If you push a box across the floor its "physics work" but if you push on the wall it's not. Which of the following choices best explains why?

You're not applying a force to the box but you are applying a force to the wall.
You're applying a force to the box but you are not applying a force to the wall.
The box is moving but the wall is not
The direction of the force on the box is not the same direction as the motion.

Answers

Answer 1

The reason why pushing the wall is not work is that the box is moving but the wall is not. option C

What is work in physics?

In physics, work is defined as the transfer of energy from one system to another as a result of a force acting over a distance. Work is a scalar quantity and is expressed in units of joules (J) or other units of energy.

In physics, work is considered to be positive when the force applied and the distance moved are in the same direction and negative when they are in opposite directions. Work is considered to be zero when the force applied is perpendicular to the direction of motion.

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Related Questions

Determine the internal normal force and shear force, and the bending moment in the beam at points C and D. Assume the support at B is a roller. Point C is located just to the right of the 8-kip load.

Answers

Using the information provided, I am unable to determine the internal normal force, shear force, and bending moment in the beam at points C and D.

What is force?

A force is an effect in physics that may modify the velocity of an item. A force can cause a mass item to change its velocity, or accelerate. Intuitively, force may be characterized as a push or a pull. A force is a vector quantity since it has both magnitude and direction.

Here,

We need to do a structural analysis on a beam to estimate the internal normal force, shear force, and bending moment utilizing methods such as equilibrium equations and the force-moment method. We only have information on the location of the load and the type of support at point B in this situation, thus a thorough analysis is impossible. I am unable to calculate the internal normal force, shear force, and bending moment in the beam at positions C and D using the information supplied. To do a thorough structural analysis, further information on the load, support conditions, and beam geometry is necessary.

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gasoline is to be stocked in a bulk tank once at the beginning of each week and then sold to individual customers. the joint density of y1, the proportion of the capacity of the tank that is stocked at the beginning of the week, and y2, the proportion of the capacity sold during the week, is given by f(y1, y2)

Answers

Oil or other petroleum liquids are used to create gasoline, a fuel. The majority of gasoline is utilized in car engines. Finished motor is created in refineries and blending plants for petroleum.

Why is gasoline called that?

Etymology. The word "gasoline" (commonly abbreviated to "gas") is indeed an American term for motor vehicle fuel. The brand "Cazeline" or "Gazeline," which bears the last name the British publisher, coffee trader, and social activist John Cassell, is claimed to have had some impact on the phrase.

Are autos that run on gasoline?

An combustion engine that runs on gasoline is referred to as a "petrol engine" in American English (gasoline). The ability to run on fuels like liquid petroleum gas gas and ethanol mixes can frequently be added to gasoline engines.

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Balloon A has charge q, and identical mass balloon B has charge 10q. You hang them from threads near each other. Choose all of the statements with which you agree. Check all that apply. A.) The force that A exerts on B is 10 times the force that B exerts on A. B.) The angle between the thread supporting A and the vertical is less than the angle between the thread supporting B and the vertical. C.) The force that A exerts on B is 1/10 the force that B exerts on A. D.) A and B exert the same magnitude forces on each other.

Answers

The required option is A.) The force that A exerts on B is 10 times the force that B exerts on A., C.) The force that A exerts on B is 1/10 the force that B exerts on A.

What is electrostatics force?

Non-contact forces, such as electrostatic forces, pull or push on objects without actually making contact with them. When certain materials are rubbed together, a phenomenon known as "charge" can be transferred from one surface to another. Uncharged items are pulled by charged objects, which in turn may push or pull against other charged ones.

According to question:

For options

A.) The force that A exerts on B is 10 times the force that B exerts on A.

C.) The force that A exerts on B is 1/10 the force that B exerts on A.

because,

The forces between two charged objects are proportional to the product of the charges and inversely proportional to the square of the distance between the objects. So, the force that A exerts on B is proportional to q * 10q / d^2 and the force that B exerts on A is proportional to 10q * q / d^2, where d is the distance between the two objects. Thus, the force that A exerts on B is 10 times the force that B exerts on A, and the force that A exerts on B is 1/10 the force that B exerts on A.

