Given, Power of the reading glasses (P) = 1.6 D. Hence, the focal length of the pair of reading glasses found on the rack in a pharmacy is 62.5 cm.
To find, Focal length (f)Formula used,
Power of the reading glasses (P) = 1/f
where, Power (P) is measured in diopters, Focal length (f) is measured in meters.
Solving the above equation for focal length (f), we get:
focal length (f) = 1/P
focal length (f) = 1/1.6 D
focal length (f) = 0.625 meters
focal length (f) = 62.5 cm
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Which star is closest to our solar system (after the Sun)?
Alpha Centauri A
The two main stars are Alpha Centauri A and Alpha Centauri B, which form a binary pair. They are an average of 4.3 light-years from Earth. The third star is Proxima Centauri. It is about 4.22 light-years from Earth and is the closest star other than the sun
Have a nice Day , Hope this helped you I would appreciate it if you could mark my answer brainliest
Answer:
The answer is A
What would an automobile engineer MOST LIKELY suggest to improve the efficiency of a car's engine? A) Remove the engine's cooling system. Eliminate B) Increase the air drag on the windshield. C) Utilize cheaper, low-grade gasoline for the engine. D) Reduce the internal friction of the engine's parts.
Answer:
D) Reduce the internal friction of the engine's parts.
Explanation:
To increase the efficiency of the car's engine, an engineer most like has to reduce the friction within the internal engine parts. Reducing these friction reduces the useful energy lost as heat in these internal parts of the engine, when the engine parts do work against friction to move. In most everyday activities, engines and machines, energy is usually lost as heat due to frictional forces arising from two or more surfaces in contact.
Answer:
D
Explanation:
A steel wrecking ball is moving with 30,000 J of kinetic energy. The ball collides witha spring and comes to a complete stop. If the spring has a k = 50,000 N/m how much is the spring compressed?
Answer:
1.02 m
Explanation:
We are here given that ,
Kinetic energy= 30,000 J spring constant= 50,000N/mWe need to find out the compression in the spring. As we know that,
\(\longrightarrow E = \dfrac{1}{2}kx^2 \\\)
where \(x\) is the compression in the spring. So that,
\(\longrightarrow 30,000 J = \dfrac{1}{2}\times 50,000 \times x^2 \\\)
\(\longrightarrow x^2=\dfrac{60,000}{50,000} \\\)
\(\longrightarrow x^2=\dfrac{6}{5}= 1.2m^2\\\)
\(\longrightarrow x=\sqrt{1.2} m \\\)
\(\longrightarrow \underline{\underline{ x \approx 1.02 \ m }} \\\)
and we are done!
An athlete wants to test her physical endurance while completing an activity. Which statement best describes endurance?
Answer:
how long the athlete can sustain the activity
Explanation:
"Endurance" tests your body's ability to carry on a specific activity for a particular period of time. This is often confused with "stamina," which tests the body's ability to do a specific activity without getting exhausted.
An example of an endurance training for the muscles is by doing 5 sets of body weight squats with repetitions, let's say 25. Depending on one's endurance, the repetition may be increased. Another example is by doing 5 sets of lunges with 15 repetitions on each leg (a total of 30 repetitions).
Based on the Radioactive Decay chart in the reading, which of the following elements would emit destructive radioactive material? a. Plutonium b. Carbon c. Hafnium d. Thorium
Based on the Radioactive Decay chart in the reading, Plutonium is the element that would emit destructive radioactive material, therefore the correct answer is option A
What is radioactivity?This radiation is released when a nucleus undergoes radioactive decay and transforms into a different isotope that may be radioactive (unstable) or non-radioactive depending on the number of neutrons and protons in the nucleus (stable).in other words one can say The ability of some unstable atoms to emit nuclear radiation spontaneously
Thus, Plutonium is the element that would emit destructive radioactive material, according to the radioactive decay chart in the reading, so option A is the appropriate response.
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two sources of error and precaution in the centre of gravity experiment
Answer:
The answer to this question is given below in this explanation sections.
Explanation:
The weight of an object is concentrated at the center of gravity.The term center of gravity is used interchangeably with center of mass.For a symmetrical object the center of mass is located at the geometric center of the object.If the object is not symmetric we can determined the center of mass using the mentioned below.
