10.0 points
A reconnaissance plane flies 446 km away from
its base at 684 m/s, then flies back to its base
at 1026 m/s.
What is its average speed?
Answer in units of m/s.
007

Answers

Answer 1

The average speed in m/s, given the data is 820.80 m/s

What is speed?

Speed is the distance travelled per unit. Mathematically, it can be expressed as:

Speed = distance / time

What is average speed?

This is the total distance travelled divided by the total time taken to cover the distance.

Average speed = total distance / total time

How to determine the time taken to fly away from the baseDistance = 446 km = 446 × 1000 = 446000 mSpeed = 684 m/sTime to fly away =?

Speed = distance / time

684 = 446000 / time

Cross multiply

684 × time = 446000

Divide both side by 684

Time = 446000 / 684

Time to fly away = 652.05 s

How to determine the time taken to return the baseDistance = 446 km = 446 × 1000 = 446000 mSpeed = 1026 m/sTime to return =?

Speed = distance / time

1026 = 446000 / time

Cross multiply

1026 × time = 446000

Divide both side by 1026

Time = 446000 / 1026

Time to return = 434.70 s

How to determine the average speedTotal distance = 446000 + 446000 = 892000 mTime to fly away = 652.05 sTime to return = 434.70 sTotal time = 652.05 + 434.70 = 1086.75 sAverage speed =?

The average speed can be obtained as follow:

Average speed = total distance / total time

Average speed = 892000 / 1086.75

Average speed = 820.80 m/s

Thus, the average speed is 820.80 m/s

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Related Questions

By adding weights around the ankles, what happens to the moment of inertia of the lower limb as it swings about the hip during walking?

Answers

The rationale underlying this hypothesis is that carrying the loads on the arms is dominated by passive dynamics.

The moment of inertia of the lower limb by passive dynamics.

Explanation:

This hypothesis is supported by the reasoning that, if passive dynamics predominates when loads are carried on the arms, then passively swinging a load should be less expensive than actively swinging a load when it is carried on the legs (Browning et al., 2007; Royer and Martin, 2005).

Because carrying loads close to the body's COM has typically been observed to be the least expensive way to carry loads while walking (Browning at all., 2007; Royer and Martin, 2005; Soule and Goldman, 1969)

We also hypothesized that carrying loads on the swinging arms would be more expensive than carrying loads near the COM (positioned about the waist in this study).

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The objective lens is the lens at the top of the microscope that you view the specimen through. select one:
a. true
b. false

Answers

It is false that the objective lens is the lens at the top of the microscope that you view the specimen through.

The objective lens is not the lens at the top of the microscope through which you see the specimen; it is the eyepiece lens. The eyepiece lens is the lens at the top that you look through, and it normally has a 10x or 15x magnification. A tube connects them to the objective lenses. The objective lenses are the ones closest to the specimen being studied; they are placed right above the specimen due to their magnification powers, and they also produce the specimen's image. A microscope normally has three or four objective lenses, each with a power of 4x, 10x, 40x, or 100x.

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9
> G.1 Calculate velocity from time and distance RXW
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Matthew was parasailing at a constant velocity behind a motorboat. As he was parasailing, he
passed over a kayak moving at 64 meters per minute, and he moved 200 meters west in
0.5 minutes. What was Matthew's velocity?
Write your answer as a whole number.
meters per minute to the west

Answers

As he was parasailing, he passed over a kayak moving at 64 m/minute, and he moved 200 meters west in 0.5 minutes. Matthew's velocity will be 400m/minute to the west.

The velocity of an object can be defined as the rate of change of an object's position relative to the frame of reference and over time. It sounds complicated, but basically, the speed is accelerating in a particular direction. It is a vector quantity, which means we need both magnitude (speed) and direction to determine speed. Its SI unit is meters per second (ms-1). If there is a change in magnitude or direction in the speed of an object, the object is said to be accelerating.

According to the question:

Velocity = Distance/ Time

Given in the question:

Distance= 200

Time= 0.5 minutes

Substitute the value,

Velocity= 200/0.5

Velocity = 400m/minute

Therefore, the velocity for the given question is 400m/minute.

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what was Ethan's velocity between 9:30 and 10:00, in km/hr?​

Answers

Ethan's velocity between 9:30 and 10:00 in km/hr is 10.​

Equation :

To know the velocity of the in between 9.30 and 10,

Use the formula,

speed = distance / time

Given,

distance 1 = 10 km

distance 2 = 15 km

time = 30 min

v = ?