As for B.) The angle between the thread supporting A and the vertical, and the angle between the thread supporting B and the vertical depend on the mass of the balloons and the tension in the threads, which are not given in the problem. So, it's not possible to determine the relative angles of the threads.

And D.) A and B do not exert the same magnitude forces on each other, as explained above

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Superman throws a boulder of weight 1950N at an adversary on the surface of the earth, where the magnitude of the acceleration due to gravity, g = 9.80m/s2 . What horizontal force must Superman apply to the boulder to give it a horizontal acceleration of 14.6m/s2 ?

Answers

The mass of the boulder can be calculated from its weight, which is given as [tex]1950 N[/tex]

How do you define force?

Force is a physical quantity that represents an interaction between two objects. It is a vector quantity. Force is expressed in units of Newtons (N).

What does Newton's laws of motion describes?

Newton's laws of motion explains how objects move and interact with each other. These laws state that the acceleration of an object is proportional to the force applied to it and inversely proportional to its mass. The laws also state that the sum of forces acting on an object is equal to its mass times its acceleration.

[tex]m=W/g=1950 N/9.8m/s^{2}=198Kg[/tex]

Substituting the mass and the desired acceleration into the equation, we have:

[tex]F=198Kg*14.6m/s^{2}=2889 N[/tex]

Therefore, Superman must apply a horizontal force of [tex]2889 N[/tex] to the boulder to give it a horizontal acceleration of [tex]14.63m/s^{2}[/tex]

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Suppose reaction times for recognition of common words like red or green are normally distributed with µ = 220 milliseconds and a standard deviation σ = 32. A psychologist presents a sample of n = 16 subjects with words that include names of colors. However, the color names are printed in a different color ink. That is, the word RED might be printed in blue ink, or GREEN might be printed in red ink. For these words, the sample had a mean reaction time of M = 240. Do these data indicate that presenting color names changes reaction time? Run a hypothesis test and calculate the effect size.

Answers

Presenting color names does not appear to significantly affect this sample's reaction time, according to the findings of the hypothesis test and the computation of the effect size.

What are the three different types of hypothesis testing?

The most popular null hypothesis test for this sort of statistical relationship is the t-test. In this part, three different t-test types are investigated and used to a range of research techniques: the one-sample t-test, the dependent-samples t-test, and the independent-samples t-test.

The standard error of the mean (SE) as:

SE = σ / √n

SE = 32 / √16 = 16

Next, The z-score as:

z = (M - μ) / SE

z = (240 - 220) / 16 = 1.25

To find the effect size, we can use Cohen's d formula:

d = (M - μ) / σ

d = (240 - 220) / 32 = 0.31

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using the laplace transform of u(t) for cos3wt, determine the solution for y(t) assuming zero initial conditions

Answers

The Laplace transform of u(t) for cos3wt, then [tex]y(t) = \frac{1}{6} [e^{(3it)} + e^{(-3it)}]u(t)[/tex]

What is the function of the Laplace transform?

Laplace transform is used to solve differential equations. It is commonly used in many different professions. According to our knowledge, the Laplace transform converts a given LDE (linear differential equation) into an algebraic equation that can be solved using the basic algebraic identities.

Let Y(s) represent y's Laplace transform (t).

Since y(t) = u(t) × cos3wt, we can write:

[tex]Y(s) = U(s) \times [\frac {s}{(s^{2} + 9)}][/tex]

Using the magnitude and phase formula discussed in class, we can express y(t) as:

[tex]y(t) = \frac{1}{6} [e^{(3it)} + e^{(-3it)}]u(t)[/tex]

This transform is useful for analyzing linear, time-invariant systems, and is used in many engineering fields to solve differential equations, such as in electrical, mechanical and control engineering.

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Two cars (A) and (B) travel in straight line. The distance of (A) from the starting point is given as a function of them be aA(t)=pt+qt2, with p=2.60ms−1 and q=1.20ms−2. The distance of (B) from the starting point is xB(t)=rt2−st3 are r=2.80ms−2 and s=0.20ms−3. Answer the following questions,
At what time (s) are the cars at the same point ?

Answers

At approximately 2.81 seconds the cars are at the same point. aA(t) is a linear function and xB(t) is a parabolic function.