Materials:
cardboardweight(washer,bolt,or fishing weight)hole punchpencilProcedure:
Cut the cardboard into a strange shape.Do not use a circle,square,rectangle,or any other common geometric shape.Punch a hole near the edge of the cut-out cardboard piece and hang it from a nail.Place the weight, a washer or bolt, on a thread and tie it off.Hang the thread and weight from the nail in front of the cardboard.use a pencil to draw a plumb line down the cardboard where the thread touches.This mark your center line from that hanging point.conclusion:
What would happen to the center of gravity of the shape if you were to spin it freely?
center of gravity experiment:
Balance a ruler with a hammer.Take a rubber band or string and make a loose loop around the hammer and ruler. Make sure the end of the hammer is touching the ruler,and then positions the ruler at the edge of the table.Balance two forces with a toothpick.A common magic trick using the properties of center of gravity.The two forks are balanced on the edge of the glass by a toothpick. Stand with your back and feet against a wall.Have someone place quarter on the floor at your feet.Try to pick it cup.Most people cant make these adjustments.Stand against a wall sideways with your arm and leg touching the wall,with nothing to from the out away hold onto.Try to lift your other leg straight out away from the wall.you wont be able to do it.The girls away win chairs lifting challanges place dining chairs against a wall.Bend over the chair so that your head touches the wall and you upper body is parallel to the floor.lift the chair to your chest to your chest and then try to stand up.please help me!
each form of a characteristic is called what?
What is the speed of sound in air?
Answer:
Around 330 m/s
The speed of sound in air is 343 meters per second
A truck with a mass of 2.00 × 103 kilograms is traveling at +19.0 meters/second along a road. It hits a stationary sedan with a mass 9.90 × 102 kilograms. If the truck and the sedan stick together after the collision, what is the final velocity of the two together?
Answer:
This one's easy
The final velocity of the truck and the sedan together is +7.19 m/s. This can be calculated using the law of conservation of momentum: m1v1 + m2v2 = (m1+m2)vf, where m1 and m2 are the masses of the truck and the sedan respectively, v1 is the velocity of the truck, v2 is the velocity of the sedan (which is 0 in this case) and vf is the final velocity of the truck and the sedan together.
PLZ PLZ PLZ PLZ PLZ PLZ PLZ HELPPPPPPPPPPPPPPPPP
Answer:
endoplasmic reticulum
free fall is possible on lunar but not on earth surface.Why?
Answer:
The earth has more gravity so that means if you jump out of a plane without a parachute u will die. But the moon has less gravity so u will not die when hit ground. But someone can probally explain it better than me.
More gravity equals more speed in some cases like falling
a ball is thrown directly downward with an initial speed of 8.85 m/s, from a height of 29.9 m. after what time interval does it strike the ground?
It takes approximately 0.902 seconds time interval for the ball to strike the ground.
To determine the time interval it takes for the ball to strike the ground, we can use the equations of motion. Since the ball is thrown directly downward, we can assume that the initial velocity (u) is negative (-8.85 m/s), and the acceleration due to gravity (g) is positive (9.8 m/s²).
The equation to calculate the time of flight (t) is
t = (v - u) / g
Where:
v = final velocity (when the ball strikes the ground)
u = initial velocity
g = acceleration due to gravity
In this case, the final velocity when the ball strikes the ground is 0 m/s (as it comes to rest). So, substituting the given values into the equation, we have
t = (0 - (-8.85)) / 9.8
t = 8.85 / 9.8
t = 0.902 seconds
Therefore, it takes approximately 0.902 seconds for the ball to strike the ground.
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Kamal's family is leaving for merry mountain resort once his parents get home from work on friday. Their house is 627 miles from the resort. They plan to stop and spend the night at a hotel after 4 hours of driving, then complete the rest of the trip on the second day. Their average speed is 60 miles per hour. Which equation can you use to find how long, x, they will drive on the second day?.
The time taken by Kamal's family to drive on the second day is 6.45 hours.
What is speed?
Speed is defined as the ratio of the time it takes for a body to cross a distance to the time it takes.
The time is calculated as:-
For 4 hours of driving at an average speed of 60 miles per hour, the distance covered is,
d = 60 x 4 = 240miles
Miles remaining for the second day is,
627 - 240 = 387 miles
Time taken to cover 387 miles second day is,
T = 387 / 60 = 6.45 hours
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the weight of the atmosphere above 1 m2 of earth's surface is about 100,000 n. density, of course, becomes less with altitude. but suppose the density of air were a constant 1.2 kg/m3.
