how deep is it? How far has it traveled horizontally?

Answers

Answer:

The question is missing something it doesn't say how fast down its going and doesn't show the figure sorry for wasting an answer

Which line on the graph represents the greatest positive acceleration?

D
A
B
C

Answers

Answer:

I think it's B, if that's wrong I apologize. You might want to do more research on it and find the correct answer if you can, if it's right then you could like my comment, so others know if not give it 1 star, keep it low lol.

Explanation:

The line that represents the greatest positive acceleration is A.

In a velocity-time graph, the slope of the line represents the acceleration. The greater the slope, the greater the acceleration. Line A has the steepest slope, so it represents the greatest positive acceleration.

Line B has a positive slope, but it is not as steep as line A. Line C has a negative slope, which means it represents negative acceleration, or deceleration. Line D is a horizontal line, which means it represents a constant velocity, or zero acceleration.

Therefore, the line that represents the greatest positive acceleration is A.

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a spiral galaxy can be described as what type of shape

Answers

Spiral galaxies are also known as twisted collection of stars and gas that have often beautiful shape and are made up of hot young stars.

There are various types of galaxies based on their shapes such as spiral, elliptical, oval etc. The spiral shaped galaxies are called spiral galaxies.

What are galaxies?

Galaxies are a groups of stars, dust and dark matter which are connected by the gravitational force. There are billions of galaxies in the universe and each containing trillions of stars. The galaxy nearest to earth is milky way.

The spiral structure that radiate from the galactic disc's core and give spiral galaxies their name. The central bulge, at the ends of which the spiral arms originate, is seen to have an additional component in the shape of a bar-like structure in about two-thirds of all spirals.

Nearly the course of the universe's history, the ratio of barred spirals to barless spirals has probably varied, going from only 10% approximately 8 billion years ago to about a quarter 2.5 billion years ago to over two-thirds of the galaxies in the observable universe at the present.

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suppose the blocks collide elastically. picking the positive direction to the right, what is the velocity of the bigger block after the collision takes place?

Answers

We have that with v_1 =v this goes to show that  the velocity of the bigger block after the collision takes place is v

From the question we are told

Suppose the blocks collide elastically. picking the positive direction to the right, what is the velocity of the bigger block after the collision takes place?

Generally the equation for Momentum   is mathematically given as

P=mv

Therefore

[tex]m_1v_2=m_2v_2[/tex]

Hence

[tex]v_1=\frac{m_2v_2}{m_1}[/tex]

Therefore

[tex]v_1=\frac{mv_2}{2m}\\\\v_1=\frac{v_2}{2}[/tex]

Hence

[tex]2v+v=v_1+v_2\\\\v_1=v[/tex]

Now

with v_1 =v this goes to show that  the velocity of the bigger block after the collision takes place is v

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15. Starting from rest, an object rolls freely down an incline that is 10 m long in 2 s. The acceleration of the
object is approximately?

Answers

Answer:

a = 5m/s^2

Explanation:

Vi=0 m/s

ΔY=10m

Δt=2s

find acceleration

With the givens and the acceleration being the only one missing, we can safely use the Δy = Vi Δt + 1/2 a (Δt)^2 formula

Plug it in and we get:

10 = 0 x 2 + 1/2 a (2)^2

10 = a2

10/2 = a 2/2

a = 5 m/s^2

I hope this helps :)

What is the kinetic energy of your car if it has a mass of 100kg and is driving
at a speed of 12m/s?

Answers

[tex]▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ { \huge \mathfrak{Answer}}▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ ▪ [/tex]

As we know,

[tex]\boxed{ \boxed{kinetic \: \: energy = \frac{1}{2} mv {}^{2} }}[/tex]

where,

m = mass = 100 kg

v = velocity = 12 m/s

let's solve for kinetic energy of car :

[tex] \dfrac{1}{2} \times 100 \times 12 \times 12[/tex]

[tex]100 \times 12 \times 6[/tex]

[tex]7200 \: \: joules[/tex]

Newton’s First Law Scenarios

Taking off from an Aircraft Carrier
The airplane accelerates from 0 to 200 mph in 1.5 seconds. Why are rear-facing passengers' feet tied down? What do their eyes feel like?




