what kind of image is formed when the image distance is positive? what kind of image is formed when the image distance is negative?

Answers

Answer 1

When the image distance is positive, the image is on the same side of the mirror as the object, and it is real and inverted. When the image distance is negative, the image is behind the mirror, so the image is virtual and upright. A negative m means that the image is inverted. Positive means an upright image.

Answer 2

When the distance is positive, real image is produced. When the distance is negative, virtual image is produced.

Explanation:

Image distance is the distance between the object to the lens of the mirror. When the image distance is positive, it means that the real image is produced in the mirror. When the image distance is negative, it means that the virtual or diminished image is produced in the mirror.


Related Questions

a train travels some distance with a speed of 30km/h and returns with a speed of 45km/h. Calculate the average speed of the train.​

Answers

Answer:

let distance be D km  

total time taken, T (hrs) = D/30 + D/50  

Average speed , V = total distance/ total time = 2D/T = 2/(1/30+1/50) = 37.5 km/hr

Explanation:

Average speed = total distance / total time

= (30+45) km / 2hr

= 75 / 2

= 37.5 km/hr is the average speed of the train.

The formation of a standing wave requires _____.

constructive interference between two waves with different frequencies

interference between the incoming and reflected waves of the same frequency

two waves that have been traveling over a long distance

Answers

the formation of a standing wave requires interferencethe incoming and reflected waves of the same frequency

Answer: The correct answer is "interference between the incoming and reflected waves of the same frequency"

Explanation:

Standing wave: Standing wave will form when two waves of equal frequency travelling in an opposite direction in the same medium.  There is interference between the incoming and reflected waves of the same frequency.

These waves do not appear to move. There is an oscillation up and down in same phase. Standing wave consists of node and antinode.

Anti node: It is the location in the wave where the amplitude is minimum.

Node: It is the location in the wave where the amplitude is maximum.

Therefore, the correct option is "interference between the incoming and reflected waves of the same frequency ".

Write a hypothesis about how the number of half-lives affects the number of radioactive atoms. Use the "if . . . then . . . because . . ." format and be sure to answer the lesson question: "How does the number of radioactive atoms change over time?"



answer- If the number of half-lives increases, then the number of radioactive atoms decreases, because approximately half of the atoms' nuclei decay with each half-life.

Answers

Answer:

Explanation:

Answer:

Explanation:

The half life is the time taken for half of a radioactive substance to disintegrate.

The shorter the half life, the larger the decay constant and the faster the decay process.

For a very large half life, it would take a very long time for the radioactive nuclide to decay to half.

With each half life reached, a new set of daughter cell is formed. Atoms that have short half life would decay rapidly. Every radionuclide has its own characteristic half-life.

If the number of half-lives increases, then the number of radioactive atoms decreases, because approximately half of the atoms' nuclei decay with each half-life. With this observation, we can hypothesise and conduct experiment to support the assertion that as the number of half-lives increases then the number of radioactive atoms decreases.

Final answer:

If the number of half-lives increases, then the number of radioactive atoms decreases, because each half-life reduces the quantity of radioactive atoms by about half. This is due to the nature of radioactive decay, causing a consistent, exponential decrease over time.

Explanation:

A hypothesis about how the number of half-lives impacts the number of radioactive atoms might be: If the number of half-lives increases, then the number of radioactive atoms decreases because approximately half of the atoms' nuclei decay with each half-life.

In the concept of radioactive decay, a half-life denotes the period of time it takes for half of the atoms in a radioactive sample to decay. When there are more half-lives that pass, this indicates more time has passed, and therefore more of the radioactive atoms would have decayed. Consequently, the number of radioactive atoms lessens over time due to this continuous decay.

For example, if you started with 1000 radioactive atoms and the half-life of this particular substance is 1 year, after one year (one half-life), there would be approximately 500 radioactive atoms remaining. After two years (two half-lives), around 250 atoms would remain, and so on. Hence, it's crucial to realize that the decrease in the number of radioactive atoms is exponential, not linear.

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A cyclist travels at a constant velocity of 3.2m/s westward, then speeds up with a steady acceleration of 2.3m/s^2. Calculate the cyclist’s speed after accelerating for 5.0 s.

