In the attachment there is a density column where there is colour

Question: tell me why is the red at the bottom of the density column if it is the least dense

In The Attachment There Is A Density Column Where There Is ColourQuestion: Tell Me Why Is The Red At

Answers

Answer 1

Answer:

I guess that the bottom part that is colored red represents the base of the container and not the actual red liquid.

Always, the densest materials/substances will go to the bottom.

One could see different things if, for example, when one of the elements changes state it becomes more or less dense (an example is the water, which has a solid phase, the ice, less dense than the liquid phase, and you can see that solid water usually floats on liquid water)

But in the text there is nothing about possible changes in temperature or changes in phase, then that option can be discarded.

The only option that makes sense is that the red part at the bottom represents the base of the column.


Related Questions

In the graph, which two regions show the particle undergoing zero acceleration and negative acceleration respectively?

A. BC shows zero acceleration, and AB shows negative acceleration.
B. AB shows zero acceleration, and CD shows negative acceleration.
C. BC shows zero acceleration, and CD shows negative acceleration.
D. AB shows zero acceleration, and BC shows negative acceleration.

Answers

Answer:

Option C. BC shows zero acceleration, and CD shows negative acceleration.

Explanation:

To successfully answer the question given above, we must know the meaning of zero acceleration and negative acceleration respectively.

Zero acceleration simply means the object is not accelerating. This implies that velocity of the object is constant (i.e unchanged) with time.

Negative acceleration simply means the object is decelerating i.e coming to rest.

Now, let us answer the question given above.

From the question given above, the following data were obtained:

1. AB indicates that the particle is accelerating because the velocity increased from A to B with time.

2. BC indicates zero acceleration because the velocity of the Particle is constant (i.e unchanged) with time.

3. CD indicates that the object is coming to rest i.e decelerating (negative acceleration) because the velocity of the object decreased from C to D with time.

From the above illustrations, we can see that only option C gives the correct answer to the question.

Answer:

Option C. BC shows zero acceleration, and CD shows negative acceleration.

Explanation:

. Which of the following is the best description about cancer cells?

Answers

Cancer cells are cells that divide relentlessly, forming solid tumors or flooding the blood with abnormal cells. Cell division is a normal process used by the body for growth and repair.

1. The center of gravity of both cats and humans is roughly in the thoracic region. However, they each bear their weight very differently. a. Which are the major, weight-bearing structures of the two skeletons

Answers

Answer:

Major, weight-bearing structures are the bones of the body that are strong and dense to be able to bear the weight of the body. The major, weight-bearing structures of cat and human skeletons are :

Human skeleton: The body weight of an individual is on his pelvic girdles that are attached to the bones of lower limbs. Thigh bones, leg bones, and bones of feet comprise lower limbs The lower limbs consist of the thigh, the leg, and the foot.

Cat skeleton:  cats are quadrupedal so it bears all the body weight on shoulders and legs that includes the Scapula and pelvis.

An ideal gas is confined to a container with constant volume. The number of moles is constant. By what factor will the pressure change if the absolute temperature triples

Answers

Answer:

1/3

Explanation:

Gay Lusaac's law states that "the pressure of a given mass of gas is directly proportional with the absolute temperature of the gas, provided that the volume is kept constant."

In formula, we say that

P/T = k

Where

P = pressure at different points

T = temperature at different points

k = constant of proportionality

From the stated formula, if we multiply the temperature by 3, we have

P/3T = k

P * 1/3T = k

And from this, we see the pressure will change by a value of 1/3

Determine whether each of the following statements is true or false.

a. An object's weight is always equal to its mass.
b. The force of tension always pushes.
c. The magnitude of the sum of the forces on an object is never greater than its weight. Explain.

Answers

Answer:

a) For an object with mass M, in a region with a gravitational acceleration g, is:

W = M*g

Then the weight is g times the mass of the object, this means that the weight is not always equal to the mass of the object, this first statement is false.