Car Accident—Car versus Tree
What happens to the driver's body when his car hits the tree at a high speed?



Car Accident: Rear-end collision
What will happen to the stationary driver who is rear-ended? What device protects him?



Football: Helmet-to-Helmet Collision
What happens to the players' brains inside their skulls?





Roller Coaster Ride
Why does your stomach feel so funny when you go down the big hill?
Why do you feel like you will fly out of your seat at the top of a hill when you are going fast?




Teacups at Disneyland
Why do the riders feel squished together if the teacups spin too fast?

Answers

Answer:Newton’s First Law Scenarios

Taking off from an Aircraft Carrier

The airplane accelerates from 0 to 200 mph in 1.5 seconds.  Why are rear-facing passengers' feet tied down?  What do their eyes feel like?

Because of the speed of the aircraft and how fast its moving  

Car Accident—Car versus Tree

What happens to the driver's body when his car hits the tree at a high speed?

Your body will get slammed forward and into the airbag  

Car Accident:  Rear-end collision

What will happen to the stationary driver who is rear-ended?  What device protects him?

His head will be forced forward that's why they have a airbag and headrests  

Football: Helmet-to-Helmet Collision

What happens to the players' brains inside their skulls?

It rattles and thats whats creates a concussion

Roller Coaster Ride

Why does your stomach feel so funny when you go down the big hill?

Because your stomach rises because of the sudden dip  

Why do you feel like you will fly out of your seat at the top of a hill when you are going fast?

Because the car has more down force  

Teacups at Disneyland

Why do the riders feel squished together if the teacups spin too fast?

Because they are pushed to the outside  

Explanation:Newton’s First Law Scenarios

Taking off from an Aircraft Carrier

The airplane accelerates from 0 to 200 mph in 1.5 seconds.  Why are rear-facing passengers' feet tied down?  What do their eyes feel like?

Because of the speed of the aircraft and how fast its moving  

Car Accident—Car versus Tree

What happens to the driver's body when his car hits the tree at a high speed?

Your body will get slammed forward and into the airbag  

Car Accident:  Rear-end collision

What will happen to the stationary driver who is rear-ended?  What device protects him?

His head will be forced forward that's why they have a airbag and headrests  

Football: Helmet-to-Helmet Collision

What happens to the players' brains inside their skulls?

It rattles and thats whats creates a concussion

Roller Coaster Ride

Why does your stomach feel so funny when you go down the big hill?

Because your stomach rises because of the sudden dip  

Why do you feel like you will fly out of your seat at the top of a hill when you are going fast?

Because the car has more down force  

Teacups at Disneyland

Why do the riders feel squished together if the teacups spin too fast?

Because they are pushed to the outside  

what type of energy results from the position of an object?

Answers

Answer:

Explanation:

Some objects have energy as a result of their shapes or positions. Energy that results from the position or shape of an object is called potential energy. Gravitational Potential Energy – potential energy related to an object's height.

A 3000-kg spaceship is moving away from a space station at a constant speed of 3 m/s. The astronaut in the spaceship decides to return to the space station by switching on engines that expel fuel so that the sum of the forces exerted on the spaceship by the expelled fuel points toward the space station. What is the magnitude of the minimum force needed to bring the spaceship back to the space station

Answers

Answer:

P = m (v2 - v1)     change in momentum

P = - m v1  if v2 is to be zero

F = P / t     change in momentum equals applied force

F = m a = - m v1 / t

a = -v1 / t     or a * t = -v1`

Any combination of a and t that is greater than v1 will bring the space station to a halt

If a is small then t must be large

Any applied force will eventually bring the ship to a halt and then begin the acceleration towards the starting point

What is the final velocity of a ball thrown downward at 10 m/s after 2 seconds?

Answers

We have that  the final velocity of a ball thrown downward at 10 m/s after 2 seconds is

V=29.6m/s

From the question we are told

What is the final velocity of a ball thrown downward at 10 m/s after 2 seconds?

