a particle is constrained to move along a straight line through O.
it starts initially at D, which is a fixed distance from O in the positive direction&moves at a constant velocity of 4ms^-1 for 15 sec. until; it is 100m from O for a furhter 25 sec, after which it travels in the opposite direction for 20 sec.
the total distance is 180m.

How far from O does the particle stop?
how do i draw a velocity–time graph?
and what is the final displacement of the particle from its initial position? ...?

Answers

Answer 1
Final answer:

The particle ends up 20 meters away from point O in the direction opposite to its initial movement, with a net displacement of -20 meters from its initial position. A velocity-time graph for the particle's motion would show constant velocities in positive and negative directions, with a stationary phase in between.

Explanation:

The situation described involves a particle's motion along a straight line with a series of movements at different speeds and directions. To solve this question, we break down the motion into segments and analyze each part to determine the final position and displacement of the particle.

The particle moves at a constant velocity of 4 m/s for 15 seconds, covering a distance of 60 m (4 m/s * 15 s).Afterwards, it remains 100m away from O for 25 seconds, which doesn't affect its position.Finally, it moves in the opposite direction for 20 seconds. Without the velocity of this movement specified, we assume it continues at the previously stated velocity of 4 m/s, thus moving 80 m backwards (4 m/s * 20 s).

The total movement towards O (+ direction) is 60m and then 80m away from O (- direction), resulting in the particle ending up 20m away from O in the direction opposite to its initial movement.

To draw a velocity-time graph, plot velocity on the y-axis and time on the x-axis. The graph will show a constant positive velocity of 4 m/s for the first 15 seconds, then a stationary phase (velocity = 0) for the next 25 seconds, followed by a constant negative velocity of -4 m/s for the last 20 seconds.

The final displacement of the particle from its initial position is a result of its entire journey, factoring in the direction of movement. Initially, it moved away from its starting point by 60m but then moved back towards it by 80m, resulting in a net displacement of -20m (20 meters in the direction opposite to the initial positive direction).


Related Questions

Which law describes the magnetic field in a nonlinear wire?

Answers

Lenz's law describes the magnetic field of non linear wire

Answer:

Lenz's law

Explanation:

Lenz's Law states that the induced tensions will be such that they oppose the variation of the magnetic flux that produced them; However, this law is a consequence of the principle of conservation of energy.

Lenz's Law: "The sense of the currents or induced electromotive force is such that it always opposes the cause that produces it, that is, the variation of the flow."

Thanks to the already named Lenz Law, the Faraday Law was completed, so it is common to also call it the Faraday-Lenz Law to honor its efforts in the problem, Russian physicists always use the name "Faraday-Lenz Law ".

. How much work in joules is done by a person who uses a force of 25 N to move a desk 3.0 m?

Answers

We Know, W = F * s
here, F = 25 N
s = 3 m

Substitute it into the expression,
W = 25 * 3
W = 75 Joule

So, your final answer is 75 J

Hope this helps!

Final answer:

The work done by a person using a force of 25 N to move a desk 3.0 m is 75 Joules, calculated by multiplying the force and the distance.

Explanation:

The concept in question is related to work and energy, under Physics. The work done by a force is defined as the product of the force and the distance over which the force acts, given by the formula: Work = Force x Distance. This implies that the work done is equal to the value of the force (in newtons) multiplied by the distance (in meters) over which the force is applied. In this case, a force of 25 N is acting to move a desk over a distance of 3 m. The work done can be calculated by multiplying the force and the distance: 25 N x 3 m = 75 J (Joules).

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The purpose of your physics lab is to determine the specific heat of a small metal cylinder. You and your group will use calorimetry, along with a ___________ probe and the law of heat exchange, to calculate specific heat of the metal.

Answers

temperature probe
The difference in temperature is needed for this experiment.

Answer:

temperature probe

Explanation:

An ionic bond forms between sodium and chlorine when the sodium atoms______ elections

Answers

The answer is donate
Answer;

Donate

An ionic bond forms between sodium and chlorine when the sodium atoms donate elections

Explanation;Ionic bond is a type of bonds that results from transfers of electrons from one atom to another.  This types of bond is formed between metals and non metals.Metals lose electrons to form cations (positively charged ion) and non metals gain electrons forming anions, negatively charged ion. In this case, sodium donates and electron to chlorine atom, thus they both achieve a stable electronic configuration forming ions.

