JP4593367B2 - Device for measuring changes in attractive force - Google Patents

Device for measuring changes in attractive force Download PDF

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JP4593367B2
JP4593367B2 JP2005161967A JP2005161967A JP4593367B2 JP 4593367 B2 JP4593367 B2 JP 4593367B2 JP 2005161967 A JP2005161967 A JP 2005161967A JP 2005161967 A JP2005161967 A JP 2005161967A JP 4593367 B2 JP4593367 B2 JP 4593367B2
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attractive force
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幸男 金澤
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幸男 金澤
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本発明は、引力の働く速さを測定しようとするものであり、詳しくは太陽と地球の空間及び宇宙空間の星と星、物体と物体の間で働く引力の変化を測定するための装置を使って測定を行うことに関するものである。 The present invention is intended to measure the speed of attraction, and more specifically, an apparatus for measuring changes in attraction acting between the sun and the earth and the stars and stars in outer space, and between objects. It is related to using and measuring.

従来、引力の働く速さは光の速さと同じであるとされていて、正確な測定が行われていないものと思われ、そのため納得できないことが多くあり、引力の働く速さの正確な測定を行いたいと思い、測定するための手段を提供することを目的とするものである。   Traditionally, it is said that the speed at which attractive force works is the same as the speed of light, and it seems that accurate measurement has not been performed. The purpose is to provide a means for measuring.

引力の働く速さが光の速さと同じであるとされている現在であるけども、確証されていないため引力の変化を測定するための装置を提供するものである。引力の変化を測定することにより引力の働く速さがはっきりすれば今まで進んでいなかった新分野での発展が期待できるもので、必要な課題である。 Although it is assumed that the speed of attraction is the same as the speed of light, it has not been confirmed, so it provides a device for measuring changes in attraction. If the speed of the attractive force is clarified by measuring the change in attractive force, it can be expected to develop in a new field that has not progressed until now, which is a necessary issue.

上記目的を達成するために、請求項1に係る発明は、地上に観測地点を定め、観測地点には二つの櫓を組み、櫓からはそれぞれ重りを付けた糸を吊り下げ、吊り下げた二本の糸が正確に南北になるよう調整を行い、吊り下げた糸と糸との延長線上に太陽の中心が合致した時間と、太陽から地球までの光の届く時間を差し引いた時間の二つの時間の引力の働く速さの測定の準備を行う一方、観測地点の地下に温度を一定に保った空間を設け、空間に二つの容器を設置し、容器の下部は液体又は空気が通るための配管を行い、液体又は空気の移動を可能にするよう設置を行い、片方の容器の上部は筒状に加工を行い、筒状部分の中ほどまで液体を入れ、筒状部分の中には上部に感知板を取りつけ、下部には重りを付けた浮を浮かせ、感知板の上部には距離測定装置を設置し、太陽の位置の変化による容器の中に入っている液体の重さの変化によって、容器の中に入っている空気がクッションになり、水位が変化し、浮と共に感知板も上下するため、その変化を距離測定装置により測定を行うものである。 In order to achieve the above-mentioned object, the invention according to claim 1 defines an observation point on the ground, forms two hooks at the observation point, and hangs a thread with a weight attached to each of the hooks. Adjust the book thread so that it is exactly north-south, the time when the center of the sun is aligned with the extended line between the suspended thread and the thread, and the time after subtracting the time for the light from the sun to reach the earth. While preparing for the measurement of the speed of time attractive force, a space where the temperature is kept constant is provided in the basement of the observation point, two containers are installed in the space, and the lower part of the container is for liquid or air to pass Install piping so that liquid or air can move, process the upper part of one container into a cylindrical shape, put the liquid in the middle of the cylindrical part, and place the upper part in the cylindrical part Attach the sensing plate to the bottom and lift the float with a weight on the bottom. Installs a distance measuring device, and the air in the container becomes a cushion due to the change in the weight of the liquid in the container due to the change in the position of the sun, the water level changes, and it senses with floating Since the plate also moves up and down, the change is measured by a distance measuring device.