Putting values,

v = Δs/Δt

v = 15 - 10 / 30 min

v = 5 / 1800 sec

v = 5000 m / 1800 sec

v = 2.78 m/sec

Or,

v = 5 km / 0.5 h

v = 10.0 km/h

Velocity :

The direction of a body or object's movement is defined by its velocity. In its basic form, speed is a scalar quantity. In essence, velocity is a vector quantity. It is the speed at which distance changes. It is the displacement change rate.

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The escape speed from the moon is much smaller than from earth, around 2. 38 km/s. True or false?.

Answers

The statement is True.

What is the Escape speed of the Moon?

The Escape velocity of the Moon is 2.38km/s.

The conservation of energy and an energy field with a finite depth leads to the existence of escape velocity.

When moving under conservative forces (like a static gravity field), an object with a given total energy can only travel to combinations of locations and speeds that have that total energy; locations with higher potential energy cannot be reached at all.

The object's reachable locations increase as speed (kinetic energy) is added; with enough energy, the locations become infinite.

The minimum speed an object needs to travel at in order to "escape" gravity for a given gravitational potential energy at a given position is known as the escape velocity (i.e. so that gravity will never manage to pull it back).

Because it does not specify a direction of travel, escape velocity is actually a speed (not a velocity) and the object can escape the gravitational field in any direction (provided its path does not intersect the planet).

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A uniform solid sphere rolls down an incline. what must be the incline angle if the linear acceleration of the center of the sphere is to have a magnitude of 0.10 g?

Answers

The uniform solid sphere rolls down an incident angel for solid sphere is θ = 9.6 degree .

What is incident angel?

The angle of incidence in geometric optics is the angle formed between a ray incident on a surface and the normal, or line perpendicular to the surface at the point of incidence. Any wave, including optical, acoustic, microwave, X-ray, and others, can create a ray.

required acceleration = .12 g

The term for the acceleration of a rolling body on an inclined surface

= gsinθ / 1 + k² / R²

Here rolling body is sphere

k² = 2/5 R²

k² / R² = 2/5

acceleration = g sinθ / 1 + k² / R²

.10 g = g sinθ / 1 + k² / R²

.10 g =g sinθ / 1 + 2/5

.10 = sinθ / 1.4

sinθ = .168

θ = 9.6 degree .

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A frictionless 300 n sled is being pulled by two sled dogs. blanco pulls forward with a force of 110 n and red pulls forward with a force of 130 n. what is the net force acting on the sled?

Answers

The net force is 240 N.

We need to know about force resultant to solve this problem. The force resultant is the total net force applied to the object according to the direction. It can be written as

R = F1 + F2 + ... + Fn

where R is force resultant (net force)

From the question above, we know that

F1 = 110 N

F2 = 130 N

The sled doesn't have friction force due to medium is frictionless.

Because the direction is the same, the force will add to each other.

R = F1 + F2

R = 110 + 130

R = 240 N

Hence, the net force is 240 N

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The length between two given vectors is called what?
explain please

Answers

For this question, your answer would be the magnitude.

An example of mechanical work is ________; an example of transport work is _______.

Answers

An example of mechanical work is the contraction of muscles; an example of transport work is the pumping of ions across the cellular membranes.

Generally, our cells can perform three major types of work which include chemical work, mechanical work as well as transport work.

A chemical work example is the building of proteins which are considered large molecules. The energy required for the dehydration synthesis reaction is provided by ATP which is able to link amino acids together.

One of the major examples of mechanical work is the activity of contraction of muscles. In the muscle cells, phosphate groups are transferred to certain proteins by ATP. These proteins are able to change the shape, which can start a series of events that makes the contraction of muscle cells.

On the other hand, a  transport work example includes the activity of pumping solutes including ions to pass across a cellular membrane. Here again, there will be a transfer of a particular phosphate group from ATP that makes the respective receiving membrane protein so as to change shape as well as enable ions to pass through effectively.

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Which cells have plasma membranes that undergo voltage changes in response to stimuli?

Answers

Neuron and muscle cells have plasma membranes that undergo voltage changes in response to stimuli.

What is a neuron?

Neurons are messengers of information.

Between various brain regions and between the brain and the rest of the nervous system, information is transmitted using electrical impulses and chemical signals.