Functions aA(t) and xB(t) describes the motion of two cars and both functions give the distance of each car from the starting point as a function of time, t.

aA(t) is a linear function and the components of the functions are constant velocity (p) and acceleration (q).

xB(t) is a parabolic function with components constant acceleration (r) and a component for constant jrk (s).

To find the time when the two cars are at the same location, we must first make the two distance expressions equal and then solve for t.

That is pt + qt² = rt² - st³

Now we have to solve this for t, we get

t = (-p + (p² + 4qr)^1/2) / (2q)

Now add the values for p,q,r,s to solve the equation

t = (-2.6 + (2.6² + 4 × 1.2 × 2.8)^0.5) / (2 × 1.2) = approximately 2.81 seconds.

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If you wanted to document the apparent retrograde motion of Mars, you would need to measure and record Mars's __________ over a period of __________.

Answers

If you wanted to document the apparent retrograde motion of Mars, you'd need to measure and record Mars's position among the constellations over a period of several months.

Earth, about every 26 months, comes up from behind and overtakes Mars. It will look to us as if Mars is moving up and down. The illusion will disappear and once again we will see Mars move in a straight line as we move farther along the curved orbit and see the planet from a different angle. This apparent movement is called retrograde motion.

Mars retrograde lasts about a couple months. When it's happening, Mars usually stays in a particular constellation.

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PLEASE HURRY In the Photosynthesis Lab part of the OMS lesson, you changed the amount of light intensity, temperature, and CO2 level. The the amount of Oxygen released the greater the photosynthesis.

Answers

Answer:

YEAH MORE OXYGEN BUBBLES THE MORE PHOTOSYNTHESIS OCCURRING

Explanation:

match the rock cycle processes with situations in which they would likely occur. instructions weathering weathering drop zone empty. uplift uplift drop zone empty. solidification solidification drop zone empty. melting melting drop zone empty. deformation deformation drop zone empty. erosion erosion drop zone empty. rock at great depth is exposed to high temperatures. a rock within a mountain range undergoes deformation and movement due to tectonics. a loose piece of rock at the surface is moved away from its source area by ice, water, wind, or gravity. strong forces squeeze a rock and cause it to bend and fold. magma at depth or lava at the surface is hardened as it cools. a rock at the surface is exposed to atmospheric processes.

Answers

the methods used to transform rock through one shape to another a rock cycle There are one or more processes that crystals, freezing, drying, erosion, and metamorphism go through.

Where in the rock cycle does weathering take place?

At or near the surface, weathering (the method by which rock) and erosion (the process of transferring rock material) reduce rocks to ever-tinier fragments. These more minute rock fragments, including such sand, silt, or mud, can indeed be deposited as sediments, which then harden or lithify to form sedimentary rocks.

Can uplift take place during in the rock cycle?

Uplift is a force of transportation that affects rocks in the rock cycle. Sometimes, moving rock fragments from weathered rocks is a part of transportation. However, uplift includes the earth's pressure pushing underground rocks upward.

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using conservation of energy, find the maximum height hmax to which the object will rise. express your answer in terms of v and g . you may or may not use all of these quantities.

Answers

According to the law of conservation of the energy, the maximum height (h max) to which object will raise: h max = v²/2g

Energy is not created nor destroyed; rather, it just transforms from one form to another, according to the rule of conservation of energy.

The object's highest vertical position during its journey corresponds to its maximum height. Before it reaches the highest point, the item is flying upward; once it reaches that point, it is falling.

The equation:

h max = v²/2g

Where:

h max = the maximum height (m)

v = the velocity (m/s)

g = the acceleration due to gravity (9.8 m/s²)

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The absolute pressure in water at a depth of 9m is read to be 185 kPa. Determine (a) the local atmospheric pressure, and (b) the absolute pressure at a depth of 5 m in a liquid whose specific gravity if 0.85 at the same location. (density of water is 1000 kg/m3)

Answers

the absolute pressure is 138.4 kPa at a depth of 5 meters in a liquid with a specific gravity of 0.85 at the same position. (Water has a 1000 kg/m3 density)

What is pressure, and what is the formula for it?