*also tell how to work out problem*

Answers

Answer:

14.7 m/s

Explanation:

In this problem we have

u = 3.2 m/s is the initial velocity of the cyclist

a = 2.3 m/s^2 is the acceleration of the cyclist

We want to know the cyclist speed after a time of

t = 5.0 s

So we can use the following equation:

[tex]v=u+at[/tex]

Substituting the numbers, we find

[tex]v=3.2 m/s + (2.3 m/s^2)(5.0 s)=14.7 m/s[/tex]

What are the reactants of cellular respiration? Check all that apply. carbon dioxide energy glucose oxygen water

Answers

Answer:

Glucose and Oxygen

Explanation:

Cellular respiration is the process whereby cells derives energy by the use of glucose and oxygen.

Organisms that use cellular respiration to produce their energy are known as heterotophs. They derive the glucose from food materials obtained from plant sources. They use the oxygen from the environment to liberate energy from the glucose obtained from feeding on plant materials.

Cellular respiration can be simply expressed as shown below:

GLUCOSE + OXYGEN → CO₂ + H₂O + ATP

The reactants are glucose and oxygen.

The products are CO₂, water and ATP

Final answer:

The reactants of cellular respiration are oxygen and glucose. These substances combine in a process that takes place in the mitochondria, ultimately producing ATP alongside waste products carbon dioxide, and water.

Explanation:

Cellular respiration is a fundamental metabolic process that occurs in the cells of organisms to produce energy. The reactants of cellular respiration are oxygen and glucose. Oxygen is taken into the body through the process of breathing, and glucose enters the body via the food organisms eat. These reactants are essential for the production of adenosine triphosphate (ATP), the energy currency of cells.

The equation for cellular respiration can be represented as follows: C6H12O6 + 6O2 → 6CO2 + 6H2O + Energy. This indicates that one molecule of glucose (C6H12O6) and six molecules of oxygen (O2) are transformed into six molecules of carbon dioxide (CO2) and six molecules of water (H2O), releasing energy in the process.

The main product of cellular respiration is ATP, which is generated from the energy released during the conversion of glucose and oxygen into carbon dioxide and water. The waste products, carbon dioxide and water, are byproducts of this reaction.

the weatherman reports the storm waves are about 2 meters high and 35 meters apart. What properties of waves is the reporter describing?

Answers

Answer:

Amplitude and wavelength

Explanation:

- The amplitude of a wave is the maximum displacement of the wave, measured with respect to the equilibrium position (so, for a water wave it is the maximum height of the wave relative to the equilibrium position)

- The wavelength of a wave is the distance between two consecutive crests (or throughs) of a wave. So, for a water wave, it is the distance between two consecutive waves

Therefore, in the example in the problem we have:

- 2 meters corresponds to the amplitude

- 35 meters corresponds to the wavelength

In the following lever system, what is the counter-clockwise torque?




18 Nm

240 Nm

360 Nm

480 Nm

Answers

the correct answer is 480nm

Answer:

D: 480

Explanation:

which ocean zone has the most sunlight? A. Abyssopelegic B. Bathypelagic
C. Hadalpelagic D. Mesopelagic

Answers

The answer is D, Mesopelagic.

The ocean zone that has the most sunlight is Mesopelagic. The correct option is D.

What is Mesopelagic?

The Mesopelagic zone is a scope of sea depth that beginnings from 650 feet beneath the water's surface to around 3,280 feet underneath. Light entrances from the outer layer of the sea almost scatter at this area. The most widely recognized organic entities found in the mesopelagic zone are little fish, squid, and basic shellfish.

This region receives most of the sunlight.

Thus, the correct option is D.

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A 2.50 kg flower pot is pushed out a window this is at a height of 12.0m onto a spring with a spring constant of 800.N/m. How much does the spring compress if the ball comes to a stop.

Answers

Answer:

0.86 m

Explanation:

We can solve the problem by using the law of conservation of energy.

The initial mechanical energy of the flower pot is just gravitational potential energy, given by:

[tex]E_i = U = mgh[/tex]

where

m = 2.50 kg is the mass of the pot

g = 9.8 m/s^2 is the acceleration due to gravity

h = 12.0 m is the height

When the pot hits and compresses the spring coming to a stop, all this energy is converted into elastic potential energy of the spring:

[tex]E_f = U = \frac{1}{2}kx^2[/tex]

where

k = 800 N/m is the spring constant

x is the compression of the spring

Due to the conservation of energy,

[tex]E_i = E_f[/tex]

So we can write

[tex]mgh=\frac{1}{2}kx^2\\x=\sqrt{\frac{2mgh}{k}}=\sqrt{\frac{2(2.50 kg)(9.8 m/s^2)(12.0 m)}{800 N/m}}=0.86 m[/tex]

how do you draw two vectors to represent two forces that balance each other?