For example, in Earth the gravitational acceleration is 9.8m/s^2

Then there is no object in Earth with a weight equal to its mass.

b) The force of tension can be the force in a piece of string that is holding an object with mass M.

The force of tension will be always pointing in the direction to the "center" of the string, then it does not push, the tension force "pulls"

The statement is false.

c) we know that the weight is:

W = M*g

This is a force, that for an object that is in the air, will pull the object back to the ground.

Suppose that we also have that object attached to a string, and the object is in the air, now the object starts to fall due to its weight and we also pull down with the string, then the total force pulling down will be the weight plus the tension of the string, then we will have a force larger (in magnitude) than the weight, which means that the statement is false.

Two particles, an electron and a proton, move in a circular path in a uniform magnetic field of intensity B=1.23 T. Find the ratio between the time period of the proton Tp to the electron Te (i.e., find 'p)

Answers

Answer:

The ratio of the time period of the proton to the electron is 1835.16.

Explanation:

Given that,

Two particles, an electron and a proton, move in a circular path in a uniform magnetic field of intensity B=1.23 T

We need to find the ratio between the time period of the proton Tp to the electron Te.

The time period in magnetic field is given by :

[tex]T=\dfrac{2\pi m}{qB}[/tex]

For proton, time period is :

[tex]T_P=\dfrac{2\pi m_P}{q_pB}\ ....(1)[/tex]

For an electron, the time period is :

[tex]T_e=\dfrac{2\pi m_e}{q_eB}\ ....(2)[/tex]

From equation (1) and (2) :

[tex]\dfrac{T_p}{T_e}=\dfrac{\dfrac{2\pi m_p}{q_pB}}{\dfrac{2\pi m_e}{q_eB}}\\\\As\ q_e=q_p\\\\\dfrac{T_p}{T_e}=\dfrac{m_p}{m_e}\\\\=\dfrac{1.67\times 10^{-27}}{9.1\times 10^{-31}}\\\\=1835.16[/tex]

So, the ratio of the time period of the proton to the electron is 1835.16.

What is the average reaction time of people

Answers

Answer:

the average reaction time is 0.25 seconds.

your answer is 0.25 seconds

for audio stimulus, it’s 0.17 and 0.15 for touch stimulus

hope this helps :)
brainliest?

What is the difference between static frication and kinetic friction​

Answers

static friction is acting on stationery object (rest) but kinetic friction acting on a moving body.

The other one is static friction oppose the object to start a motion so it force is great than kinetic friction

A ball has a mass of 250g. The ball is kicked and this applies a force 15 N to the ball, as shown in the diagram. How much does the ball accelerate by in the direction of the kick?

Answers

Answer:

0.06 m/s²

Explanation:

force= mass × acceleration

acceleration= force / mass

acceleration= 15/250= 0.06 m/s²

hope it helps! please mark me brainliest..

Have a good day ahead

The acceleration of the ball in the direction of the kick will be  600 m/[tex]s^{2}[/tex]

We have a Ball.

We have to determine the acceleration of the ball in the direction of the kick.

What is Force?

The product of mass and acceleration of a body is called force.

Force = Mass x Acceleration.

According to the question, we have -

Mass = 250 g = 0.025 Kg

Force = 15 N

Then, the acceleration of the ball in the direction of the kick will be -

F = m x a

a = F / m

a = 15 / 0.025 = 600 m/[tex]s^{2}[/tex]

Hence, the acceleration of the ball in the direction of the kick will be  600 m/[tex]s^{2}[/tex]

To solve more questions on Force, visit the link below-

brainly.com/question/22240622

#SPJ2

Dee Liverance shoots an arrow out of her bow. The string is stretched 57 cm, and when
released the arrow leaves the bow in 0.17 s. What is the acceleration of the arrow?

Answers

Answer:

Mr. Dececco will not be happy

Explanation:

I'll give you a hint, the answer starts with the number 3. Use the kinematics equation of  [tex]delta\ x =v_{0}t+ \frac{1}{2}at^{2}[/tex]

What is the formula to finding your target heart rate.