Which electrical protective device is designed to detect a difference in current between circuit wires and interrupt the circuit and stop the flow of electricity?
a. attach ungrounded, two-prong adapter plugs to three-prong cords and tools
b.do not operate electrical equipment when working in wet conditions
c. hold fingers on the switch while carrying a plugged-in tool
d. use gfci only when using double insulated power tools

Answers

That's the description of a ground fault circuit interrupter (GFCI).

The choices you posted seem to belong to a different question.

If a person weighs 500 N on Earth, what would she weigh on Jupiter, where the acceleration due to gravity is 26 m/s2?
Show all work leading to your answer.

Answers

1) person's mass on the Earth = 500 N / 10 m/s^2 = 50 kg
2) person's mass on Jupiter = 50 kg * 26 m/s2 = 1300 kg


The person's weigh on Jupiter is 1326.52 N.

What is weight?

Weight is a measurement of how much gravity is pulling on a body.

Weight is calculated using the formula: w = mg.

Given that weight is a force, its SI unit is also a force; hence, the SI unit of weight is the Newton (N). By examining the weight expression, we can see that it is dependent on mass and the acceleration caused by gravity.

Given that:  a person weighs 500 N on Earth.

the acceleration due to gravity on Jupiter is 26 m/s^2.

Acceleration due to gravity on Earth is 9.8 m/s^2.

Hence, mass of the person

= Weight on Earth/acceleration due to gravity on Earth

=500 N/9.8 m/s^2.

= 51.02 kg.

Her weigh on Jupiter is

= mass of the person × acceleration due to gravity on Jupiter

= 51.02 kg × 26 m/s^2

= 1326.52 N.

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A force that holds atoms together is a chemical .

Answers

A force that holds atoms together is a chemical "bond".


Chemical bonds hold atoms together and make brief associations that are fundamental to life. Sorts of chemical bonds including covalent, ionic, and hydrogen bonds and London dispersion forces.  

The chemical bond can be thought of as a power that holds the particles of different components together in such compounds. It opens up the likelihood of a huge number of mixes of the components, and the formation of a large number of new compounds.

Answer:

Therefore, A force that holds atoms together is a chemical bond.

Explanation:

Chemical bond : A chemical bond is a lasting attraction between atoms, ions or molecules that enables the formation of chemical compounds.

Everything in the world around us is made up of atoms, which are tiny pieces of matter. Different atoms stick together to form all kinds of things in the world. A chemical bond is formed when two or more atoms are attracted to each other and form a chemical compound.

Types of chemical bonds including:

Ionic Bonds

Covalent Bonds

Which process forms rivers and valleys?
A. Oceanic-oceanic convergence
B. Exposed batholiths
C. Folding, uplift, and erosion
D. Volcanoes

Answers

The Correct answer is C.  

Valleys are formed through erosion or the gradual wearing down of the land by wind and water.  There are three common types. V-shaped, U-shaped valleys,and flat floored valleys.
C is the right one I got the same answer

The universe is mostly made up of what?
a. interstellar matter
b. particles of dust and gas
c. stars
d. empty space

Answers

D. Empty Space

Imagine an apple in the center of a football field. Pretend like that apple is the nucleus of an atom. The electrons would be at the end-zones. The universe is just a butttonne of empty space

The blank is the the distance between two crests or two troughs on a transverse wave. It is also the distance between compressions or the distance between rarefactions on a longitudinal wave.

Answers

"Wavelength" is the distance between two crests or two Troughs.

It is the distance between compressions or the distance between rarefactions on a longitudinal wave too!

So, your final answer is "Wavelength".

Hope this helps!!

Answer : Wavelength.

Explanation :

A disturbance created in a medium produces wave.

In transverse wave, the particles of the medium moves in the direction perpendicular to the direction of propagation of wave.

The uppermost portion of the wave is called the crest and the lower most portion is called the trough.

In longitudinal wave, the particles of medium moves in the same direction of wave i.e. in the direction parallel to the wave.

The particles of medium in longitudinal wave forms compressions and rarefactions. In compression the density of particles in more in a particular space while in rarefaction it is less.

Hence, the wavelength is the the distance between two crests or two troughs on a transverse wave.

It is also the distance between compressions or the distance between rarefactions on a longitudinal wave.