Answers

If two forces "balance" each other, that means that they add up to zero.

THAT means that they must have exactly equal magnitudes and exactly opposite directions.

If you want to draw a picture of a pair of two balanced force vectors . . . .

1).  Draw two arrows with exactly the same length.

2).  Flip one of them over, so that it points in exactly the opposite direction compared to the first one.

3).  Place them tail-to-tail.

Which of the answers is most accuracy for balancing nuclear equations?

Answers

Answer:

#4

Explanation:

Final answer:

In balanced nuclear and chemical equations, the sums of the subscripts on each side of the equation and the sums of the superscripts are the same. The most useful quantity for counting particles is the mole. Steps for balancing a chemical equation involve identifying the most complex substance, balancing the atoms and polyatomic ions, and counting the numbers of atoms to ensure a balanced equation.

Explanation:

In balanced nuclear equations, the sums of the subscripts on each side of the equation are the same, as are the sums of the superscripts.

The most useful quantity for counting particles is the mole. So if each coefficient is multiplied by a mole, the balanced chemical equation tells us that 1 mole of nitrogen reacts with 3 moles of hydrogen to produce 2 moles of ammonia. This is the conventional way to interpret any balanced chemical equation.

Steps in Balancing a Chemical Equation:

Identify the most complex substance.Beginning with that substance, choose an element(s) that appears in only one reactant and one product, if possible. Adjust the coefficients to obtain the same number of atoms of this element(s) on both sides.Balance polyatomic ions (if present on both sides of the chemical equation) as a unit.Balance the remaining atoms, usually ending with the least complex substance and using fractional coefficients if necessary. If a fractional coefficient has been used, multiply both sides of the equation by the denominator to obtain whole numbers for the coefficients.Count the numbers of atoms of each kind on both sides of the equation to be sure that the chemical equation is balanced.

What happens to energy that is used to overcome friction?

Answers

It transforms into heat and gets dissipated to the surroundings in the natural way of moving from hot locations to cooler ones.

Acid compounds contain a.Oxygen B. Ion c. Hydrogen

Answers

Answer:

c hydrogen

Explanation:

The answer is Hydrogen

Which describes how sliding friction affects pushing a cereal box across a tabletop?


It is usually greater than static friction.

It acts in the direction of motion.

It equals the weight of the box.

It acts in the direction opposite of motion.

Answers

Answer:

It acts in the direction opposite of motion.

Explanation:

The sliding friction is the one offering resistance to motion of the sliding cereal box.This force is created between the box and the tabletop that are sliding against each other.The sliding friction is proportional to the weight of the cereal box when pushed on the horizontal tabletop.We can apply the Newton's second law of motion to describe this motion, where force is a product of mass and acceleration.When the object is massive, the sliding friction force experienced is high thus sliding happens slowly.

which of the following is not transparent? A. clear glass b. plastic c. water d. tracing paper​

Answers

D is the answer I’m pretty sure

An oceanic depth-sounding vessel (sonar) surveys the ocean bottom with ultrasonic sound that travels at an average of 1522m/s. How deep is the water if the time delay of the echo from the ocean floor is 2.0s?

Answers

Answer:

1522 m

Explanation:

The ultrasound wave takes t=2.0 s to travel from the vessel to the ocean bottom, and then back to the vessel.

This means that the time the wave takes to travel from the vessel to the ocean bottom is just half of this:

[tex]t=\frac{2.0 s}{2}=1.0 s[/tex]

The wave travels at a speed of

v = 1522 m/s

So, we can find the distance between the vessel and the ocean bottom by using the equation of the uniform motion, and we find:

[tex]d=vt=(1522 m/s)(1.0 s)=1522 m[/tex]

Which statement best explains acceleration?​

Answers

i’m pretty sure the answer is B

Answer:

b

Explanation:

MOST elements on the periodic table are
A) gases
B) metals
C) nonmetals
D) rare earth elements

Answers

Answer:

B

Explanation:

MOST elements on the periodic table are metals.