Answers

i gotchu i believe it’s multiplying percent intensity by MHR (maximum heart rate) so if your percent intensity is 80 your formula would be

THR= MHR x 0.80

:)

An ideal step-down transformer is needed to reduce a primary voltage of 120 V to 6.0 V. What must be the ratio of the number of turns in the secondary to the number of turns in the primary

Answers

Answer:

[tex]N_s : N_p = 20 : 1[/tex]

Explanation:

From the question we are told that

    The primary voltage is  [tex]V_p = 120 \ V[/tex]

     The secondary voltage is  [tex]V_s = 6 \ V[/tex]    

     

Generally from the transformer equation we have that

        [tex]\frac{V_p}{V_s} = \frac{N_p}{N_s}[/tex]

So

       [tex]\frac{120}{6} = \frac{N_p}{N_s}[/tex]

=>      [tex]\frac{N_p}{N_s} = 20[/tex]

Therefore the ratio of the number of turns in the secondary to the number of turns in the primary is  

       [tex]N_s : N_p = 20 : 1[/tex]

An airplane is flying through a thundercloud at a height of 2000 m (This is a very dangerous thing to do because of updrafts, turbulence, and the possibility of electric discharge.) If there is a charge concentration of 40 C at height 3000 m with the cloud and -40 C at height 1000 m, what is the electric field at the aircraft

Answers

Answer:

[tex]400000\ \text{N/C}[/tex]

Explanation:

[tex]q_1[/tex] = Charge at 3000 m = 40 C

[tex]q_2[/tex] = Charge at 1000 m = -40 C

[tex]r_1[/tex] = 3000 m

[tex]r_2[/tex] = 1000 m

k = Coulomb constant = [tex]9\times10^9\ \text{Nm}^2/\text{C}^2[/tex]

Electric field due to the charge at 3000 m

[tex]E_1=\dfrac{k|q_1|}{r_1^2}\\\Rightarrow E_1=\dfrac{9\times 10^9\times 40}{3000^2}\\\Rightarrow E_1=40000\ \text{N/C}[/tex]

Electric field due to the charge at 1000 m

[tex]E_2=\dfrac{k|q_2|}{r_2^2}\\\Rightarrow E_2=\dfrac{9\times 10^9\times 40}{1000^2}\\\Rightarrow E_2=360000\ \text{N/C}[/tex]

Electric field at the aircraft is [tex]E_1+E_2=40000+360000=400000\ \text{N/C}[/tex].

To travel at a constant speed,a car engine provides 24 KW of useful powers. The driving force on the car is 600N.AT what speed does it travel? A 2.5 B 4.0 C.25 D 40

Answers

Answer: D. 40

Explanation:

Power = Force * Velocity

Force = 600N

Power needs to be converted to Watts:

= 24 * 1,000

= 24,000 W

24,000 = 600 * Velocity

Velocity = 24,000/600

= 40 m/s

The cars in a soapbox derby have no engines; they simply coast downhill. Which of the following design criteria is best from a competitive point of view? a. The car's wheels should b. have large moments of inertia be massive c. be hoop-like wheels rather than solid disks d. have small moments of inertia

Answers

Complete question is;

The cars in a soapbox derby have no engines; they simply coast downhill. Which of the following design criteria is best from a competitive point of view?

The car's wheels should;

A. have large moments of inertia

B. be massive

C. be hoop-like wheels rather than solid disks

D. have small moments of inertia

Answer:

D. The car's wheels should have small moments of inertia

Explanation:

They are simply cast downhill due to no engine and thus the solid wheels will have very small moments of inertia and will therefore accelerate at a faster rate.

Looking at the options, the correct one that corresponds to the description I just made is Option D.

The car's wheels should have small moments of inertia.

What is Inertia?

This is defined as the resistance of any physical object to a change in its velocity.