Where

a ball thrown downward at 10 m/safter 2 seconds

Generally the Newton's equation for Motion   is mathematically given as

[tex]V=U+at\\\\V=U+gt\\\\V=10+9.8*2\\\\V=29.6m/s[/tex]

Therefore

the final velocity of a ball thrown downward at 10 m/s after 2 seconds is

V=29.6m/s

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Automobile manufacturers, such as Nissan and Toyota, incorporate safety features into their vehicles. Crumple zones in the engine compartment and air bags are two examples of safety technology designed to protect driver and passengers involved in a collision. How do these design features impact the formula above and the force of impact? They decrease the force of impact by providing a cushion during the impact. Smaller force = lower momentum. They decrease the force of impact by extending the time it takes to stop the driver and passenger. Longer time = less force. It takes a longer time for the velocity of the vehicle to decrease, therefore the force is less. Decrease in velocity = less force. When a car rebounds it undergoes a greater change in velocity and the force is decreased. Lower force = greater change in velocity.​

Answers

Answer:

C

Explanation:

how do atomic structures apply to the formation of stars?

Answers

Answer:

Stars create new elements in their cores by squeezing elements together in a process called nuclear fusion. First, stars fuse hydrogen atoms into helium. Helium atoms then fuse to create beryllium, and so on, until fusion in the star's core has created every element up to iron.

Explanation:

Hope this helps.

Answer:

hahahahahaha hahahahaha hahah

For the time between 5 and 9 seconds, calculate the velocity of the car.

Answers

The car's velocity is 8 m/s at t = 5 seconds. Hope this helped please mark me brainiest! :)

NEED HELP!!!!!!
Which is the BEST description of the role of glucose in the body?

OPTIONS:
A.
It moderates the heartbeat.
B.
It is food converted into fuel.
C.
It regulates body temperature.
D.
It eliminates sugar from the body.

PLEASE NO LINKS

Answers

The answer is B because of photosynthesis and cellular respiration

So for photosynthesis the plant needs

Water Oxygen Corbin dioxide to live and produces glucose/sugar and oxygen

For cellular respiration you as a human need
Oxygen and glucose and produce Corbin dioxide and ATP which is a fancy word for energy

The best description of the role of glucose in the body is that it is the food converted into fuel. Details about role of glucose can be found below.

What is cellular respiration?

Cellular respiration is the process by which living organisms obtain energy for their daily activities by breaking down food molecules in their cells.

The food ingested by living organisms is digested into the simplest form called glucose. The glucose is then broken down during cellular respiration.

During cellular respiration, glucose is broken down to produce energy (ATP), which is the fuel for metabolic activities in the body.

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V1=2 L
T1= ? degrees Kelvin
V2= 4 L
T2= 300 degrees Kelvin

Answers

Explanation:

using Charles law

V1/T1 = V2/T2

2/ T1 = 4/300

cross multiply

4 X T1 = 2 X 300

T1 = 600/4 = 150

T1 = 150°k

11 12 13 14 15 16 17 18 19 20
TIME REMAINING
01:40:56
Who described atoms as small spheres that could not be divided into anything smaller?

Bohr
Dalton
Rutherford
Thomson

Answers

Answer:

jhon Dalton described it

Explanation:

hope it works out for you

if please mark brainiest

John Dalton described atoms as small spheres that could not be divided into anything smaller.

Who was John Dalton?

John Dalton is the scientist who described atoms as small spheres that could not be divided into anything smaller. He proposed his atomic theory in 1803, which included the postulate that all matter is composed of tiny, indivisible particles called atoms. D

Dalton's theory also stated that atoms of different elements are unique in their mass and chemical properties and combine in simple whole-number ratios to form compounds. Dalton's model of the atom was a solid, indivisible sphere that was the smallest possible unit of an element.

While this model has been refined and updated with new discoveries, Dalton's contributions laid the foundation for the modern understanding of atomic structure and chemical reactions.


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