The Mac
@TheMac
10 April, 12:27
mouth
Origin
Old English mūth, of Germanic origin; related to Dutch mond and German Mund, from an Indo-European root shared by Latin mentum ‘chin’.
Origin
Old English mūth, of Germanic origin; related to Dutch mond and German Mund, from an Indo-European root shared by Latin mentum ‘chin’.
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Linda Moore
@mykismet06350
10 April, 12:40
In response The Mac to his Publication
Jas 3:3 Behold, we put bits G5469 in the horses' mouths, that they may obey us; and we turn about their whole body.
khal-ee-nos'; from G5465; a curb or head-stall (as curbing the spirit):—bit, bridle.
khal-ee-nos'; from G5465; a curb or head-stall (as curbing the spirit):—bit, bridle.
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Linda Moore
@mykismet06350
10 April, 12:49
In response Linda Moore to her Publication
G4750
stom'-a; mouth-the mouth, as part of the body: of man, of animals, of fish, etc.
since thoughts of a man's soul find verbal utterance by his mouth, the "heart" or "soul" and the mouth are distinguished
the edge of a sword
Sword/Words
stom'-a; mouth-the mouth, as part of the body: of man, of animals, of fish, etc.
since thoughts of a man's soul find verbal utterance by his mouth, the "heart" or "soul" and the mouth are distinguished
the edge of a sword
Sword/Words
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The Mac
@TheMac
10 April, 03:35
In response Linda Moore to her Publication
Natural frequency, also known as eigenfrequency, is the frequency at which a system tends to oscillate in the absence of any driving or damping force.
The motion pattern of a system oscillating at its natural frequency is called the normal mode (if all parts of the system move sinusoidally with that same frequency).
If the oscillating system is driven by an external force at the frequency at which the amplitude of its motion is greatest (close to a natural frequency of the system), this frequency is called resonant frequency.
The motion pattern of a system oscillating at its natural frequency is called the normal mode (if all parts of the system move sinusoidally with that same frequency).
If the oscillating system is driven by an external force at the frequency at which the amplitude of its motion is greatest (close to a natural frequency of the system), this frequency is called resonant frequency.
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The Mac
@TheMac
10 April, 03:36
In response The Mac to his Publication
Crossed S W or Ds
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The Mac
@TheMac
10 April, 03:39
In response The Mac to his Publication
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The Mac
@TheMac
10 April, 03:40
In response The Mac to his Publication
Bidirectional ringing?
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The Mac
@TheMac
10 April, 03:40
In response The Mac to his Publication
By bell?
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The Mac
@TheMac
10 April, 03:42
In response The Mac to his Publication
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The Mac
@TheMac
10 April, 03:44
In response The Mac to his Publication
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Linda Moore
@mykismet06350
10 April, 05:31
In response The Mac to his Publication
❤️Beloved =65
Rom 11:17 And if some of the branches be broken off, and thou, being a wild olive tree, G65 wert graffed in among them, and with them partakest of the root and fatness of the olive tree;
Mat 3:17 And lo a voice from heaven, saying, This is my beloved G27 Son, in whom I am well pleased.
ag-ap-ay-tos'; from G25; beloved:—(dearly, well) beloved, dear.,esteemed, dear, favourite, worthy of love
Rom 11:17 And if some of the branches be broken off, and thou, being a wild olive tree, G65 wert graffed in among them, and with them partakest of the root and fatness of the olive tree;
Mat 3:17 And lo a voice from heaven, saying, This is my beloved G27 Son, in whom I am well pleased.
ag-ap-ay-tos'; from G25; beloved:—(dearly, well) beloved, dear.,esteemed, dear, favourite, worthy of love
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The Mac
@TheMac
11 April, 05:18
In response Linda Moore to her Publication
dear
/dɪə/
adjective: dear; comparative adjective: dearer; superlative adjective: dearest
1.
regarded with deep affection.
"a dear friend"
beloved
loved
much loved
darling
adored
cherished
precious
esteemed
respected
worshipped
close
intimate
confidential
bosom
boon
favourite
best
treasured
valued
prized
special
favoured
/dɪə/
adjective: dear; comparative adjective: dearer; superlative adjective: dearest
1.
regarded with deep affection.
"a dear friend"
beloved
loved
much loved
darling
adored
cherished
precious
esteemed
respected
worshipped
close
intimate
confidential
bosom
boon
favourite
best
treasured
valued
prized
special
favoured
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The Mac
@TheMac
11 April, 05:21
In response The Mac to his Publication
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The Mac
@TheMac
11 April, 05:21
In response The Mac to his Publication
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The Mac
@TheMac
11 April, 05:22
In response The Mac to his Publication
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The Mac
@TheMac
11 April, 05:22
In response The Mac to his Publication
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The Mac
@TheMac
11 April, 05:22
In response The Mac to his Publication
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The Mac
@TheMac
11 April, 05:23
In response The Mac to his Publication
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The Mac
@TheMac
11 April, 05:25
In response The Mac to his Publication
The Text speaks of it, as an Adorning, much more excellent and valuable than Gold, or Pearls, or the most costly Array […]
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The Mac
@TheMac
11 April, 05:26
In response The Mac to his Publication
Her gentlewomen, like the Nereides,
So many mermaids, tended her i’ the eyes,
And made their bends adornings […]
So many mermaids, tended her i’ the eyes,
And made their bends adornings […]
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The Mac
@TheMac
11 April, 05:28
In response The Mac to his Publication
adorning
present participle of adorn
Noun
adorning (plural adornings)
(archaic) An adornment.
present participle of adorn
Noun
adorning (plural adornings)
(archaic) An adornment.
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A horn antenna or microwave horn is an antenna that consists of a flaring metal waveguide shaped like a horn to direct radio waves in a beam. Horns are widely used as antennas at UHF and microwave frequencies, above 300 MHz. They are used as feed antennas (called feed horns) for larger antenna structures such as parabolic antennas, as standard calibration antennas to measure the gain of other antennas, and as directive antennas for such devices as radar guns, automatic door openers, and microwave radiometers. Their advantages are moderate directivity, low standing wave ratio (SWR), broad bandwidth, and simple construction and adjustment
05:29 AM - Apr 11, 2022
In response The Mac to his Publication
Only people mentioned by TheMac in this post can reply
The Mac
@TheMac
11 April, 05:32
In response The Mac to his Publication
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The Mac
@TheMac
11 April, 05:34
In response The Mac to his Publication
The waves travel down a horn as spherical wavefronts, with their origin at the apex of the horn, a point called the phase center. The pattern of electric and magnetic fields at the aperture plane at the mouth of the horn, which determines the radiation pattern, is a scaled-up reproduction of the fields in the waveguide. Because the wavefronts are spherical, the phase increases smoothly from the edges of the aperture plane to the center, because of the difference in length of the center point and the edge points from the apex point. The difference in phase between the center point and the edges is called the phase error. This phase error, which increases with the flare angle, reduces the gain and increases the beamwidth, giving horns wider beamwidths than similar-sized plane-wave antennas such as parabolic dishes.
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