We told they were cast downhill due to no engine and the solid wheels having very small moments of inertia causing increase in acceleration depicts option D which was why it was chosen.

Read more about Inertia here https://brainly.com/question/1140505

My dad gifted me a calculator. I have observed that very small cells are used in a calculator. What are these cells called and what are their main advantage?​

Answers

The cells are called insibatss, I think I spelled that right but

alpha and beta rays origin is same

Answers

Answer:

Alpha particles carry a positive charge, beta particles carry a negative charge, and gamma rays are neutral. An alpha particle is made up of two protons and two neutrons bound together. Beta particles are high energy electrons. Gamma rays are waves of electromagnetic energy, or photons.

Assume the mass of a shuttlecraft is 2,200 kilograms [kg]. If the shuttlecraft requires 3 minutes [min] to rise from the surface of the Moon to an altitude of 19 kilometers [km], and the shuttle's engine is rated at 500 kilowatts [kW], what is the efficiency of the engines

Answers

Answer:

The efficiency of the engine is 75.94 %

Explanation:

Given;

mass of the shuttlecraft, m = 2,200 Kg

time required by the shuttlecraft, t = 3 minutes = 180 s

height risen by the shuttle, h = 19 km = 19,000 m

Input power of the shuttle, Pi = 500 kW = 500,000 W

The potential energy due to height risen by the Shuttle on Moon surface is given as;

E = mgh

where;

g is the acceleration due to gravity on moon, = ¹/₆ x 9.81 m/s² = 1.635 m/s²

E = 2200 x 1.635 x 19,000

E = 68343000 J

Output power of the shuttle, is given as  Energy / time

Output power = (68343000) / (180)

Output power = 379,683.33 W

The efficiency of the shuttle is given as;

Efficiency = (Output power) / (Input power)

Efficiency = (379,683.33) / (500,000)

Efficiency = 0.7594

Efficiency(%) = 75.94 %

Therefore, the efficiency of the engine is 75.94 %

earth has a radius of 6370 km what is earth's mass?

Answers

Answer:

approx 6 × 10^24 kg is earth's mass

Is the amount of stretch of the springs proportional to the hanging mass? Explain briefly.



Derive a theoretical expression to find k-equivalent for springs in parallel and springs in series.

Answers

Answer:

When connected in parallel, the extension of both springs is the same, and the total elastic force will be equal to the sum of the forces in each spring: x=x1=x2,F=F1+F2. F=F1+F2,⇒kx=k1x1+k2x2=(k1+k2)x,⇒k=k1+k2.

Yes. The amount of stretch of a spring is proportional to the hanging mass.

According to Hooke's Law, the restoring force of the spring F is:

                   F = -kx

          k is the spring constant and x is the stretch of spring.

The restoring force F is in opposite direction of the weight of the hanging mass which is mg

                  ⇒ F = -mg

                     mg = -kx

                     x = mg/k

Hence x, the stretch of the spring is directly proportional to the hanging mass.

(i) If two springs are connected in parallel, their k- equialent is

                     [tex]k= k_{1}+k_{2}[/tex]

(ii) If two springs are connected in series, their k- equialent is

                    [tex]\frac{1}{k}=\frac{1}{k_{1} } +\frac{1}{k_{2} }[/tex]

Learn more about Hooke's Law:

https://brainly.com/question/2077015

7. A beam of light converges at a point P. Now a lens is placed in the path of the convergent
beam 12cm from P. At what point does the beam converges if the lens is a) a convex lens of
focal length 20cm and b) a concave lens of focal length 16cm.​

Answers

Answer:

Lens at a distance = 7.5 cm

Lens at a distance = 6.86 cm  (Approx)

Explanation:

Given:

Object distance u = 12 cm

a) Focal length = 20 cm

b) Focal length = 16 cm

Computation:

a. 1/v = 1/u + 1/f

1/v = 1/20 + 1/12

v = 7.5 cm

Lens at a distance = 7.5 cm

b.  1/v = 1/u + 1/f

1/v = 1/16 + 1/12

v = 6.86 cm  (Approx)