The thickness of the air column above 1 m² of the Earth's surface that would have a weight of about 100,000 N is equal to 8,680.56 meters assuming the density of air remained constant at 1.2 kg/m³.
If the density of air were a constant 1.2 kg/m³ throughout the atmosphere, we can calculate the thickness of the air column that would have a weight of about 100,000 N on an area of 1 m².
The weight of the air column can be calculated using the formula:
Weight = density × volume × gravitational acceleration
We can rearrange the formula to solve for the volume:
\(\text{{Volume}} = \frac{{\text{{Weight}}}}{{\text{{density}} \times \text{{gravitational acceleration}}}}\)
Substituting the given values:
Weight = 100,000 N
Density = 1.2 kg/m³
Gravitational acceleration (g) ≈ 9.8 m/s²
\(Volume = \frac{100000 N}{(1.2 kg/m^3) \times (9.8 m/s^2)}\)
Volume ≈ 8,680.56 m³
Therefore, if the density of air were a constant 1.2 kg/m³, the thickness of the air column above 1 m² of the Earth's surface that would have a weight of about 100,000 N is approximately 8,680.56 meters.
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how is rotational inertia similar to inertia as we studied it in the previous chapters? how does torque affect rotation? explain the lever arm.
Rotational inertia is similar to inertia in that both deal with an object's resistance to changes in motion. Torque affects rotation by causing a change in an object's rotational motion. Lever arm refers to the distance between the axis of rotation and the point where a force is applied to an object.
Inertia is the tendency of an object to remain at rest or in uniform motion unless acted upon by an external force. Similarly, rotational inertia is an object's resistance to changes in its rotational motion. Both types of inertia depend on the mass of the object and the distribution of that mass relative to the axis of rotation.
Torque is defined as the force applied to an object multiplied by the distance from the axis of rotation. The greater the torque applied to an object, the greater the change in its rotational motion.
For example, if a wrench is used to apply a torque to a bolt, the bolt will either start to rotate or its rotational speed will increase.
In general, torque causes an object to experience an angular acceleration in the direction of the torque.
The lever arm determines the amount of torque that can be applied to an object. The longer the lever arm, the greater the torque that can be applied to an object.
Similarly, the shorter the lever arm, the smaller the torque that can be applied to an object.
In general, the lever arm is an important factor in determining how much torque can be applied to an object.
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If a person has the genotype Rr for hair where red is dominant to blue, what phenotype would this person have?
the person's phenotype would be red hair. phenotype is what you see on the outside, genotype is what the dna says. <3
An open container contained 150g of lead carbonate. After heating for 5 hours, the contents of the container were measured to have a mass of 98g.
How much mass was “lost” from the container? Where did it go?
Answer:
52 g was lost as carbon dioxide to the atmosphere
Explanation:
When lead carbonate is heated, it decomposes into two components:
1. Lead oxide
2. carbon dioxide
While the lead oxide remains a yellow solid in the heating container, the carbon dioxide escapes into the atmosphere as a gas. The equation of the reaction is as below:
\(PbCO_3_{(s)} --> PbO_{(s)} + CO_2_{(g)}\)
Hence, if a 150 g lead oxide is heated in a container and the final mass is 98 g, it means 52 g (150 - 98) of the total mass has been lost as carbon dioxide to the atmosphere.
Based on what you know about observations of the interstellar medium at wavelengths other than for visible light, select all of the correct statements from the following list.-The 21-cm radio observations are of neutral hydrogen.-Much interstellar dust between stars is not visible.-The source of hot gas observed at X-ray wavelengths is not known.-All interstellar material is cool.-Interstellar dust is observed at ultraviolet wavelengths.-Giant molecular clouds consist mostly of CO molecules.-Material observed at wavelengths longer than that of visible light is usually cool.
The appropriate statements are A, B, and G.
The 21-cm radio observations are of impartial hydrogen.A good buy of interstellar dust among stars isn't always seen.cloth located at wavelengths longer than that of Visible light is typically cool.Visible mild is a kind of electromagnetic radiation that is visible to the human eye. It is one small part of the electromagnetic spectrum, which also includes radio waves, microwaves, infrared radiation, ultraviolet radiation, X-rays, and gamma rays. Visible light has wavelengths between approximately 400 and 700 nanometers and is characterized by its ability to produce sensations of color in the human brain.