That amount of force delivered perpendicularly to an object's surface in relation to its area is known as pressure. Pressure is a force-area relationship; pressure = force area. Pascal is the SI pressure measurement (pa).

How is pressure determined?

The formula for calculating pressure is P = F / A, or force for unit of the surface area. The SI unit in measuring pressure is the pascal, and the sign for pressure in physical science is p. (symbol: Pa). One Newton per sq.m of force exerted perpendicularly on a surface is equal to one pascal.

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1) In a uniform circular motion, which of the following quantities are constant:
a) speed,
b) instantaneous velocity,
c) tangential velocity,
d) radial acceleration,
e) tangential acceleration
2) Which of the above quantities are zero throughout the motion?

Answers

The amount of tangential velocity, or speed, of an item at each point in a uniform circular motion is constant. Every time there is a direction shift, the velocity enters the picture. However, its magnitude never changes.

Constant speed is it uniform?

The body is thought to be moving at a uniform speed if it travels the same distance in the same amount of time. If the body goes in a straight line with changing its direction, the speed is thought to be constant. In all scenarios, there is no acceleration. Recall that homogeneous velocity is a constant velocity as well.

Is uniform acceleration constant?

Summary. Acceleration that remains consistent across time is referred to as uniform acceleration. the relationship between beginning and ultimate velocities, time,

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A resistor is a component that is used in an electric circuit.
(i)
R
V
A
Describe how a student would use the circuit to take the readings necessary to
determine the resistance of resistor R.

Answers

A "resistor" is a two-terminal passive electronic current that is employed to limit or control the flow of electric in electrical circuits. Therefore, in the below given way, the value of resistance can be calculated.

What is resistor?

A "resistor" is a two-terminal passive electronic current that is employed to limit or control the flow of electric in electrical circuits. It also allows us to provide a variable amount of resistance to an electrical system. Resistors are the most significant and widely utilized components in an electrical circuit.

Electrons cannot pass through insulators, but they may through conductors.  Through the following way resistance can be determined.

turn on the circuit

examine both of the ammeter and the voltmeter

To alter the current, modify the variable resistor.

Take new ammeter and voltmeter values and build a voltage-current graph using the equation: voltage current = resistance

Therefore, in the above given way, the value of resistance can be calculated.

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a sphere and a cylinder of equal mass and radius are simultaneously released from rest on the same inclined plane. they then roll down the plane without slipping. choose a correct answer: select all that apply

Answers

The correct answer is B. The cylinder reaches the bottom first because it picks up more rotational energy.

What is moment of inertia?

The mass of a body is what causes inertia. The inertia of a body increases with its bulk. For instance, a lighter stone can be thrown farther than a smaller one. The heavier object resists change more because it has more mass, or more inertia.

According to question:

When a sphere and a cylinder of equal mass and radius roll down an inclined plane, the cylinder will pick up more rotational energy due to its larger moment of inertia.

A sphere has a moment of inertia equal to 2/5 of its mass times the square of its radius, while a cylinder has a moment of inertia equal to 1/2 of its mass times the square of its radius.

This means that the cylinder has a larger moment of inertia and will therefore pick up more rotational energy as it rolls down the incline. As a result, it will reach the bottom of the incline before the sphere.

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when a tennis player hits the tennis ball, he gives impulse to the ball. this means that he exerts large force force on the ball for a very short time. si unit of impulse is newton-seconds. t/f

Answers

The given statement regarding impulse is true since he does give impulse to the ball, meaning exerting large force on the ball for a very short time.

Impulse in classical mechanic is the integral of a force F over the time interval t for which it acts. In simpler words, impulse is the effect of force on an object over a (usually very short) period of time. The SI unit of impulse is newton-seconds. The symbol for impulse is "J" or "Imp".

Impulse is also known as the change in momentum. Change in momentum is defined as mass times change in velocity (Δp = m · Δv). Change in velocity is equal to acceleration times change in time (Δv = a · Δt). The product of mass and acceleration is force, so change in momentum is equal to force times change in time (Δp =  F · Δt = J).