Lens at a distance = 6.86 cm  (Approx)

convert 144 km/h to m/s​

Answers

Answer:

40m/s

Explanation:

144km/h

1km=1000m

1hr=3600secs

144×1000/3600=

40m/s

Remaining Time: 1 hour, 49 minutes, 34 seconds.
Question Completion Status:
QUESTION 8
If the magnification is calculated to be +0.5 in a particular situation, what does that tell you about the image?
O A. It is bigger by 0.5
OB
It is half the size of the object.
O C. It is twice the size of the object.
O D. It is smaller by 0.5
O E. It tells you nothing about the image.
QUESTION 9​

Answers

Explanation:

i think C . it is twice the size of the object

A horizontal force of 150 N is used to push a 38.0 kg packing crate a distance of 6.85 m on a rough horizontal surface. If the crate moves at constant speed, find each of the following.
a) find the work done by the 150N force:
b) find the coefficient of kinetic energy between the crate and rough surface

Answers

Answer:

0.40

Explanation:

a) Work done is expressed as

W = Force × distance

Given.

Force = 150N

Distance = 6.85m

Workdone = 150×6.85

Work done = 1027.5Joules

b) According to Newton's second law

\sumFx = ma

Fm - Ff = ma

Since speed is constant, acceleration us zero

Fm - Ff = 0

Fm = Ff = nR

Fm is the moving force

Ff is the frictional force

n is the coefficient of kinetic energy between the crate and rough surface

R is the reaction

From the formula;

Fm = nR

n = Fm/R

n = Fm/mg

n = 150/38(9.8)

n = 150/372.4

n = 0.40

Hence the coefficient of kinetic energy between the crate and rough surface is 0.40

The two sleds shown below are about to collide. If they stick together in the collision, what will happen after the collision? (In this collision, there is no friction
between the sleds and the snow.)
A. The two sleds will move to the left.
O B. The two sleds will move to the right
O C. The two sleds will be motionless in the middle.
O D. There is not enough information to know which sled will be pushed backward,
om

Answers

Answer:

B. The two sleds will move to the right.

Explanation:

I majored in physics

Answer:

b

Explanation:

A tennis player tosses a tennis ball straight up and then catches it after 1.25 s at the same height as the point of release.

a. What is the acceleration of the ball while it is in flight?
b. What is the velocity of the ball when it reaches its maximum height?
c. Find the initial velocity of the ball.
d. Find the maximum height it reaches.

Answers

Answer:

A. 9.8 m/s²

B. Zero

C. 6.125 m/s

D. 1.91 m

Explanation:

From the question given above, the following data were obtained:

Time (T) spent in the air = 1.25 s

A. Determination of the acceleration of the ball.

From the description given in question above, the motion of the tennis ball is motion under gravity. Hence, the ball will experience an acceleration due to gravity of 9.8 m/s²

B. Determination of the velocity at maximum height.

Maximum height is the greatest point reached by the tennis ball above the ground. At maximum height, the velocity of the tennis ball is zero since it has no further force to propel it upward.

C. Determination of the initial velocity of the ball.

We'll begin by calculating the time taken to reach the maximum height. This can be obtained as follow:

Time (T) spent in the air = 1.25 s

Time (t) to reach the maximum height =?

T = 2t

1.25 = 2t

Divide both side by 2

t = 1.25 / 2

t = 0.625 s

Finally, we shall determine the initial velocity of the ball. This can be obtained as follow:

Time (t) to reach the maximum height = 0.625 s

Acceleration due to gravity (g) = 9.8 m/s²

Final velocity (v) = 0 (at maximum height)

Initial velocity (u) =?

v = u – gt (since the ball is going against gravity)

0 = u – (9.8 × 0.625)

0 = u – 6.125

Collect like terms

0 + 6.125 = u

u = 6.125 m/s

Thus, the initial velocity of the ball is 6.125 m/s

D. Determination of the maximum height.

Acceleration due to gravity (g) = 9.8 m/s²

Final velocity (v) = 0 (at maximum height)

