Explanation:
Sound signals used in waterways are a mode of communication with the other boaters to avoid any confusion and avoid collisions.
In order to show that we disagree with the other boater decision, the sound signal to blow is five or more short blast. This will give an impression to the other boater that I have not agreed with his decision.
The sound signal that I will give the other boater to inform him that I wish him to pass his boat on my left side is one short blast. This will tell him to pass on my left side.
The sound signal you should use to indicate you disagree with other boaters intentions is five or more short blasts
Five or more short blast shows a danger signal. They are signals used to indicate disagreement. They are one of the types of sound signals that show you are not in agreement with other boater’s intention.
Further ExplanationSound signals are also known as blasts. There are 2 common sound signals, short blast and prolonged blast. They are used when two vessels are heading towards each other.
Although these types of sound signals cannot be used in conditions that affect visibility such as fog.
However, there are different sound signals combinations and it is very important for all boaters to understand what each of the sound signals means.
The short blast is just 1 seconds while the prolonged blast lasts for duration of 4-6 seconds.
Sound signals can actually mean a change in direction to other boaters, it has different meanings.
One short blast indicate that you are informing other boaters you want to pass them from your port side (left-hand side), prolonged blasts means you are informing other boaters you want to pass them from starboard side (right-hand side) and three shorts blast means you are informing other boaters you are operating astern propulsion
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prolonged blastsound signalsshort blastboatersvesselsA ray of light traveling in air strikes the surface of a liquid. if the angle of incidence is 31.7◦ and the angle of refraction is 21.3◦ , find the critical angle for light traveling from the liquid back into the air. answer in units of ◦ .
Which word best completes the sentence?
A person with a blood alcohol content between 0.16-0.30% is severely impaired and has an increased risk of____from choking on vomit
Asphyxiation
Depression
Aggression
Coordination
Which of the following planets has the most moons? venus mercury earth mars?
What is the power of a machine that pushes with a force of 3 n for a distance of 9 m in 8 s?
Which of the following statements about diodes and triodes is correct
Answer:
Diodes, which are often utilized as rectifiers, have two electrodes.- is correct
Explanation:
I took rhe test so just just trust me
Which of the following is a good electrical conductor?
plastic
concrete
wood
gold
A substance with a pH of 9 has
A) no H30+ ions or OH- ions.
B) more H30+ ions than OH- ions.
C) more OH- ions than H30+ ions.
D) the same number of H30+ ions as it does OH- ions.
The ferris wheel at the landmark navy pier in chicago takes 7 minutes to make one full rotation. the height, h, in feet, above the ground of one of the six-person cars can be modeled by , where t is time, in minutes. using for one full rotation, this car's minimum height, in feet, is
The Ferris wheel at the landmark navy pier in Chicago takes 7 minutes to make one full rotation. This gives car's minimum height is 10 feet.
What is range of modeled sine function?As the value of a function which is modeled in sine function vary from -1 to +1. The range of modeled sine function is from [-1,+1]
Given information-
The Ferris wheel at the landmark navy pier in Chicago takes 7 minutes to make one full rotation.
The function of height (h) modeled is in the sine function.
The time (t) is in minutes.
In the given function for the height for the time and height graph the sine function is in the product with the number 70.
As the value of sine function varies from -1 to +1. Thus the maximum height of the car should be at +1 value of sine and the minimum height of the car should be at -1 value of sine.
Thus for the minimum height the value of sine must be -1. As function is in the product with the number 70. Thus the value will of height will be,
H(t)=70(-1)+80
H(t)=10
Thus, this car's minimum height is 10 feet.
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The period of a simple pendulum is 3.8 s. the length of the pendulum is doubled. what is the period t of the longer pendulum? t = s
The time period of a simple pendulum is defined as the time taken by the pendulum to finish one full oscillation .
Time period (T) of a simple pendulum = 2π[tex]\sqrt{l/g}[/tex]
given :
Time period (T1) = 3.8 second
L1 = ?