また、請求項2に係る発明は、地上に観測地点を定め、観測地点には二つの櫓を組み、櫓からはそれぞれ重りを付けた糸を吊り下げ、吊り下げた二本の糸が正確に南北になるように調整を行い、吊り下げた糸と糸との延長線上に太陽の中心が合致した時間と、太陽から地球までの光の届く時間を差し引いた時間の、二つの時間の引力の働く速さの測定の準備を行う一方、観測地点の地下に空間を設け、温度を一定に保った空間に二つの容器を設置し、容器の下側を配管でつなぎ、液体又は空気の移動を可能にして、片方の容器の上部には筒状にして筒の中ほどまで液体を入れ、片方の容器には空気を入れて液体のクッションに使い、筒状部分の上部には、光を送る器具とその光を受けて光の量を測定する器具を設置し、筒状部分の液面には浮を浮かせ、浮の下部には重りが付けてあり、上部には光を遮断するための部材が取り付けてあり、部材は光を送る器具と光を受けて光の量を測定する器具の間に介在させ、太陽の引力の変化で上下する水位により、浮と共に上下する部材により光を遮られるため、光を受けて光の量を測定する器具は送られてくる光の量が少なくなり、その変化の測定を行うものである。 In the invention according to claim 2, an observation point is defined on the ground, two ridges are assembled at the observation point, and a thread with a weight is suspended from the heel, and the two suspended yarns are accurately Adjusting to the north and south, the gravitational force of two hours, the time when the center of the sun is aligned with the extended line of the suspended thread and the time when the light from the sun reaches the earth is subtracted. While preparing for the measurement of working speed, a space is provided in the basement of the observation point, two containers are installed in a space where the temperature is kept constant, and the lower side of the container is connected by piping to move liquid or air. It is possible to put the liquid in the upper part of one container and put the liquid in the middle of the container, put air in the one container and use it as a liquid cushion, and send light to the upper part of the tubular part Install an instrument and an instrument that receives the light and measures the amount of light, and floats on the liquid surface of the cylindrical part. There is a weight attached to the lower part of the float, and a member for blocking light is attached to the upper part. The member is interposed between the device that sends light and the device that receives light and measures the amount of light. Since the light level is blocked by the rising and falling water level due to the rising and falling water level due to the change in the attractive force of the sun, the instrument that receives light and measures the amount of light reduces the amount of light that is sent, and the change The measurement is performed.

上記のように本発明は、引力の変化を測定するためのものであり、観測地点に南北に吊るした二本の糸の延長線上に太陽の中心が合致した時間を基準にして、引力の働く速さを測定できることが記載されるが、地上に設けた太陽の位置測定装置と温度を一定に保った空間に太陽の位置の変化によって観測地点における引力の変化を利用して、太陽が観測地点の物体にどのような変化を与えているかを精密に測定を行うことで引力の働く速さが解れば、社会において一つの事が解明される事で他方面での利用が期待されるものである。 As described above, the present invention is for measuring the change in attractive force, and the attractive force works on the basis of the time when the center of the sun is aligned with the extension line of two yarns hung from north to south at the observation point. Although it is described that the speed can be measured, the sun is measured at the observation point by using the solar position measurement device installed on the ground and the change in attractive force at the observation point due to the change in the position of the sun in the space where the temperature is kept constant. what fast is a solution lever acting of attraction by performing precise measurement whether the given change, those available in the other side in that one thing is elucidated in society is expected of the object It is.