Answer:B

how can magnetic and electric fields be demonstrated?

Answers

Answer:

To demonstrate that an electric current (i.e., moving electric charge) generates a magnetic field, all you need do is simply place a magnetic compass next to a wire in a circuit. When current is passed through the wire, the compass will deflect, indicating the presence of a magnetic field circling the wire.

Explanation:

Electric field is always associated with magnetic field.

Explanation:

Relationship between electric and magnetic fields can be explained by the following example. Consider a wire and a magnetic compass placed close together.

When current is flowing through the wire, the needle in the magnetic compass will deflect showing some value indicating the presence of magnetic field during the experiment. This indicates that the electric field is generally accompanied with the magnetic field.

Over a span of 6.0 seconds, a car changes its speed from 89 km/h to 37 km/h. What is its average acceleration in meters per second squared (m/s2)?

Answers

Answer: Average acceleration is -2.407 [tex]\frac{m}{s^{2}}[/tex]

 

Explanation:

Average acceleration is equal to change in velocity divided by time taken

therefore, [tex]a=\frac{Vf-Vi}{t}[/tex]

=> [tex]a=\frac{37-89}{6}\times \frac{5}{18}\frac{m}{s^{2}} = -2.407 \frac{m}{s^{2}}[/tex]

A train traveling at 7.55m/s accelerates to a distance of 975m in 31.5 s. Whats the final velocity of the train?
A)227m/s
B)54.4
C)7.61
D)69.5

Answers

Answer:

B. 54.4  m/s

Explanation:

Using the equation;

S = ut + 1/2at²

Where;

v is the final velocity

u is the initial velocity,

a is the acceleration,

s is the displacement

Therefore;

975 =(7.55×31.5) + (0.5×a× 31.5²)

975 = 237.825 + 496.125a

496.125a = 737.175

a = 1.486 m/s²

But;

v = u + at

  = 7.55 m/s + (1.486 × 31.5)

   = 54.355 m/s

   = 54.4 m/s

Therefore;

The final velocity is 54.4 m/s

which is greater -7 or -3​

Answers

Answer:

-3 because its closer to 0

Explanation:

Answer:

-3

Explanation:

Because -3 is closer to 0 the closer you are to 0 in negative numbers the higher the number is

Number the steps of stellar evolution in the correct order

Answers

Answer:

1.) Nebular cloud of gas and dust.

2.) Cloud collapses under the force of its own gravitational attraction; usually triggered by a supernova.

3.)Condensed material begins to combine and form a core center, as it warms, a  protostar is formed.

4.)Other gas and matter of the nebular cloud begin to rotate around the protostar, forming a flattened disk.

5.) Stellar core heats as it grows; nuclear fusion begins and a star is born.

6.) Nuclear energy runs out; death: possible supernova.

Hope this helped you out!

2. Which describes the law of reflection?
The angle of reflection equals the angle of incidence.
The angle of reflection is greater than the angle of incidence.
The angle of reflection is less than the angle of incidence.

Answers

Answer: Choice 1

Law of Reflection

Theta(i)=Theta(r)

Angle of incidence=Angle of reflection

Which describes the law of reflection?

The angle of reflection equals the angle of incidence. The angle of reflection is greater than the angle of incidence. The angle of reflection is less than the angle of incidence. Further explanation

The laws of reflection are, the incident ray, the reflected ray and the normal to the reflection surface at the point of the incidence are lie in the same plane. The reflected ray and the incident ray are on the opposite sides of the normal.

The law of reflection states that when a ray of light reflects off a surface, then the angle of incidence is equal to the angle of reflection.  Light is known to behave in a very predictable manner.

In the diagram the ray of light that approaching the mirror is known as the incident ray (labeled I), whereas the ray of light that leaves the mirror is known as the reflected ray (labeled R) .

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Answer details

Grade:  9

Subject:  physics

Chapter:  reflection

Keywords:   the law of reflection, reflection, incidence, the angle of incidence, angle

When giving feedback to children, your message is most useful when A. making light of the situation. B. exerting power. C. giving a clear message that matches your emotion. D. using a honeyed voice.

Answers

C. is the right answer

When giving feedback to children, your message is most useful when . giving a clear message that matches your emotion.

What is feedback?