Time period (T1) = 2π[tex]\sqrt{L1/g}[/tex]
3.8 sec = 2 * 3.14 [tex]\sqrt{L1/9.8}[/tex]
squaring both the sides
14.44 = 39.44 * ( L1 / 9.8 )
L1 = 35.16 m
since , the length of the pendulum is doubled
L2 = L1*2 = 35.16 * 2 = 70.32 m
Let the period t of the longer pendulum will be = T2
Time period (T2) = 2π[tex]\sqrt{L2/g}[/tex]
= 2 * 3.14 [tex]\sqrt{70.32/9.8}[/tex]
= 16.83 seconds
The time period t of the longer pendulum will be 16.83 seconds
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Final answer:
Doubling the length of a simple pendulum increases its period according to the square root of 2, resulting in a new period of approximately 5.37 seconds from the original 3.8 seconds.
Explanation:
The question asks about the effect of doubling the length of a simple pendulum on its period. To approach this, we rely on the formula for the period of a simple pendulum: T = 2π√(L/g), where T is the period, L is the length of the pendulum, and g is the acceleration due to gravity. Doubling the length of the pendulum means that we replace L with 2L in the formula, which affects the period.
To find the new period after doubling the length, we calculate T'= 2π√(2L/g). This can be simplified to T' = T√2, given that T is the original period. Since the original period is given as 3.8 seconds, we calculate the new period as 3.8√2, which approximates to 5.37 seconds.
An electron is ejected at a speed of 1.7*10^6 m/s from the electron gun of a computer monitor. If the viewing screen is 32 cm from the end of the gun, how far will the electron travel in the vertical direction before hitting the screen?
The Earth is approximately 150 million kilometers away from the Sun. If light travels at a speed of approximately 300,000 kilometers per second, about how long does it take for light from the Sun to reach the Earth?
The correct answer to the question is 8.33 minutes.
CALCULATION:
The distance of earth from sun s = 150 million km.
We know one million = 10 lakh = [tex]10^6[/tex]
Also 1 km = [tex]10^3\ m[/tex]
Hence, the distance s = [tex]150\times 10^6\times 10^3\ m[/tex]
= [tex]15\times 10^{10}\ m[/tex]
The speed of light c = 300,000 km per second
= [tex]3\times 10^8\ m/s[/tex]
We are asked to calculate the time.
The time of the reaching earth is calculated as -
[tex]time=\ \frac{distance}{velocity}[/tex]
[tex]t=\ \frac{s}{c}[/tex]
[tex]=\ \frac{15\times 10^{10}} {3\times 10^8}\ second[/tex]
[tex]=\ 500\ seconds[/tex]
We know one minute = 60 second.
Hence, 500 seconds = [tex]\frac{500}{60}\ minute[/tex]
= [tex]8.33\ minute[/tex] [ans]
Answer:
about 10 minutes
Explanation:
study island
The direction of the buoyant force on an object placed in fluid is
When two or more waves are at the same place at the same time, the resulting effect is called?
When two or more waves are present at the same place at the same time, then the resulting effect is called as superposition.
What is Superposition?The principle of Superposition of waves states that the resultant displacement of a group of different waves in a medium at a given point of time at the same place is equal to the vector sum of the individual displacements which are produced through each of the wave at that specific point in the medium. There are two types of superposition of inference of waves and these are the constructive interference and the destructive interference.
Most of the waves generally appears complex in a medium because of the result from the two or more waves which combine as they come together at the same place at the same point of time in the medium.
An example of superposition of waves is the silt back-fill of any underground drain which would form some time after the ground is present immediately above it.
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A bowl-shaped depression formed by a mountain glacier is termed a(n) ____________.
The speed of light of a ray of light traveling through a distance having an absolute index of refraction of 1.1 is?
From the question, the refractive index is 1.1
The constant distance is 299,792,458 m
Therefore, speed of light is distance travelled/refractive index
= (299,792,458 m/s) / 1.1 = 272,538,598 m/s
The speed of light is 272,538,598 m/s
What is speed of light?The speed of light is the average distance light waves is travelling through a medium at an average period of time.
Therefore, The speed of light is 272,538,598 m/s.