A neuron has a cell body that includes a nucleus and cytoplasm, from which long, thin hair-like structures emerge.

The axon, a solitary long component of the neuron, is responsible for carrying the nerve impulse to various body areas.

The dendrites are the neuron's small, branching body sections.

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The first telescopic photo shows what appears to be a single star. The second photo shows the same object, now revealed to be two distinct stars. What is the difference between the two photos?.

Answers

Explanation:

i think the second picture is smaller and has a better angular resolution

In second photo, there has more resolution than that of first photo.

What is resolving power?

The ability of an optical equipment to discern between two things that are close to one another and produce distinct images of the two items is known as its resolving power.

To put it simply, when viewed through an optical instrument, resolving power varies inversely with the distance between the two objects to be resolved. As a result, when viewed from the device, the images of two things that are close to one another should appear distinct and separate.

Consider using a telescope to observe two stars that are close to one another; the telescope's resolving power depends on its capacity to distinguish between the pictures of the two stars.

According to the question, second telescope can detect two stars separately but first one can't because the resolving power of the second telescope is greater than that of first one. That's way, the difference between the two photos is that second photo is with greater resolution.

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What impulse occurs when the same force of 10 n acts on the cart for twice the time?

Answers

If the time interval is doubled with the force kept constant, the impulse is also doubled.

What is the definition of force?

The definition of force in physics is that force is any kind of push or pull  that is applied on a massed object changes its velocity.

An external force is a kind of agent that has the power to alter any type of resting or moving condition of a body. It has got its own direction and a magnitude.

What in science is a force?

One thing experiences a force from another. There are both living things and non-living objects included in the concept of force.

All objects, living and non-living, have the ability to exert a force on or against another item, as well as have their actions affected by forces.

Newton, or as it is abbreviated as N, is the SI unit of force. The meter and unit are the foundation units that pertain to force.

What in elementary physics is an impulse?

In physics, the term “impulse” is used to describe or quantify the impact of force acting gradually to alter an object’s momentum.

It is often stated in Newton-seconds or kilograms per second and is denoted by the symbol J.

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A gas cylinder of cf2=cf2 is unexpectedly found to have lost all pressure. upon being sawn open, what was discovered? (a true story)

Answers

The correct answer is Teflon

Numerous applications can be found for polytetrafluoroethylene (PTFE), a synthetic fluoropolymer of tetrafluoroethylene. It is one of the most popular and often used PFAS. Teflon, manufactured by Chemours, a division of DuPont, which made the compound's initial discovery in 1938, is the term by which PTFE-based materials are most generally recognized. Polytetrafluoroethylene, a high-molecular-weight polymer made entirely of fluorine and carbon, is a fluorocarbon solid. PTFE is hydrophobic, meaning that neither water nor things containing water can bind to it. This is because fluorocarbons only exhibit weak London dispersion forces since fluorine has a poor electric polarizability. One of the lowest coefficients of friction of any substance is found in PTFE. For pans and other cookware, polytetrafluoroethylene is utilized as a non-stick coating.

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Consider an incandescent lightbulb. If you wanted to turn a 10-w lightbulb into a 100-w lightbulb, how would you change the temperature of the filament inside the bulb?.

Answers

By using the blackbody radiation formula, the temperature of the filament inside the bulb is changed by a factor of 10⁰'²⁵.

We need to know about black body radiation to solve this problem. The energy radiated by a black body object is proportional to the area and the fourth power of temperature. It can be determined as

P = A . e . σ . T⁴

where P is power, A is surface area, e is emissivity, σ is Stefan Boltzmann's constant ( 5.67 x 10¯⁸ W/m²K⁴) and T is temperature.

From the question above, we know that

P1 = 10 watt

P2 = 100 watt

T1 = T1

By using the black body radiation formula, the ratio of temperature is

T1⁴ / T2⁴ = P1 / P2

Hence,

T1⁴ / T2⁴ = P1 / P2

T1⁴ / T2⁴ = 10 / 100

T1⁴ / T2⁴ = 1 / 10

T2⁴ = 10T1⁴

T2 = ⁴√(10T1⁴)

T2 = T1 x 10⁰'²⁵

Thus, the temperature of the filament inside the bulb is changed by a factor of 10⁰'²⁵.