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7
8
9
10
11
12
11 7 points
These two waves have the same amplitude, but different frequencies. If these two waves were sound waves, what would be the difference between
them?
Wave A:
Wave B:
www.
-DO

Answers

Wave A will have lower pitch than wave B.

option B is the correct answer.

Which wave will produce a sound of higher pitch?

A wave of higher frequency will produce a sound of higher pitch. The frequency of a wave determines its pitch, with higher frequencies producing higher pitches and lower frequencies producing lower pitches.

In the case of sound waves, the frequency is directly related to the perceived pitch of the sound.

For example, a sound wave with a frequency of 440 Hz is perceived as an "A" note, and a sound wave with a frequency of 880 Hz is perceived as a higher pitched "A" note.

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a light bulb is attached to a battery and lights up. which of the following statements is true about the electric field inside the bulb filament

Answers

Due to the potential difference and the current flowing through the filament, an electric field will be created. Because of the electric field that the flowing current created, the field must not be zero. So, option C is correct.

A current travels across the filament when the light bulb is connected to a battery and turned on. The voltage differential between the filament's two ends and the resistance of the filament's material combine to produce the electric field inside the filament. The filament glows because of resistance that the current encounters as it passes through it. Near the center of the filament, where the temperature is highest and the material has the maximum resistance, the highest resistance and hence the largest electric field can be found. As the filament reaches its ends, where resistance is lowest, the electric field inside it becomes weaker and less constant.

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A Light bulb is attached to a battery and lights up. Which of the following statements is true about the electric field inside the bulb filament?

A) The field must be zero because a current is flowing.

B) The field must be zero because any excess charges are on the surface of the filament.

C) The field must be non-zero because the flowing current produces an electric field.

D) The field must be non-zero because no current will flow without an applied field.

Find the gravitational field on the surface of an alien planet that has an estimated mass of 8.5 x 10^26 kg and radius of 3.5 x 10^4 km. Show all work.

Answers

Answer:

Below

Explanation:

Fg = G m1 m2 / r^2      Gravitational constant = 6.6743 x10^-11  m^3 /(kg s^2)

  PLug in the given numbers:

Fg = 6.6743 x 10^-11  (1 kg)(8.5x10^26 kg) / (3.5 x10^7 m)^2

    = 46.3 m/s^2

Mechanical advantage is calculated by using the formula

A. Length of Slope (L) / Height of slope (H)
B. Force of Friction/Gravity
C. Normal Force/ Acceleration
D. Height of Slope (H) / Length of Slope (L)

Answers

Option A is the correct answer .

What is Length ?

Length is a term used to describe the distance between two points on an object or the dimension of an object along a particular axis.  Length is usually measured in units of distance, such as meters, centimeters, inches, or feet .

In physics, length is an important concept used to describe the size of objects, the distance between two points, or the dimensions of a space. In engineering and construction, length is used to design and build structures, such as bridges and buildings, to ensure they are safe and fit for their intended purpose.

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Which of the following is NOT A TRUE STATEMENT about atomic structure?
a, The photon energy for transitions between two energy levels ( e.g. between the ground state and the first excited state) is different for absorption (excitation) and emmission (deexcitation).
b. Atoms do not always remain in their lowest energy state.
c.Transitions between two energy levels can only occur at one specific photon energy.
d. An atom is in an excited state if it has at least one electron at a greater than normal distance from its parent nucleus.
e.An ion is an atom that has either gained or lost electrons.

Answers

From the ground state, transitions can take place to energy levels that are either higher or lower.

Which atomic structure claims are accurate?

The correct statement regarding the atomic structure among the offered statements is C. Protons and neutrons are present in the nucleus. Reason: In an atom, the number of protons and neutrons in the atom's nucleus are not always equal.

Which of the following statements about atom structure is accurate?

The untrue statement is (a) Every atom has a nucleus, which is a neutral center. This is untrue because the nucleus is positively charged because protons, which are positively charged, and neutrons, which are charge-neutral, are present.

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A 3.96-kg pile of snow is sitting on the ground. A physics teacher
exerts a force upon the pile of snow to both lift it and set it into
motion. The snow leaves the shovel with a speed of 4.61 m/s at a
height of 0.536 m. Determine the work done upon the pile of snow.