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An automobile starter rated at 2.25 hp draws how many amps from a 10.0 V battery?
An automobile starter rated at 2.25 hp (which converts to 1683.5 Watts) would draw approximately 168.35 Amps from a 10.0 Volt battery.
Explanation:The question is asking how many amps an automobile starter rated at 2.25 horsepower would draw from a 10.0 Volt battery. We can start by converting the horsepower to watts - as 1 horsepower is approximately 746 watts (2.25 hp = 1683.5 W).
Using the power formula in physics, P = IV where P is the power (in watts), I is the current (in amperes) and V is the voltage (in volts), we can calculate the current, I = P/V. That gives I = 1683.5 W / 10.0 V = 168.35 Amps. Hence, The starter would draw approximately 168.35 Amps from the battery.
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if you're hiking in the mountains and find a cliff of granite which of these statements must be true?
A) the granite formed near the earths surface
B) the granite was uplifted or uncovered by erosion
C) the magma that formed it cooled relatively quickly
D) the granite contained continued very little feldspar and quartz
_____ is the rate of change in velocity.
Answer:
Acceleration
Explanation:
Acceleration is the rate of change in velocity. Mathematically, it is given by :
[tex]a=\dfrac{v-u}{t}[/tex]
Where
v = final velocity of an object
u = initial velocity of an object
t = time taken
It can also be written in differentiating form as :
[tex]a=\dfrac{dv}{dt}=\dfrac{\Delta v}{\Delta t}[/tex]
For an freely falling object, the value of acceleration is equal to g i.e. 9.8 m/s².
A natural-gas pipeline with a diameter of 0.250 m delivers 1.55 m^3 of gas per second. What is the flow speed of the gas
The gas flow speed in a pipeline with a diameter of 0.250 m delivering 1.55 m³ of gas per second is approximately 31.56 m/s.
Explanation:The question asks for the flow speed of the gas in a natural-gas pipeline with a specific diameter, which can be calculated through the continuity equation used in fluid dynamics. This equation states that the volume flow rate (Q) is equal to the velocity of the flow (v) times the cross-sectional area of the pipe (A). Therefore, we can rearrange the equation to find the velocity as V = Q/A.
The cross-sectional area A of the pipeline can be calculated using the formula for the area of a circle since the pipe is essentially a circular cylinder: A = πr², where r is the radius of the pipeline. Given the pipeline diameter of 0.250 m, the radius is half this value or 0.125 m. Substituting this into the area formula gives A = π*(0.125 m)² = 0.0491 m².
Finally, we can find the flow speed by dividing the given volume flow rate (1.55 m³/s) by the calculated cross-sectional area: V = Q/A = 1.55 m³/s/0.0491 m² = 31.56 m/s. So, the gas flow speed in the pipeline is approximately 31.56 meters per second.
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Space ships have given scientists important information about mercury, venus and mars true or false.
True, spaceships have provided invaluable information about Mercury, Venus, and Mars through missions like the MESSENGER, sending back details about the planet's surfaces and their atmospheres.
Explanation:True, space ships have indeed provided scientists with important information about Mercury, Venus, and Mars. For instance, data from the MESSENGER mission helped scientists create a rotating globe of Mercury, showing variations in the planet's surface composition. Furthermore, probes have successfully penetrated the atmospheres of Venus and Mars, landed on their surfaces, and obtained significant data.
In 1971, NASA's Mariner 9 became the first spacecraft to orbit another planet, mapping the entire surface of Mars and discovering a plethora of geological features. Similarly, on Venus and Mercury, spacecrafts have sent back detailed photos and compositions of their surfaces.
Therefore, space ships are indeed a critical tool in our ongoing exploration and understanding of our celestial neighbors.
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A heat-conducting rod consists of an aluminum section, 0.30 m long, and a copper section, .70m long. Both sections have a cross-sectional area of 4 · 10⁻⁴m² The aluminum end of the rod is maintained at a temperature of 10°C, while the copper end is maintained at 160°C. What is the temperature at the point where the aluminum and copper sections meet? The thermal conductivity of aluminum is 205 W/m ∙ K, and of copper is 385 W/m ∙ K.