以下、添付図面を参照にして、本発明の形態につき説明し、本発明の理解に供する。尚、以下の実施の形態は、本発明の具体的な一例であって、本発明の技術的範囲を限定する性格のものではない。ここに図1は、本発明の一実施の形態に係る、地上における太陽観測のための基点であり、観測地点の南北に連なる垂直線を測定するためのものである。図2は、地下の空間に設置した、櫓とスプリングと重りと温度計と距離測定装置である。図3は、太陽と地球と月を北極側から見た図である。図4は、太陽の位置と重りと距離測定装置の距離と時間と温度と年月日を一度に記録するためのものである。図5、は二つの容器の中に入れた空気と液体が太陽の引力の変化による水位の変化を捕らえるためのものである。図6は、櫓から吊り下げた重り19の下側に光を送る器具と、光を受けて光の量を測定する器具の間に重りの一部を介在させて、通過する光の量を計って、引力の変化を測定するものである。図7は、二つの容器の中に入れた空気と液体が太陽の引力の変化によって生じる水位の変化を捕らえて、部材の一部を、光を送る器具とその光を受けて光の量を感知する器具の間に介在させ、光の通過する量を測定するものである。
本発明の一実施の形態に係る引力変化測定装置は、宇宙における物体と物体との間で働いている引力の変化を測定するためのもので、図1は観測地点に組み立てた、櫓14から吊り下げた糸5と重り12があり、櫓15から吊り下げた糸7と重り13があり、糸5と糸7の上部は糸6で繋いであり、南北と垂直を測定できる装置である。望遠鏡10により、櫓から吊り下げた糸5と糸7の中心を北極に合わせて南北を定め、吊り下げた糸5側から糸5と糸6の中心と太陽の中心が合致した時間を測定し、太陽から地球までの光が届く時間を差し引いた時間と、太陽から地球までの光が届く時間を差し引かない時間との二つの時間に測定を行うものである。測定を行うには、図2で示す櫓からスプリング18が吊るしてあり、スプリングの下側には重り19が吊るしてあり、重り19の下側には少し間を開けて、その下側に距離測定装置20を設置してあり、太陽の位置の移動により微妙に変化する引力を重り19が受けるため、その変化を距離測定装置20が感知し、数値にして図4の表示板31に表示するものであり、太陽の中心が図1で示す南北の垂直線の延長線上に合致した時間に、距離測定装置又は光を受けて光の量を測定する装置の数値が頂点を示し、頂点を過ぎた後は1秒ごとに数値が下がっていくのであれば、それは光の速さと引力の働く速さが同じであるということになる。また、垂直線の延長線上に太陽の中心が合致した時間から、太陽から地球までの光の届く時間の差を差し引いた時間に、距離測定装置又は光を受けて光の量を測定する装置の値が頂点を示し、頂点を過ぎた後は1秒ごとに数値が下がっていくのであれば、それは引力の働く速さは光の速さよりも速く、太陽と地球の間を0タイムで働いている事になる。
また、距離測定装置又は光の量を測定する装置の値が光の速さ分の時間を差し引いた時間と、光の速さ分の時間を差し引かない時間との中間あたりのいずれかの時間に示す値が頂点を示した場合は、引力の働く速さは光と同じ速さでもなく、太陽と地球の間を0タイムで働くのでもなく、新しい速さが記録されたことになる。
Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings for understanding of the present invention. The following embodiment is a specific example of the present invention and is not intended to limit the technical scope of the present invention. Here, FIG. 1 is a base point for solar observation on the ground according to an embodiment of the present invention, and is for measuring a vertical line extending from north to south of the observation point. FIG. 2 shows a cage, a spring, a weight, a thermometer, and a distance measuring device installed in an underground space. FIG. 3 is a view of the sun, the earth, and the moon as seen from the north pole side. FIG. 4 is for recording the sun position, weight, distance of the distance measuring device, time, temperature and date at a time. FIG. 5 shows that the air and the liquid contained in the two containers capture changes in the water level due to changes in the attractive force of the sun. FIG. 6 shows the amount of light passing through a part of the weight interposed between an instrument that sends light to the lower side of the weight 19 suspended from the cage and an instrument that receives the light and measures the amount of light. It measures and measures the change in attractive force. Figure 7 shows how the air and liquid in the two containers capture changes in the water level caused by changes in the attractive power of the sun. It is interposed between the sensing instruments and measures the amount of light passing through .
An apparatus for measuring an attractive force change according to an embodiment of the present invention is for measuring a change in attractive force acting between objects in space, and FIG. There is a suspended thread 5 and a weight 12, and there are a thread 7 and a weight 13 suspended from a hook 15, and the thread 5 and the upper part of the thread 7 are connected by a thread 6, which is a device capable of measuring north-south and perpendicular. The telescope 10 determines the north and south by aligning the centers of the thread 5 and thread 7 suspended from the kite with the north pole, and measures the time when the center of the thread 5 and thread 6 matches the center of the sun from the suspended thread 5 side. The measurement is performed in two times: a time obtained by subtracting the time for light from the sun to reach the earth and a time for which the time for light from the sun to reach the earth is not subtracted. In order to perform the measurement, a spring 18 is hung from the rod shown in FIG. 2, a weight 19 is hung below the spring, a little is opened below the weight 19 and a distance is placed below the weight 19. Since the measuring device 20 is installed and the weight 19 receives an attractive force that slightly changes due to the movement of the position of the sun, the distance measuring device 20 senses the change and displays it as a numerical value on the display board 31 of FIG. At the time when the center of the sun coincides with the extension of the north-south vertical line shown in FIG. 1, the numerical value of the distance measuring device or the device that measures the amount of light by receiving light indicates the apex, and passes the apex. After that, if the value goes down every second, it means that the speed of light is the same as the speed of attraction. In addition, the distance measuring device or the device that measures the amount of light by receiving light from the time when the center of the sun is aligned with the extended line of the vertical line minus the difference in the light arrival time from the sun to the earth. If the value shows a vertex and the value goes down every second after passing the vertex, it means that the speed of attraction is faster than the speed of light, working between the sun and the earth in 0 time. It will be.
In addition, the value of the distance measuring device or the device for measuring the amount of light is either halfway between the time obtained by subtracting the time corresponding to the speed of light and the time not subtracting the time corresponding to the speed of light. If the value shown indicates the apex, the speed at which the attractive force works is not the same as that of the light, and it does not work between the sun and the earth at zero time, and the new speed is recorded.