Answers

Work is the amount of energy transferred to an object by an external force when it is moved over a certain distance by that force.

What is Work done?

The work done on an object is the amount of energy transferred to an object through work.

Work completed force displacement along the force's path of action. The units of measurement for work, force, and displacement are joules, newtons, and meters, respectively.

When an object is moved over a distance by an external force, at least a portion of that force must be applied in the direction of the displacement.

Therefore, Work is the amount of energy transferred to an object by an external force when it is moved over a certain distance by that force.

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600 J of work are done on a system in a process that decreases the system's thermal energy by 300 J .
How much heat energy is transferred?
2. An open container holds ice of mass 0.565 kg at a temperature of -16.6 ∘C . The mass of the container can be ignored. Heat is supplied to the container at the constant rate of 890 J/minute . The specific heat of ice to is 2100 J/kg⋅K and the heat of fusion for ice is 334×103J/kg.
How much time tmelts passes before the ice starts to melt?
From the time when the heating begins, how much time trise does it take before the temperature begins to rise above 0∘C?

Answers

In a process, a system undergoes 600 J of work, which results in a 300 J reduction in thermal energy. Energy cannot generate new matter or destroy existing matter, according to the first law of thermodynamics. Heat is -900J in value.

Thermoenergy: What is it?

Thermal energy is the term used to describe the energy present inside a system that determines its temperature. The movement of thermal energy is heat. Thermodynamics is a complete branch of physics that studies how work is done and heat is exchanged between various systems.

What is an illustration of thermal?

Thermal energy examples include heaters that warm up a space, solar sun drying wet clothing on a line, ironing shirts, baking cakes, and warming water 1for tea. Thermal energy is released by any material or object that is warm.

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solve for a in the acceleration equation

Answers

To calculate acceleration, you use the equation a =Δv/Δt, where Δv is the change in velocity, and Δt is the time it takes for the change to occur.

In physics, acceleration is the change in velocity in a given unit of time. The acceleration of an object is caused by a force acting on the object, as explained in Newton's second law. The SI unit for acceleration is meters per second squared (m/s). Acceleration is the product of the velocity (m/s) divided by the time (s). So, the resulting formula is a = v/t.

Acceleration and the most basic velocity in acceleration are how fast a car can increase its speed, while velocity looks at how fast a car travels a certain distance.

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TRUE OR FALSE can the magnitude of the displacement vector be more than the distance traveled?can the magnitude of the displacement vector be more than the distance traveled?yesno

Answers

The stated assertion is untrue since the size of the displacement can be greater than or smaller than the object's journey distance.

Is it possible for the displacement vector's magnitude to exceed the travelled distance?

It's crucial to remember that the distance travelled need not match the size of the displacement. The total distance travelled will be more than the amount of the displacement between those two points specifically if an object changes direction during its journey.

What connection exists between distance and displacement size?

Displacement is the smallest or linear distance between the initial and final places, whereas distance is the length of the path travelled to get there.

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Air drag will cause a Change in acceleration

Answers

Answer:Now it gets complicated. There is an initial acceleration, therefore there is an increase in speed. With an increase in speed comes an increase in drag and a decrease in net force. This decrease in net force reduces acceleration.

Explanation:

When drag is equal to weight, there is no net external force on the object, and the acceleration will become equal to zero.

hope this helped :)! --Middle schooler

Information for questions 2,3 , and
4.
You have an oscillating spring with a spring constant of
k=0.69 N/m
. The mass on the end of the spring is
m=0.34 kg
. You may assume the spring is massless. Questions 2, 3, and 4 ask you to show the position, velocity, and acceleration vs time graphs for this spring. Sketching out these graphs by hand may be helpful. U.2points Which of the following graphs most closely matches the displacement vs. time plot for this oscillating spring? Reference part
2.4
on p. 6 for help. Which of the following graphs most closely matches the velocity vs. time plot for this oscillating spring? You may find calculating your maximum velocity from question 2 helpful. Which of the following graphs most closely matches the acceleration vs. time plot for this oscillating spring? You may find calculating your maximum acceleration from question 3 helpful. In questions 2,3 , and 4 you assumed that the spring was massless. This means that the period,
T
, of the spring could be calculated by equation
2,T=2π m