When light enters the eye, it passes through the cornea and lens, and is focused onto the retina, where specialized cells called photoreceptors convert the light into electrical signals that are transmitted to the brain. In physics, visible light is important for its role in understanding the behavior of electromagnetic radiation. It has many practical applications, such as in optical communication, microscopy, and astronomy.
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Complete Question:
Primarily based on what you understand approximately observations of the interstellar medium at wavelengths other than for visible mild, select all of the perfect statements from the following listing.
A). The 21-cm radio observations are of impartial hydrogen.
B). much interstellar dust among stars isn't seen.
C). The supply of warm gasoline observed at X-ray wavelengths isn't regarded.
D). All interstellar material is cool.
E). Interstellar dust is observed at ultraviolet wavelengths.
F). Giant molecular clouds consist mostly of CO molecules.
G). Material observed at wavelengths longer than that of visible light is usually cool.
A PM DC electric motor will be selected for an arm mechanism which has a length of 0.3 meters. This arm is aimed to lift 2 kg of load attached to its free end while rotating with 60 rpm at maximum power. There will be a gearbox with 3:1 ratio (speed reducer) and 80% efficiency attached between the motor and the arm. a) State the stall torque, maximum speed and power requirements for the desired motor at maximum loading, b) If input voltage is required to be 24 V and armature resistance of all possible motors is 1.5 ohm, state electrical constant and torque constant of the desired motor.
On the PM DC electric motor:
a) Stall torque is 5.88 Nm. Maximum speed is 20 rpm. Power requirements are approximately 12.29 W.b) Electrical constant is 1.2 V/(rad/s). Torque constant is approximately 3.92 Nm/A.How to solve for the DC electric motor?a) To determine the stall torque, maximum speed, and power requirements for the desired motor:
Stall torque (Ts):
The stall torque is the maximum torque generated by the motor when it is not rotating (at 0 rpm). It can be calculated using the equation:
Ts = (Load mass) x (Acceleration due to gravity) x (Length of the arm)
Given:
Load mass = 2 kg
Acceleration due to gravity = 9.8 m/s²
Length of the arm = 0.3 meters
Ts = 2 kg x 9.8 m/s² x 0.3 meters
Ts = 5.88 Nm
Therefore, the stall torque of the desired motor is 5.88 Nm.
Maximum speed (Nmax):
The maximum speed is given as 60 rpm. However, considering the speed reduction by the gearbox, calculate the maximum speed at the motor shaft. The maximum speed at the motor shaft (Nmotor) can be calculated as:
Nmotor = (Nmax) / (Gearbox ratio)
Given:
Nmax = 60 rpm
Gearbox ratio = 3:1
Nmotor = (60 rpm) / (3)
Nmotor = 20 rpm
Therefore, the maximum speed at the motor shaft is 20 rpm.
Power requirements (P):
The power requirements at maximum loading can be calculated using the equation:
P = (Stall torque) x (Maximum speed) / (9.55)
Given:
Stall torque = 5.88 Nm
Maximum speed = 20 rpm
P = (5.88 Nm) x (20 rpm) / (9.55)
P ≈ 12.29 W
Therefore, the power requirements of the desired motor at maximum loading are approximately 12.29 W.
b) To find the electrical constant (Ke) and torque constant (Kt) of the desired motor:
Electrical constant (Ke):
The electrical constant relates the back electromotive force (EMF) of the motor to its angular velocity. It can be calculated as the ratio of the voltage across the motor terminals to the maximum speed at the motor shaft:
Ke = (Input voltage) / (Nmotor)
Given:
Input voltage = 24 V
Nmotor = 20 rpm
Ke = (24 V) / (20 rpm)
Ke ≈ 1.2 V/(rad/s)
Therefore, the electrical constant of the desired motor is approximately 1.2 V/(rad/s).
Torque constant (Kt):
The torque constant relates the torque output of the motor to the current flowing through its armature. It can be calculated as the ratio of the stall torque to the current:
Kt = (Stall torque) / (Armature current)
Given:
Stall torque = 5.88 Nm
Armature resistance = 1.5 ohm
Kt = (5.88 Nm) / (1.5 ohm)
Kt ≈ 3.92 Nm/A
Therefore, the torque constant of the desired motor is approximately 3.92 Nm/A.
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Suppose Alex is navigating using a compass. She starts walking at an angle of 60° north of east and walks a total of 100 m. How far north is she from the starting point? How far east?