上記実施の形態は、引力の働く速さを測定しようとするために、図1で示す櫓14と櫓15から重りを付けて吊るした二本の糸の上部と上部を糸で繋ぎ、糸5と糸6の中心の延長線と太陽の中心が合致した時間を測定し、その時間を基準にして引力の働く速さを測定しようとするものである。
一方、2図で示す観測地点の温度の一定したところに空間を設け、空間には櫓を設けてスプリングを吊るし、スプリングの下側には重りを取り付け、重りの下側には少し間をあけて距離測定装置20を設置して、太陽の位置の変化によって重り19に与える引力の変化を距離測定装置20により重り19との間隔の変化を捕らえて、引力の変化の測定を行うものである。
また、糸5と糸6の中心と太陽の中心が合致した時間に太陽から地球までの光の届く時間を差し引いた時間に重り19に与える引力の変化を測定し、距離測定装置20で感知した値が頂点を示した場合は、太陽と地球の間を引力は0タイムで働いたことになり、また、糸5と糸6の中心と太陽の中心が合致した時間に測定装置の値が頂点を示した場合は、光の速さと引力の働く速さは同じであると言える。
In the above embodiment, in order to measure the speed at which the attractive force acts, the upper and upper portions of the two yarns suspended with weights from the reed 14 and reed 15 shown in FIG. the center of the extension line and the sun of the center of the yarn 6 measures the time that matches, it is intended to measure how fast the working attraction based on the time.
On the other hand, a space is provided at a constant temperature at the observation point shown in Fig. 2, and a spring is hung with a cage in the space, a weight is attached to the lower side of the spring, and a space is provided below the weight. The distance measuring device 20 is installed, and the change in the attractive force applied to the weight 19 due to the change in the position of the sun is captured by the distance measuring device 20 to the change in the distance from the weight 19 to measure the change in the attractive force. .
Further, the change in the attractive force applied to the weight 19 is measured by subtracting the time when the light from the sun reaches the earth at the time when the centers of the yarns 5 and 6 coincide with the center of the sun, and is detected by the distance measuring device 20. If the value indicates the apex, the gravitational force worked between the sun and the earth in 0 time, and the value of the measuring device reached the apex at the time when the centers of the thread 5 and thread 6 coincided with the center of the sun. If it is shown, it can be said that the speed of light and the speed of the attractive force are the same.