If a resistor of R ohms is connected across a battery of E colts with internal resistance r ohms, then the power (in watts) in the external resistor is \[P = \frac{E^2R}{(R+r)^2}\]
If E and r are fixed but R varies, what is the maximum value of the power?

Answers

Final answer:

The maximum power in the external resistor R, when connected to a battery of E volts and internal resistance r, occurs when R equals r. This is a principle of electrical power in physics.

Explanation:

This is a physics question involving a fundamental concept in electrical power and Ohm's Law. The given formula P = E^2R/(R+r)^2 is the power delivered to an external resistor R when it is connected to a battery with electromotive force (E) and internal resistance (r).

To find the maximum power in the external resistor R, we would differentiate the formula with respect to R and equal it to zero (since the maximum or minimum of a function translates to a derivative of zero). By doing this, R would be equal to r.

Therefore, the maximum power is distributed to the external resistor when the value of the resistor (R) equals the internal resistance (r).

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best for growing most plants, which soil has good drainage and sufficient moisture?

Answers

The correct answer is "loam".

Answer:

Sandy Loam soil

Explanation:

The ideal properties of a soil for growing plants is to have a reasonable drainage, good amount of aeration,  pH value of the soil that allows the availability of all the elements such as potassium, iron, calcium, magnesium, nitrogen etc for growth. Loam soil has the features mentioned above and hence it makes a good choice.

Two basketball players are essentially equal in all respects. (They are the same height, they jump with the same initial velocity, etc.) In particular, by jumping they can raise their centers of mass the same vertical distance, (called H their "vertical leap"). The first player, Arabella, wishes to shoot over the second player, Boris, and for this she needs to be as high above Boris as possible. Arabella jumps at time , and Boris jumps later, at time (his reaction time). Assume that Arabella has not yet reached her maximum height when Boris jumps.


1)Find the vertical displacement , D(t) = H(a)(t) - H(b)(t) as a function of time for the interval 0 < t < t(r) , where H(a)(t) is the height of the raised hands of Arabella, while H(b)(t) is the height of the raised hands of Boris.

Express the vertical displacement in terms of H, g , and t.

Answers

Final answer:

The vertical displacement D(t) between two jumping basketball players can be found using the kinematic equation for vertical motion. By accounting for the later jump time of the second player, we can subtract their height functions to find the displacement as a function of time in terms of initial height H, gravitational acceleration g, and time t.

Explanation:

The student's question involves calculating the vertical displacement of two basketball players, Arabella and Boris, during their jumps, with Arabella starting her jump before Boris. To find the vertical displacement D(t) as a function of time, we need to consider the kinematic equation for vertical motion H(t) = V0t - (1/2)gt2, where V0 is the initial vertical velocity, g is the acceleration due to gravity (9.8 m/s2), and t is the time.

Assuming both players have the same V0 and are affected by the same g, the displacement of each player at any time t is given by:

For Arabella: H(a)(t) = V0t - (1/2)gt2For Boris: H(b)(t) = V0(t - tr) - (1/2)g(t - tr)2

Given that Boris starts jumping at time tr later than Arabella, his height function H(b) has t - tr. The vertical displacement D(t) between Arabella and Boris from 0 < t < tr can be found by subtracting the height of Boris from the height of Arabella:

D(t) = H(a)(t) - H(b)(t)

Substituting in the expressions for H(a)(t) and H(b)(t) gives us the final expression for D(t) in terms of the known quantities H, g, and t.

Gravitational force between two objects depends on

Answers

their masses and the distance between them

Answer:

SIZE AND DISTANCE BETWEEN THEM

What is transferred by electromagnetic waves?

Answers

Energy (electromagnetic radiation) is transferred through vibrations of electric and magnetic fields.

A gas is confined to a cylinder under constant atmospheric pressure, as illustrated in the following figure. When the gas undergoes a particular chemical reaction, it absorbs 829J of heat from its surroundings and has 0.69kJ of P−V work done on it by its surroundings. What is the value of ΔH for this process?

Answers

Final answer:

The value of ΔH for this process is 1.519 kJ.

Explanation:

To calculate the value of ΔH for a process, we need to consider the heat absorbed or released and the work done on or by the system.

In this case, the gas absorbs 829J of heat from its surroundings and has 0.69kJ of P−V work done on it by its surroundings.

The ΔH for this process can be calculated as ΔH = q + w, where q represents the heat absorbed or released and w represents the work done on or by the system. Therefore, ΔH = 0.829 kJ + 0.69 kJ = 1.519 kJ.