Answer:
\(50\:\mathrm{m\: North}\\50\sqrt{3}\:\mathrm{m\: East}\)
Explanation:
We can create a 30-60-90 triangle. The distance she walked is then the hypotenuse of the triangle, and using 30-60-90 triangle rules, we have the following:
The North leg is opposite to the \(30^{\circ}\) angle. Therefore, if we call this distance \(y_N\), we have the following:
\(\sin 30^{\circ}=\frac{y_N}{100},\\\frac{1}{2}=\frac{y_N}{100},\\y_N=\fbox{$50\:\mathrm{m}$}\).
The East leg is opposite to the \(60^{\circ}\\\) angle. If we call this distance \(x_E\), we have:
\(\sin 60^{\circ}=\frac{x_E}{100},\\\frac{\sqrt{3}}{2}=\frac{x_E}{100},\\x_E=\fbox{$50\sqrt{3}\:\mathrm{m}$}\).
Hi I need help my home work says can you change use the sun energy to produce the food in this sandwich the cheese came out from the milk I'm a cow that a crash that took energy from the sun for explain fill in the other chain
Answer: Food chain: cheese a product of the sun.
Explanation:
Food chain: The energy taken from the sun through photosynthesis enables plants to exist and grow.
The animal like cow takes chemical energy from plants by eating plants product.
The cow is able to produce the milk because of the energy that has been taken from the plant.
Since the cheese came out from the milk, we can therefore conclude that the food is initially a product of the sun.
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AND IF YOURE ABLE TO PLS PROVIDE THE EXPLANATION TYSMMMM
In frustration, a junior drops the APUSH textbook 1.5 m. How long will it take to hit the ground?
The time taken for the APUSH textbook to hit the ground is determined as 0.55 seconds.
What is time of motion?The time of motion of an object is the time taken for the object to travel from its initial point to the final point.
The time taken for the APUSH textbook to hit the ground is calculated as follows;
t = √(2h/g)
where;
h is the height of fall of the textbookg is acceleration due to gravityt = √(2 x 1.5/9.8)
t = 0.55 seconds
Thus, the time taken for the APUSH textbook to hit the ground is determined as 0.55 seconds.
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solar driven heat engines which extract electrical power from thermal radiation called
Solar-driven heat engines that extract electrical power from thermal radiation are called thermoelectric generators (TEGs).
Thermoelectric generators (TEGs) are devices that can convert thermal energy directly into electrical energy using a phenomenon known as the Seebeck effect. It converts the temperature difference between two metals or semiconductors into an electrical voltage.
The process used by thermoelectric generators is based on the thermoelectric effect, which is a combination of thermal and electrical phenomena.
Thermoelectric generators (TEGs) are widely used in remote power applications and waste heat recovery because they are compact, reliable, and maintenance-free. They are ideal for use in situations where maintenance is challenging, such as in remote locations or where there are no alternative power sources available.
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A closely wound rectangular coil of 80 turns has dimensions 25. 0 cm
by 40. 0 cm. The plane of the coil is rotated from a position in which it makes an angle of 37. 0 degrees with a magnetic field of 1. 10 T
to a position perpendicular to the field. The rotation takes 0. 0600 s. What is the average emf E
induced in the coil?
The average emf induced in the coil is 0. 533 V. The average emf induced in the coil can be calculated using Faraday's law of electromagnetic induction. The formula for the average emf induced in a coil is given by:
E = N * (ΔΦ / Δt)
where E is the average emf, N is the number of turns in the coil, ΔΦ is the change in magnetic flux, and Δt is the time interval.
In this case, the number of turns is 80, and the time interval is 0.0600 s. The change in magnetic flux can be calculated by finding the initial and final flux values.
The initial flux is given by Φ1 = B * A * cos(θ1), where B is the magnetic field, A is the area of the coil, and θ1 is the angle between the coil and the magnetic field.
The final flux is given by Φ2 = B * A * cos(θ2), where θ2 is 90 degrees since the coil is perpendicular to the field.
Substituting the values into the formula, we have:
\(E = 80 * (Φ2 - Φ1) / Δt\)
Calculating the values, we find:
\(Φ1 = (1.10 T) * (0.25 m) * (0.40 m) * cos(37.0°) = 0.536 WbΦ2 = (1.10 T) * (0.25 m) * (0.40 m) * cos(90°) = 0.110 WbΔΦ = Φ2 - Φ1 = 0.110 Wb - 0.536 Wb = -0.426 Wb\)
Substituting the values into the formula, we get:
E = 80 * (-0.426 Wb) / 0.0600 s = -0.568 V
Taking the absolute value, the average emf induced in the coil is 0.568 V or approximately 0.533 V.