上記実施の形態は、引力の働く速さを測定しようとするために、図1で示す櫓14と櫓15から重りを付けて吊るした二本の糸を正確に南北になるように調整を行い、吊るした二本の糸の上部と上部を別の糸で繋ぎ、糸5と糸6の中心の延長線と太陽の中心が合致した時間を測定し、その時間を基準にして引力の働く速さを測定しようとするものである。
一方、図5で示すものは、容器35と容器39と距離測定装置20を地下空間の温度の一定したところに設置し、容器35と容器39の下部には液体又は空気の通るための配管を行い、液体又は空気の移動を可能にし、容器39の上部には浮44の上下移動が可能になるように筒状にした容器39の中に液体を入れ、水位を筒状部分46の位置まで入れ、筒状部分の中に、上部には感知板47を、下部には重り41をつけた浮44を浮かべ、感知板47の上部には距離測定装置20を設置し、太陽の位置の変化による容器39の中に入っている液体40の重さの変化によって、容器35の中に入っている空気がクッションになり水位46が変化するため、浮44と共に感知板47も上下するので、その変化を距離測定装置20により測定を行うものである。
上記図1で示す櫓14と櫓15から重りを付けて吊るした二本の糸の上部と上部を繋いだ糸6と糸5の延長線上の中心と太陽の中心が合致した時間を基準にして、距離測定装置20により感知板47との距離を測定して、引力の働く速さを測定しようとするものである。糸6と糸5の延長線上に太陽が合致した時間に距離測定装置20により距離表示板31に表示される値が最高の数値が表示された場合、それは光の速さと引力の働く速さは同じであることを証明するものである。また、糸6と糸5の延長線上に太陽の中心が合致した時間から太陽から光が地球に届く時間を差し引いた時間に、距離測定装置20により距離表示板31に表示される値が最高の数値が表示された場合、それは引力は光の速さよりも速く、太陽と地球の間を0タイムの速さで働いていることになる。また、太陽の位置が観測地点の二本の糸の延長線上に合致した時間と、太陽から地球までの光の届く時間を差し引いた時間と二つの時間の前後の時間も測定を行うことが必要である。
In the embodiment described above , in order to measure the speed at which the attractive force works, the two yarns suspended with weights from the reed 14 and reed 15 shown in FIG. The upper part and the upper part of the two suspended yarns are connected with another yarn, the time when the extension line of the center of the yarns 5 and 6 and the center of the sun match is measured, and the speed at which the attractive force works based on that time It is intended to measure.
On the other hand, as shown in FIG. 5, the container 35, the container 39, and the distance measuring device 20 are installed at a constant temperature in the underground space, and pipes for passing liquid or air are provided below the container 35 and the container 39. The liquid or air can be moved, and the liquid is put into the cylindrical container 39 so that the float 44 can be moved up and down in the upper part of the container 39, and the water level is reached to the position of the cylindrical part 46. A floating plate 44 with a sensing plate 47 in the upper part and a weight 41 is floated in the lower part, and a distance measuring device 20 is installed in the upper part of the sensing plate 47 to change the position of the sun. Due to the change in the weight of the liquid 40 contained in the container 39, the air contained in the container 35 becomes a cushion and the water level 46 changes, so the sensing plate 47 moves up and down together with the float 44. Change is measured by the distance measuring device 20 It is intended.
Based on the time when the center of the sun and the center of the extension line of the yarn 6 and yarn 5 connecting the upper portion of the two yarns suspended from the rod 14 and the rod 15 shown in FIG. , by the distance measuring device 20 measures the distance between the sensing plate 47, is intended to measure how fast the working attraction. When the maximum value displayed on the distance display board 31 is displayed by the distance measuring device 20 at the time when the sun is aligned with the extension line of the yarn 6 and the yarn 5, the speed of light and the speed at which the attractive force works are It proves that they are the same. In addition, the value displayed on the distance display 31 by the distance measuring device 20 is the highest during the time obtained by subtracting the time when the light reaches the earth from the sun from the time when the center of the sun is aligned with the extended line of the yarn 6 and the yarn 5. If a numerical value is displayed, it means that the gravitational force is faster than the speed of light and is working between the sun and the earth at zero time speed. It is also necessary to measure the time when the position of the sun matches the extension line of the two yarns at the observation point, the time after subtracting the time for the light from the sun to reach the earth, and the time before and after the two times. It is.