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When a substance undergoes a phase change it still has a definite....

Answers

It still has a definite temperature.

When a 58g tennis ball is served, it accelerates from rest to a constant speed of 36 m/s. The impact with the racket gives the ball a constant acceleration over a distance of 35 cm. What is the magnitude of the net force acting on the ball?

Answers

We first calculate the acceleration on the ball using:
2as = v² - u²; u = 0 because ball is initially at rest
a = (36)²/(2 x  0.35)
a = 1850 m/s²
F = ma
F = 0.058 x 1850
= 107.3 Newtons

Final answer:

The net force exerted on a tennis ball being served, which accelerates from rest to 36 m/s over a distance of 35 cm, is approximately 107.05 N.

Explanation:

To determine the magnitude of the net force acting on a tennis ball being served, we first need to calculate the acceleration of the ball. With an initial speed (vi) of 0 m/s, a final speed (vf) of 36 m/s, and a distance (d) of 0.35 m over which the acceleration occurs, we can use the kinematic equation vf^2 = vi^2 + 2ad to solve for acceleration (a).

vf^2 = 2ad → a = vf^2 / (2d) → a = (36 m/s)^2 / (2*0.35 m) → a ≈ 1845.71 m/s2.

Using this acceleration and the mass of the ball (m), we can then apply Newton's second law, Fnet = ma, to find the net force. The mass of the tennis ball is 0.058 kg (58 g). Thus, Fnet = ma = 0.058 kg * 1845.71 m/s2 → Fnet ≈ 107.05 N.

So, the net force exerted by the racket on the tennis ball is approximately 107.05 N.

A main sequence star cools and expands. It must be entering which stage?
A. white dwarf
B. black dwarf
C. red giant
D. neutron star ...?

Answers

If a main sequence star is cooling and expanding, it is entering the red giant stage. This means that the star has burned up all of it's hydrogen and is now starting to burn its helium making it cooler.

As the wave interacts with a wall, which kind of wave interaction is shown?
absorption
diffraction
refraction
reflection

Answers

 The answer would be a reflection. This is because, the color of an object is actually the wavelengths of the light reflected while all other wavelengths are absorbed. Color, in this case, refers to the different wavelengths of light in the visible light spectrumperceived by our eyes. The physical and chemical composition of matter determines which wavelength (or color) is reflected.

The kind of wave interaction shown here is reflection.

What is meant by reflection ?

Reflection is the defined as the phenomenon by which a wave bounces back when it his on a medium or a plane.

Here,

The wave is shown as incident on the wall after that it is bounced back from the surface of the wall. Since, the wave is bounced back from the surface, we can say the wave interaction happened here is reflection. The surface of the wall here acts as the reflecting surface.

The wave that incident on the surface of the wall is called the incident wave. The wave that bounced back from the surface is called reflected wave.

If we draw a perpendicular line on the reflecting surface, it can be called the normal.

According to law of reflection, the incident wave, the reflected wave and the normal, all of them lies in the same plane. Here we can see that all of them are on the same plane. So, the law of reflection is valid in this situation.

Also, here only the direction of the wave is changed, which is the property of reflection.

Hence,

The kind of wave interaction shown here is reflection.

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Which of the following statements is true about the nature of light?

A. Light behaves entirely as a particle
B. Light has properties of both particles and waves
C. Light behaves entirely as a wave
D. Light travels as a wave but does not carry energy ...?

Answers

If you build an experiment that responds to particles and shine light
into it, the light behaves like a stream of particles.

If you build an experiment that responds to waves and shine light
into it, the light behaves like a stream of waves.

B. Light has properties of both particles and waves

Answer: The correct answer is "Light has properties of both particles and waves".

Explanation:

Light shows dual nature. It behaves as particle as well as waves.

Photoelectric effect is the phenomenon in which there is an emission of the electrons when the light of the particular frequency is incident on the surface of the metal.

The particle nature of the light is shown by photoelectric effect.

Reflection: Reflection is the phenomenon in which the light wave gets reflected from the surface without getting transmitted. It bounces back from the surface.  

The wave nature of the light is shown by reflection.

Therefore, the correct option is (B).

Temperature measures:
a. the kinetic energy of the random motion of molecules in an object.
b. the kinetic energy of the average motion of molecules in an object.
c. the potential energy of an object.
d. the motion of an object.