Feedback occurs when a system's outputs were being used as inputs again as part of a cause-and-effect circuit or loop. Thus, the system is said to feed back on itself. When used with feedback systems, the concept of causality must be treated.  Simple causal reasoning about a feedback system is challenging because first system affects the second, which impacts the first, creating a circular argument. Because of this, it is difficult to reason utilizing cause and effect, and it is required to look at the problem as a whole.

What is message?

A message is a brief item of communication that the source intended for a certain recipient or group of recipients to read. There are many other ways to deliver a signal, such as courier, telegraphy, carrier pigeon, and electronic bus. A broadcast's content might have been a message.

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AlBr3 + K2SO4 → KBr + Al2(SO4)3

What are the coefficients required to balance the chemical equation?
A) 1,3,6,1
B) 2,1,6,1
C) 2,3,1,1
D) 2,3,6,1

Answers

Answer: D

Explanation:

Based on the balanced equation of the reaction, the coefficients of the balanced equation are as follows; 2, 3, 6 and 1., option D.

What is the balanced equation of the reaction between aluminium bromide and potassium sulfate?

The balanced equation of the reaction between aluminium bromide and potassium sulfateis given below:

2AlBr3 + 3 K2SO4 → 6KBr + Al2(SO4)3

Therefore, the coefficients of the balanced equation are as follows; 2, 3, 6 and 1.

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Please help

78% nitrogen, 21% oxygen
Ionosphere
temperature falls to -93*C
temperature continue to rise up to 1500*C
temperature drops from 17 to -52*C
protective ozone layer
UV radiation causes temperature to rise

Answers

Answer:

Thermosphere

temperature continue to rise up to 1500*C

Ionosphere

Mesosphere

temperature falls to -93*C

Stratosphere

protective ozone layer

UV radiation causes temperature to rise

Troposphere

78% nitrogen, 21% oxygen

temperature drops from 17 to -52*C

Explanation:

Where would a positive test charge have the least potential energy?

Answers

actually the line through the midpoint and perpendicular to the line joining the two charges. that the positive and negative charges are equal in magnitude.

A positive test charge only has potential energy if there's a negative charge out there somewhere, attracting it.

As long as the positive charge is not right up close to the beckoning negative charge, it'll spring in that direction if you let it.

So the positive test charge doesn't run out of potential energy until it reaches the place of its heart's desire ... as far from other positive charges as it can get, AND up against or on top of the nearest negative charge.

A person pushes a crate up a 4-m high ramp for a distance of 18m.

a) What is the mechanical advantage of the ramp?

b) How hard does the person have to push if the crate weights 400 N

Answers

a) 4.5

The mechanical advantage of a frictionless ramp is given by:

[tex]MA=\frac{L}{h}[/tex]

where

L is the length of the ramp

h is the height of the ramp

In this problem,

L = 18 m

h = 4 m

Substituting these values into the formula, we find

[tex]MA=\frac{18 m}{4 m}=4.5[/tex]

b) 88.9 N

For a frictionless ramp, the input work is equal to the output work:

[tex]W_i = W_o\\F_i L = F_o h[/tex]

where

[tex]F_i[/tex] is the force applied by the person

L = 18 m is the length of the ramp

[tex]F_o = 400 N[/tex] is the output force, which corresponds to the weight of the crate

h = 4 m is the height of the ramp

Solving the equation for [tex]F_i[/tex],

[tex]F_i = \frac{F_o h}{L}=\frac{(400 N)(4 m)}{18 m}=88.9 N[/tex]

Like his parents, Thomas is short, stocky, and heavyset. Although he exercises regularly and eats a well-balanced meal, his body composition stays the same. Explain what factor is most likely affecting his body composition..

Answers

Answer:The factor that is most likely affecting Thomas's body composition is genetics. Heredity influences the amount of fat a person possesses, and children with heavyset parents are more likely to be heavyset.

Explanation:

sample response

The factor that is affecting his body composition is genetic makeup.

The factors that affect body composition

The body composition of an individual is the percentage of the body that is made up of fat, bone and muscles.

The percentage of each component found in an individual is determined by the following factors:

Gender,

age,

race,

nutrition,

physical activity,

hormonal status and

Genetic makeup.

The deoxyribonucleic acid (DNA) of an individual can either have little or much effect on the body composition.

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