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A hydrogen atom in the n=6 state decays to the n=3 state. what is the wavelength of the photon that the hydrogen atom emits? use hc=1240 nm ev.

Answers

The wavelength of a photon that the hydrogen atom emits is 1.093 x 10^-8 m.

The wavelength of a photon is given by the following formula,

1/λ = R{1/n1^2- 1/n2^2}

Here λ is the wavelength of the photon

R is the Rydberg Constant= 1.097 x 10^7 m

N1 is the initial state

N2 is the final state

Putting n1 =3, n2= 6 in the above equation, the wavelength lambda comes out to be,

1/λ = R{1/(3)^2 - 1/(6)^2}

λ = 12/1.097 x 10^7

Lambda = 1.093 x 10^-8 m.

Hence, the wavelength of the photon that the hydrogen atom emits is 1.093 x 10^-8 m.

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The electric potential along an x-axis is given by the expression v = ax - bx2, where a and b are constants. at what point on the x-axis is the electric field zero?

Answers

At x=1m point on the x-axis the electric field is zero when it is given by the expression v = ax - bx2, where a and b are constants.

How is electric potential determined?

We will use the formula V = k * q / r to get the electric potential at any place A due to a single point charge.

Formula for electric potential

q stands for electrostatic charge, r for the separation between point charge and A, and k = 1 / 4 * * 0 for Coulomb's constant.

What is the potential V formula?

V = k × [q/r]

Where, V stands for potential electric energy. point charge = q R is the distance from any place near the charge to the charge site.

Explain what the electric field is

When charge is present in any form, a point in space has an electric field that is connected to it. The value of E, often known as the electric field strength or electric field, expresses the size and direction of the electric field.

Ex = - dV/dx = -(a-2bx) = 0

solving for x, we have

x=a/2b = [2V/m] / 2(1V/m^2)

= 1m

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A gold atom has a radius of 145 pm. if you could string gold atoms like beads on a thread, how many atoms would you need to have a necklace 36.0 cm long?

Answers

[tex]1.17\times 10^{9 }[/tex]atoms would you need to have a necklace 36.0 cm long.

The radius of the gold atom = 145pm

The diameter of gold atom = 2[tex]\times[/tex]145pm

 = 290Pm  

[tex]=290\times10^{-10} cm[/tex]

gold atoms   = [tex]34cm/290\times10^{-10}cm[/tex]

= [tex]1.17\times 10^{9}[/tex] atoms  will be find in 36.0 cm necklace

Atomic radius is the distance from the nucleus to the edge of the atom

atomic radius decreases as we  go across the periodic table

electronegativity is ability of an atom to attract electrons when the atom is in a chemically combined compound

Atomic Radius : Group Trend: as we go down a column, atomic radius increases.

Periodic Trend: as we go across a period, (L to R), atomic radius decreases.

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The ability to buy a soda from a vending machine demonstrates which element of the marketing mix?

Answers

It demonstrates the place/distribution element.

Place, or its more popular name “distribution,” refers to the method by which a company delivers its goods to clients. It is one thing to have a fantastic product that is priced reasonably.

Which four forms of distribution are there?

Direct selling, selling through intermediaries, dual distribution, and reverse logistics channels are the four different categories of distribution channels.

What does distribution or place mean in marketing?

Distribution (or place) is one of the marketing mix’s four components. Making a good or service accessible to any consumer or any business user who is in requirement of it is the process of distribution.

The producer or service provider may carry this out directly or through indirect channels, such as distributors or intermediaries.

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Which patient would be considered a good candidate for hyperbaric oxygen therapy?

Answers

Hyperbaric oxygen treatment includes inhaling pure oxygen in a pressured atmosphere. Hyperbaric oxygen therapy is a well-established treatment for decompression sickness, a possible complication of scuba diving. Other diseases treated with hyperbaric oxygen therapy include significant infections, air bubbles in your blood vessels, and wounds that may not heal as a result of diabetes or radiation harm.

Hyperbaric oxygen treatment is used to treat a variety of medical disorders. And it is used in a variety of ways by medical institutes. If you have any of the following conditions, your doctor may recommend hyperbaric oxygen therapy: Brain abscess, arterial gas embolism, burns, carbon monoxide poisoning, crushing injury, sudden deafness, decompression sickness, exceptional blood loss anemia, gangrene, infection of skin or bone that causes tissue death, nonhealing wounds, such as a diabetic foot ulcer, radiation injury, skin graft or skin flap at risk of tissue death, traumatic brain injury, sudden and painless vision loss.