Answers

Final answer:

Temperature measures the average kinetic energy of the motion of molecules within an object. This means the faster the average molecular motion, the higher the temperature.

Explanation:

The temperature of an object primarily measures

b. the kinetic energy of the average motion

of molecules in an object. The

kinetic energy

is the energy of motion. Every molecule in an object is in motion and hence possesses some kinetic energy. This motion could be translational (moving from one place to another), vibrational (moving back and forth), or rotational (spinning). The more kinetic energy they have, the faster they are moving, and the higher the temperature of the object. It's important to note that we are talking about the

average

kinetic energy per molecule, and not the total kinetic energy of all the molecules, as different molecules might be moving at different speeds.

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When motion IS changing directions, acceleration is the rate at which ________changes, but when motion is NOT changing direction, acceleration may be expressed as the rate at which ________ changes.



A. speed, time
B. velocity, speed
C. elapsed time, average speed


...?

Answers

The best and most correct answer among the choices provided by your question is the second choice or letter B.

When motion IS changing directions, acceleration is the rate at which velocity changes, but when motion is NOT changing direction, acceleration may be expressed as the rate at which speed changes.

I hope my answer has come to your help. Thank you for posting your question here in Brainly. We hope to answer more of your questions and inquiries soon. Have a nice day ahead!

Acceleration is the rate at which velocity changes when direction is involved, and the rate at which speed changes when there is no directional change.

When motion is changing directions, acceleration is the rate at which velocity changes, but when motion is not changing direction, acceleration may be expressed as the rate at which speed changes.

Acceleration is defined as the time rate of change of velocity, which includes both the magnitude and direction of the velocity vector. Therefore, when an object changes its direction, even if maintaining a constant speed, it is still undergoing acceleration because its velocity vector is changing. However, when the direction is constant and only the speed changes, acceleration refers to the rate of this change in speed.

What force is needed to give a 4.5 kg bowling ball an acceleration of 9 m/s^2?

Answers

force=mass x acceleration (in their respective units... N=Kg x m/s²

F=4.5 x 9
F=40.5 Newtons

why are the places with high temperature found at the equator ?

Answers

Places with high temperatures are found at the equator because the equator never is tilted away the from the sun, unlike other parts of the world.
Over the course of a year, the equator is the latitude that receives
the most direct solar rays for the most amount of time.

BUT . . .

The places on Earth where the highest temperatures have been
recorded are NOT on the equator.

how many moles are in 95 g of Na?

Answers

1.8 mol of Na. hope this helps
To convert grams to moles for Na you take the amount given (95 grams) and divide it by the molar mass of the element. (molar mass of Na is 22.9898) and that's how you get the number of moles (4.13)

What is the basis for analyzing an energy transfer diagram? The mechanical energy input and output must be equal.  Heat must always be the largest output. The sum of all outputs must equal the input.  Electrical energy is an input but not an output.

Answers

An Energy Transfer Diagram is also known as Sankey diagram and this shows the input energy taken in and the transformation of the output energy in another form. Therefore the basis for analyzing an energy transfer diagram would be the sum of all outputs must equal the input. Therefore, it is the third option. Hope this answer helps.

Answer:

The sum of all outputs must equal the input.

Explanation:

Which of the following conversion factors would you use to change 18 kilometers to meters?
A.) 1,000 m/1 km
B.) 1 km/1,000 m
C.) 100 m/1 km
D.) 1 km/100 m

Answers

use choice B. 1 km / 1000 m 

from what result that 18 km = 18 000 m 

hope helped 

Answer:

The answer is A) 1,000 meters = 1 Kilometer.                                                        

Explanation:

To convert 18 Kilometers into meters, one would have to  multiply the figure given in Kilometer by 1000.

Therefore we have 18 x 1000

= 18,000.

So 18 Kilometers is also 18,000 meters when converted.

Cheers!

According to the big bang theory, the universe was once a very and hostile place.

a.cold
b.restless
c.hot

Answers

According to the big bang theory, the universe was once a very C. hot and hostile place, and it expanded rapidly. This rapid expansion was the very reason it eventually cooled down and eventually got to its present state where all the planets and galaxies and what not were created. 

What might you have if you dont feel well?

Answers

you may have a cold if you do not feel well, depends on the symptoms
you will have medicine
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