引力の働く速さがはっきりした場合は、宇宙開発においても、社会においても利用価値があり、社会の発展に役立つものである。   When the speed of attraction is clear, it is useful in both space development and society, and is useful for social development.

南北と南北の垂直線を測定するための側面図Side view for measuring north-south and north-south vertical lines 地下空間に設置した櫓とスプリングと重りと距離測定装置と温度計であり、 一部断面図A fence, a spring, a weight, a distance measuring device, and a thermometer installed in the underground space. 北極側から見た太陽と地球と月の図Illustration of the sun, the earth and the moon as seen from the Arctic side テレビ画面と距離数値盤と温度数値盤と時計と年月日を一度に記録するため の表示盤の図Illustration of the display screen for recording the TV screen, distance value plate, temperature value plate, clock and date at a time 二つの容器と浮と感知板と距離測定装置の側面図であり、一部断面図It is a side view of two containers, a float, a sensing plate, and a distance measuring device, and a partial sectional view 重りの位置の変化を感知して測定を行うための図Diagram for measuring changes in the position of the weight 水位の変化を光で捕らえて測定するための図Diagram for measuring changes in water level with light

1・・・・北極
2・・・・太陽
3・・・・地球
4・・・・月
5・・・・櫓から吊り下げた糸
6・・・・櫓から吊り下げた糸5と糸7を繋いだ糸
7・・・・櫓から吊り下げた糸
8・・・・望遠鏡と糸7と糸5と北極を結ぶ線
9・・・・望遠鏡と糸5と糸6と太陽を結ぶ線
10・・・望遠鏡
11・・・望遠鏡
12・・・重り
13・・・重り
14・・・櫓
15・・・櫓
16・・・枠
17・・・櫓
18・・・スプリング
19・・・重り
20・・・距離測定装置
21・・・重りと距離測定装置との空間
22・・・距離測定装置及び光の量を測定する装置と表示盤31を繋ぐコード
23・・・温度計
24・・・温度計と温度数値盤を繋ぐコード
25・・・地下空間の天井
26・・・地下空間の床面
27・・・地下空間
28・・・観測地点の水平線
29・・・テレビ画面の中心であり、南北の垂直線の延長線
30・・・テレビ画面
31・・・距離測定装置及び光の量を測定する装置の表示盤
32・・・温度計の表示盤
33・・・時計
34・・・年月日の表示盤
35・・・容器
36・・・空気の入るための空間
37・・・液体の表面
38・・・容器と容器を繋ぐ配管
39・・・容器
40・・・液体
41・・・重り
42・・・浮と重りを繋ぐアーム
43・・・筒状になった部分
44・・・浮
45・・・感知板と浮を繋ぐアーム
46・・・水位
47・・・感知板
48・・・感知板と距離測定装置の空間
49・・・重り19の突起部分
50・・・光の通る部分
51・・・電源コード
52・・・光を送る器具
53・・・光を受けて光の量を測定する器具
54・・・光を遮断する部材
55・・・月の軌道
1... Arctic 2... Sun 3... Earth 4... Moon 5. Thread 7 that is connected to ... Thread 8 that is suspended from the cage ... Line 9 that connects the telescope, thread 7 and thread 5 to the North Pole ... ... Line 10 that connects the telescope, thread 5, thread 6 and the sun 10 ... Telescope 11 ... Telescope 12 ... Weight 13 ... Weight 14 ... 櫓 15 ... 櫓 16 ... Frame 17 ... 櫓 18 ... Spring 19 ... Weight 20 ... Distance measuring device 21 ... Space 22 between weight and distance measuring device ... Cord 23 connecting distance measuring device and device for measuring light quantity to display board 31 ... Thermometer 24 ... Code 25 for connecting thermometer and temperature value board ... Ceiling 26 in underground space ... Floor surface 27 in underground space ... Underground space 28 ... Horizontal line 29 at observation point The center of the television screen, the extension line 30 of the north-south vertical line ... the television screen 31 ... the display panel 32 of the distance measuring device and the device for measuring the amount of light ... the display panel 33 of the thermometer ... -Clock 34-Date display panel 35-Container 36-Air space 37-Liquid surface 38-Pipe 39 connecting containers to each other-Container 40 ... Liquid 41 ... Weight 42 ... Arm 43 connecting float and weight ... Cylindrical portion 44 ... Float 45 ... Arm 46 connecting float with sensing plate ... Water level 47 ... Sensing plate 48 ... Space 49 between sensing plate and distance measuring device ... Projection portion 50 of weight 19 ... Light passing portion 51 ... Power cord 52 ... Light sending instrument 53 ... Equipment 54 that receives light and measures the amount of light 54 ... Member 55 that blocks light ... Orbit of the moon