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A room is heated by an iron that is left plugged in. is this work interaction? take the entire room, including the iron, as the system.

Answers

It is a work interaction because the electrons are crossing the system boundary, thus doing electrical work.

Work will be defined as intricate patterns of interpersonal communication amongst interdependent people. All interaction places restrictions on individuals involved while also allowing them to do things they otherwise would not be able to.

Verbal, bodily, phone, and written communication are the four basic methods used in the workplace. You always have to deal with at least one at any given time during the working day.

Beneficial relationships at work have been demonstrated to increase job satisfaction and have a positive impact on staff turnover since employees who feel supported by their coworkers are more likely to stay with a company over the long run (Hodson, 2004; Moynihan & Pandey, 2008).

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If its volume remains unchanged, what will its pressure be at the temperature at which co2co2 solidifies?

Answers

The pressure for CO₂ will be 0.75atm when volume remains unchanged.

What is pressure?

The force delivered perpendicularly to an object's surface per unit area across which that force is dispersed is known as pressure. In comparison to the surrounding pressure, gauge pressure is the pressure. Pressure is expressed using a variety of units.

PV = nRT

[tex]\frac{P_{1} }{T_{1} } = \frac{P_{2} }{T_{2} }[/tex]

[tex]P_{1} = \frac{1.05atm}{273K} * (194.5K)[/tex]

P1 = 0.748atm

which on round figure gives us,

P1 = 0.75 atm

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If the airspeed of the plane (its speed in still air) is 335.0 km/h, in which direction should the pilot head?

Answers

The plane's speed relative to the ground is 309.8 km/h.

Airspeed of the plane = 335 km/h

Speed of the wind toward the south = 80 km/h

The pilot should head in the direction,

OA= AB × cos θ

[tex]cos \: θ = \frac{OA}{AB}[/tex]

[tex] θ = cos ^{ - 1} (\frac{OA}{AB})[/tex]

[tex]cos \: θ = \frac{80}{335}[/tex]

θ = 75.5°

When the airspeed is 335 km/h the pilot must head 75.5° West or North.

The plane speed relative to the ground is,

OB = AB × sin θ

OB = 335 × sin (75.5°)

OB= 309.8 km/h

Therefore, the plane's speed relative to the ground is 309.8 km/h.

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What is the main reason for searing a roast at a high temperature before finishing it at a lower temperature?

Answers

Prior to cooking, searing meats at high heat seals the pores, preserving the juices and preventing shrinking.

Why is a roast seared at a high temperature before being finished at a lower temperature?

A roast looks and tastes good when it is roasted at high temperatures (400°F and above). For thin, tender meats that depend on a flavorful, well-browned crust for flavor, such beef tenderloin and pork tenderloin, this approach works best.

Why is a roast seared in the first place?

If you want to produce the most delectable roasts, steaks, chops, and other meat dishes, searing the meat is a necessary step.

Meat is seared to caramelize the natural sugars and brown the proteins, resulting in a thick, nutty crust.

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How many neutrons per second are emitted spontaneously from a 1 mg sample of 252cf?
2. how many neutrons per second are emitted spontaneously from a 1 mg sample of 248cm?

Answers

The number of neutrons per second are emitted spontaneously is [tex]2.3\times10^9[/tex] neutrons/mg-s.

An atom is made up of three distinct subatomic components. Protons, electrons, and neutrons are what they are. In an atom, protons and electrons are positively charged, while neutrons are uncharged or neutral entities. The masses and charges of each of these subatomic particles are known.

The number of atoms in 1 gm of Cf -  IS

[tex]N= (1g)(10^{-3})(6.02\times 10^{23} atoms/mol)/252 g/mol[/tex]

[tex]=2.38\times 10^{21} atoms/gm[/tex]

The number of neutrons released per each fission is 3.73 and the fission probability per decay is,[tex]3.09\times 10^{-2}[/tex]

[tex]=(3.73)(2.38\times 10^{21})(8.318\times10^{-9})(3.09\times10^{-2})[/tex]

[tex]=2.28\times 10^{12 }[/tex]neutrons/g-s

Therefore the number of neutrons per second are emitted spontaneously is,

 [tex]=2.28\times 10^{12 }[/tex]neutrons/g-s

[tex]=2.28\times 10^{12 }[/tex] neutrons/g-s([tex]10^{-3}[/tex]/1mg)

=[tex]2.13\times10^{9}[/tex] neutrons/mg-s

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Suppose you are on a cart, initially at rest, which rides on a frictionless horizontal track. If you throw a ball off the cart towards the left, will the cart be put into motion?.