/k
, where
m
is the mass attached to the spring and
k
is the spring constant of the spring. However, one cannot always assume that the spring is massless. If the spring has a mass
M
, which of the following expressions will you use during lab this week to model the mass of the spring?
T=2π k
m+M


T=2π k
m+M/3


T=2π k
m


Answers

This oscillating spring's displacement vs. time graph is a sine wave. This oscillating spring's velocity vs. time graph is a cosine wave.This oscillating spring's acceleration vs. time graph is a negative sine wave. If the spring has a mass M, the period may be computed using the formula T=2 (k/m + M/m)^-0.5.

What is oscillation?

The process of recurring changes of any quantity or measure about its equilibrium value in time is characterized as oscillation. Oscillation may also be described as a periodic change in a matter's value between two values or near its center value.

Here,

This oscillating spring's displacement vs. time graph is a sine wave that illustrates the displacement of the mass on the end of the spring from its rest position as a function of time.

This oscillating spring's velocity vs. time graph is a cosine wave that displays the velocity of the mass at the end of the spring as a function of time.

This oscillating spring's acceleration vs. time graph is a negative sine wave that illustrates the acceleration of the mass at the end of the spring as a function of time.

If the spring has a mass M, the period may be computed using the formula T=2 (k/m + M/m)^-0.5

M=0

m=0.34 kg

k=0.69 N/m

T=2(0.69/0.34)^-0.5

T=1.404

model used: T=2(k/m)^-0.5

The displacement vs. time graph of this oscillating spring is a sine wave. The velocity vs. time graph of this oscillating spring is a cosine wave. The acceleration vs. time graph of this oscillating spring is a negative sine wave. If the spring has a mass M, the time T=2 (k/m + M/m)^-0.5 may be calculated.

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when marie pushes her desk to the right, friction between the floor and the desk acts toward when marie pushes her desk to the right, friction between the floor and the desk acts toward the right. at right angles to her push. the left. none of the above

Answers

Marie moves her desk to the right, causing friction between the desk and the floor that moves it to "the left." Thus, option C is correct.

The force of friction prevents movement between two surfaces that are in contact with one another. When Marie pushes her desk to the right, friction acts between the desk and the floor in the opposite direction to her push, which is to the left. The direction of friction is determined by the direction of motion between the two surfaces and the direction of the force that opposes this motion.

Friction acts to slow down or stop the motion of an object, so when Marie pushes the desk to the right, friction acts to the left to counteract her push and slow down the motion of the desk. The magnitude of the friction force depends on the roughness of the two surfaces and the force with which they are pressed together.

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calculate the acceleration a of the proton, given the time taken to get from one plate to the other and the separation of the plates.

Answers

The acceleration of an object is given by the second law of motion, by:

a = F/m

where a denotes acceleration, F is the net force acting on the object, and m denotes mass of the object.

If the initial velocity, net force, and mass of the proton, you can use the equation a = F/m to calculate the acceleration of the proton as it moves from one plate to the other.

What affects the acceleration of a proton?

Protons are charged particles, and their acceleration may also be affected by electric and magnetic fields. The magnitude and direction of these fields can influence the net force acting on the proton and its acceleration.

What is the difference between cation and anion?

A cation is defined as an ion with a positive charge. It is formed when an atom loses one or more electrons whereas an anion is an ion with a negative charge. It is formed when an atom gains one or more electrons.

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what is the strength of the electric field at the position indicated by the dot in (figure 1)? express your answer in newtons per coulomb.

Answers

The equation E = F/q can be used to determine the strength of the electric field (E) at the location denoted by the dot.

What is the Strength of an Electric Field?

The force applied per unit of positive charge is referred to as the electric field's strength, or E. It may be shown from the equation E = F/q. Volts per meter (V/M) or Newton per Coulomb are its SI units.

You should be aware that an electric field is strongest where the lines are close and weakest when the lines are far apart.

The technique above can be used to determine the answer even though the whole question is not given.

The equation E = F/q where gives the magnitude of the electric field (E) at the location denoted by the dot: E = F/q where;

F = Force exerted per unit and

q = The electric charge there is positive.

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