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the electromagnetic spectrum organizes electromagnetic waves based on their
All electromagnetic waves are organized into a continuum called the electromagnetic spectrum according to their frequency and wavelength.
What are frequency and wavelength?The wavelength, which will also apply to troughs, is the separation between two wave crests. The frequency is measured on cycles per second (Hz), which is the quantity of vibrations that cross a specific area in a second (Hertz). In this article, the relationship between frequency and wavelength is covered.
What is an example of a wavelength?Here are some wavelength examples: Yellow Light is a prime example. The wavelength range of all visible light is 400 to 700 nanometers (nm). The wavelength of yellow light is 570 nanometers or such. Wavelength (nm) (nm)
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Sunlight is observed to focus at a point 18.5 cm behind a lens.
a. what kind of lens is it?
b. what is the focal length of the lens?
The lens used is a convex lens and it's focal length is 18.5cm.
To find the answer, we have to know more about the converging lens.
How to find the type of lens used and it's focal length?a) In light of the fact that sunlight focuses 18.5 centimeters behind the lens. The lens must be a converging lens because there is an actual image behind it. Thus, the lens used here is Convex lens.
b) To find the focal length, we have to use the Lens formula,
\(\frac{1}{f}=\frac{1}{v} -\frac{1}{u}\)
Since the light rays coming from sun, the source is at infinite distance, thus, object distance u is infinity.Since the image is behind the lens at a distance 18.5cm, the image distance v is 18.5cm.Thus, by formula the focal length of the lens is,\(\frac{1}{f}=\frac{1}{18.5}-\frac{1}{\alpha} \\\\ \frac{1}{f}=\frac{1}{18.5}-0=\frac{1}{18.5}\\\\f=18.5cm\)
Thus, we can conclude that, the lens used is a convex lens and it's focal length is 18.5cm.
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At highway speeds, a particular automobile is capable of an acceleration of about 1.8 m/s 2 . at this rate, how long does it take to accelerate from 65 km/h to 120 km/h?
A particular automobile with an initial speed of 65 km/h will come to 120 km/h in 8.49 s
The formula for Uniformly varied rectilinear motion (UVRM) and procedure we will use to solve this exercise is:
t = (vf - vi) /a
Where:
vf = final velocityvi = initial velocityt = timea = accelerationInformation about the problem:
vi= 65 km/hvf = 120 km/ha= 1.8 m/s2t = ?By converting the velocity from km/h to m/s, we get:
65 km/h * (1000 m / 1 km) * (1 h / 3600 s) = 18.056 m/s
120 km/h * (1000 m / 1 km) * (1 h / 3600 s) = 33.33 m/s
Applying the time formula, we have:
t = (vf - vi) /a
t = (33.33 m/s - 18.056 m/s) / 1.8 m/s2
t = 15.274 m/s / 1.8 m/s2
t = 8.49 s
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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A car travels east at a constant velocity. The net force on the car is:
suppose a current flows in a horizontal conducting loop in such a way that the magnetic flux produced by this current points upward. 1)as viewed from above, in which direction is this current flowing? a) b) submit (survey question) 2)briefly explain your reasoning submit
The current will be flowing in an anti-clockwise direction .
if we consider a current carrying loop according to the question lying horizontally, say X-Y plane . the magnetic flux has a direction pointing upwards . in order to find the direction of the current flowing in the loop we can use the screw / right hand thumb rule by curling our fingers in the direction of the magnetic flux and the thumb of the right hand will point towards the the direction of the current flowing in the coil . According to the situation, the direction of the current comes out to be anti clockwise when viewed from the above of the coil . From below the coil the direction of the current will be reversed and it will turn clockwise.
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Can someone help me plz
Answer:
Oceanographers can measure the salinity of a body of water in several ways, but the two most common methods are using a hydrometer set or a salinometer.
A hydrometer set consists of a cylinder, a hydrometer, a thermometer, and a temperature-salinity-density or TSD graph.
Explanation:
Hope this helps
if so please mark brainlist! thx
Answer:
B
because measuring the density of the water