Answers

If you throw a ball off the cart towards the left then the cart will move to the left .

How the cart moved to the left and what phenomena was into consideration?The cart is initially at rest, but then rides on a frictionless horizontal track.Throwing a ball towards the left will obviously put the cart into motion.The cart will start moving in left because the ball was thrown left.To balance the momentum of the ball in the opposite direction the cart started moving towards the left.The phenomena to understand this is the law of conservation of momentum.

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write the principal of the conservative of energy​

Answers

Answer:

The principle of energy conservation states that energy is neither created nor destroyed. It may transform from one type to another.

Blood is accelerated from rest to a speed of 27.5 cm/s in a distance of 1.75 cm by the left ventricle of the heart. determine the magnitude of the acceleration of the blood.

Answers

The blood that travel from rest to a speed of 27.5 cm/s in a distance of 1.75 cm has an acceleration of: 216.07 cm/s²

The formulas and procedures we will use to solve this exercise are:

a = (vf² - vi²)/2 * x

Where:

a = accelerationvi = initial velocityvf = final velocityx = distance

Information about the problem:

vi= 0 cm/sx= 1.75 cmvf= 27.5 cm/sa=?

Applying the acceleration formula we have:

a = (vf² - vi²)/2 * x

a = [(27.5 cm/s)² - (0 cm/s²)] /2 * 1.75 cm

a = [756.25 cm²/s² - 0 cm²/s²] /3.5 cm

a = [756.25 cm²/s² ] /3.5 cm

a = 216.07 cm/s²

What is acceleration?

It is a physical quantity that indicates the variation of velocity as a function of time, it is expressed in units of distance per time squared e.g.: m/sec2 ; km/h2

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Can someone help me on this it’s for physics , the video did not help at all :(

Answers

Answer:

see attached table

Explanation:

1 km (kilometer) = 1000 m (meters)

1 m = 100 cm (centimeters)

1 cm = 10 mm (millimeters)

Going the other way
1 mm = 0.10 cm

1 cm =  0.01 m

1 m = 0.001 km

It is easier to find the values on both sides of the given value and then successively convert using the conversion ratios

The graph indicates given values in bold blue and conversions in normal font

Will explain two of these
Row 2: Given 1500 cm


1500 cm = 1500 x 10 = 15,000 mm

1500 cm = 1500  / 100  = 15 m

15 m = 15 m/ 1000  = 0.015 km

Row 5: Given 0.002 m
0.002 m = 0.002/1000 = 0.000002 km

0.002 m = 0.002 m x 100 = 0.2 cm

0.2 cm = 0.2 x 0 = 2 mm

and so on

ruth throwsa baseball straight up at 17 m/s. what is balls velocity at .53 seconds

Answers

The velocity of the ball is 16.9 m/s at 0.53 seconds. The given velocity of 17 m/s is the moving/change in velocity and 0.53 seconds is the given time.

How to calculate the velocity when the velocity changes?

to find the velocity let's 1st find out the acceleration using the formula

a = Change in velocity/time

a = 32.07 m/s²

Velocity = acceleration X Time

Velociy = 32.07 X 0.53

= 16.99 m/s

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A fertilised egg (zygote) has a diameter of 0.01 cm. At birth the average baby measures 50 cm in length. Calculate the change in order of magnitude of length from fertilisation to birth.

does anyone know the answer??​

Answers

Differences in size are often described as differences in the order of magnitude. That's the difference calculated in factors of 10.

At the time of fertilization-

0.01cm = 1/100 = [tex]10^{-2}[/tex]

At the time of birth-

50cm = 5 ×  [tex]10^{1}[/tex]

Meaning there is 3 order of magnitude between the egg(zygote) (0.01cm) and child after the birth ( 50cm ).

Notice that when dividing numbers in standard form, we subtract the powers.

When comparing orders of magnitude, actual distances can be approximated. It’s the relative difference that is important.

Hence, the change in the order of magnitude of length from fertilization to birth of a child is 3 ( three )

Learn more about Order of magnitude here

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