77°C
60°C
71°C
65°C
55°C
What are the coefficients that would balance the following chemical equation? ___KClO3 → ___KCl + ___O2
Which one of the following is the equation for the first law of thermodynamics?
A. PV = nRT
B. PV/T
C. ΔU = Q – W
D. W = PΔV
Answer:
c
Explanation:
which aspect of relativity makes faster-than-light travel theoretically possible?
A) time dilation
B) the ability of space-time to move
C) mass-energy equivalence
D) gravity bending light
Answer:
The ability of space-time to move
Explanation:
The ability of space-time to move, as allowed by Einstein's general theory of relativity, potentially enables faster-than-light travel by distorting space-time. This aspect is foundational to the concept of a warp drive, which could let objects traverse vast distances quickly without locally breaking the light speed limit.
The aspect of relativity that makes faster-than-light travel theoretically possible is Option B) the ability of space-time to move. According to Einstein's general theory of relativity, massive objects cause a distortion in space-time, which in theory could allow for shortcuts like wormholes, potentially enabling superluminal (faster-than-light) travel without violating the universal speed limit set by the speed of light in a vacuum.
As per the GRASP CHECK, the correct statement is d. The space-time continuum is distorted by gravity, and gravity affects the motion of light. This principle signifies that gravity can bend the path of light, indicating its profound effect on the fabric of space-time itself. Such a bending of space-time, extended to the concept of a warp drive, might facilitate travel across vast distances in less time than light, while the object itself would not locally exceed the speed of light.
Special relativity is a realm of physics dealing with high-speed motion and shows how time, length, and relativistic mass are affected. Effects like time dilation and length contraction become significant only at speeds approaching that of light, hence their consideration in science fiction plots involving relativistic travel, like the example B given in the science fiction plots question.
Which of the following correctly describes a solenoid?
A) The magnetic field around a solenoid is unipolar.
B) The field around a solenoid is termed a bar magnet.
C) A solenoid is created by winding current carrying wire into a coil.
D) Increasing the current in the wires will reduce the magnetic field outside of the solenoid.
Answer;
C) A solenoid is created by winding current carrying wire into a coil.
Explanation;
-A solenoid is a coil of insulated or enameled wire wound on a rod-shaped form made of solid iron, solid steel, or powdered iron.
-Solenoids have a wide range of applications, for instance they are used as electromagnets, as inductors in electronic circuits, and as miniature wireless receiving antennas.
Is there more potentioal energy at the top of bottom of a ramp?
Your friend comments that the bright star must give off much more light than the dimmer star. Is he necessarily right?
The energy an object possesses due to its form and position is know as
Why did the magnitude of the doppler shift increase as the velocity of the sound source increased?
Explanation:
Doppler effect: It is the phenomenon in which there is relative motion between the source and the observer or the source and the listener. There is an apparent change in the frequency.
When the observer and the source are moving towards each other then the frequency increases.
When the observer and the source are moving away from each other then the frequency decreases.
The expression of the speed of the wave in terms of the frequency is as follows;
[tex] v=f\lambda[/tex]
Here, v is the speed of the wave, f is the frequency of the wave and [tex]\lambda[/tex] is the wavelength of the wave.
From the above relation, it can be concluded that speed of the sound is directly proportional to the frequency of the wave.
The magnitude of the Doppler shift increases when the velocity of the sound source is increased.
There are different kinds of effects. The effect of the increasing the velocity of the sound source on the magnitude of the Doppler shift is that the faster the source is, the greater the shift.
Doppler effectThis is known as the process whereby a relative motion is known to exist between the source and the observer or between the source and the listener.
The Doppler effect is seen if the speed of the source is said to be approaching slower than the speed of the waves.
When the source is said to moves at the same speed as or even faster than the wave itself can move, a different kind of situation is seen.
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Boyle's law says that the volume of a gas varies inversely with the pressure. when the volume of a certain gas is 5l, the pressure is 512 kpa(kilopascals). what is the pressure when the volume is 4l