Initial velocity (u) = 6.125 m/s

Maximum height (h) =?

v² = u² – 2gh (since the ball is going against gravity)

0² = 6.125² – (2 × 9.8 × h)

0 = 37.52 – 19.6h

Collect like terms

0 – 37.52 = – 19.6h

– 37.52 = – 19.6h

Divide both side by – 19.6

h = – 37.52 / – 19.6

h = 1.91 m

Thus, the maximum height reached by the ball is 1.91 m

I’m in a test and I’m sort of being timed here’s a photo of question

Answers

Answer: D.

Explanation:

Answer:

i think the answer is b

Explanation:

playing sports often require both

*WILL MARK BRAINLIEST*

A glass window (n = 1.52) has a
uniform layer of ice on it (n = 1.31).
What is the critical angle for a ray
trying to pass from glass to ice?
(Water n = 1.33, Air n = 1.00)
(Unit = deg)

Answers

Answer:

1.52

Explanation:

Answer: 59.5 deg

Explanation:

I got it right on acellus ✅

A 2000 kg car moving at 100 km/h crosses the top of a hill with a radius of curvature of 100 m. What is the normal force exerted by the seat on the driver if the mass of the driver is 60 kg?

Answers

Answer:

The normal force the seat exerted on the driver is 125 N.

Explanation:

Given;

mass of the car, m = 2000 kg

speed of the car, u = 100 km/h = 27.78 m/s

radius of curvature of the hill, r = 100 m

mass of the driver, = 60 kg

The centripetal force of the driver at top of the hill is given as;

[tex]F_c = F_g - F_N[/tex]

where;

Fc is the centripetal force

[tex]F_g[/tex] is downward force due to weight of the driver

[tex]F_N[/tex] is upward or normal force on the drive

[tex]F_N = F_g-F_c\\\\F_N = mg - \frac{mv^2}{r} \\\\F_N = (60 \times 9.8) -\frac{60 \ \times \ 27.78^2 \ }{100} \\\\F_N = 588 \ N - 463 \ N\\\\F_N = 125 \ N[/tex]

Therefore, the normal force the seat exerted on the driver is 125 N.

The normal force exerted by the seat on the driver if the mass of the driver is 60 kg is of 125 N.

Given data:

The mass of car is, m' = 2000 kg.

The speed of car is, v = 100 km/h = 100 × 5/18 = 27.77 m/s.

The radius of curvature of path is, r = 100 m.

The mass of driver is, m = 60 kg.

In this case, the normal force on the driver is equal to the difference between weight of the driver and the centripetal force on the driver. Then the expression is given as,

[tex]N'= W - F\\\\N '= mg-\dfrac{mv^{2}}{r}[/tex]

Solving as,

[tex]N' = (60 \times 9.8)-\dfrac{60 \times 27.77^{2}}{100}\\\\N' = 125\;\rm N[/tex]

Thus, we can conclude that the normal force exerted by the seat on the driver if the mass of the driver is 60 kg is of 125 N.

Learn more about the centripetal force here:

https://brainly.com/question/14249440

Answer all these questions correctly and will mark brainliest!

1. In Football a field goal is kicked for how many points?

2. Football a touch down is worth how many points?

3. What part of the body can a goalie in soccer use that no one else can?

4. How many quarters are in a football game?

5. How many players are on the field in football?

6. Who invented basketball?

7. Who invented the game Nukem?

8. In volleyball can a ball (Including serve) be played off of the net?

9. When did basketball become an Olympic sport?

10.How many quarters are in a football game?
Inappropriate answers will be reported

Answers

Answer:

1. 3 points

2. 6 points

3. goalkeeper

4. four quarters

5. eleven players

6. James Naismith

7. Duke nukem ( I'm not sure)

8. no

9. 1936

10. four

HOPE IT'S HELP :)

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