Claims (2)

観測地点の南北に連なる垂直線上に太陽の中心が合致した時間を基準にして観測地点に温度を一定に保った空間を設け、その中に二つの容器を設置して、その二つの容器の下側をパイプでつなぎ、片方の容器の上部は筒状にして筒状部分の中ほどまで液体を入れ、片方の容器には空気を入れて液体の移動のクッションに使い、その筒状の中の液面の上部には測定板をつけ、下部には重りをつけた浮を浮かせ、測定板の上部には距離測定装置を設置し、太陽の引力の変化により液体とともに測定板の位置の変化を距離測定装置で捕らえることを特徴とする引力変化測定装置。A space where the temperature is kept constant is established at the observation point on the vertical line connected to the north and south of the observation point, based on the time when the center of the sun coincides, and two containers are installed in the observation point, below the two containers. Connect the pipes on one side, and put the upper part of one container into a cylinder, and put the liquid in the middle of the tubular part. Put air in one container and use it as a cushion for moving the liquid. A measuring plate is attached to the upper part of the liquid level, a float with a weight is floated on the lower part, and a distance measuring device is installed on the upper part of the measuring plate to change the position of the measuring plate together with the liquid due to changes in the sun's attractive force. An attraction change measuring device characterized by being captured by a distance measuring device. 観測地点の南北に連なる垂直線上に太陽の中心が合致した時間を基準にして観測地点に温度を一定に保った空間を設け、その中に二つの容器を設置し、二つの容器の下部をパイプでつなぎ、片方の容器の上部は筒状にして筒の中ほどまで液体を入れ、片方の容器には空気を入れて液体のクッションに使い、筒状の中の液面の上部には光を遮断するための部材と下部には重りを取り付けた浮を浮かせて、上部に取り付けた光を遮断するための部材を、光を送る装置と光を受け止めて光の量を測定する装置の間に介在させ、太陽の引力の変化によって上下する光を遮断する部材によってさえぎられた光の量を測定することを特徴とする引力変化測定装置。On the vertical line connecting the north and south of the observation point, a space where the temperature is kept constant is established at the observation point based on the time when the center of the sun is matched, and two containers are installed in it, and the lower part of the two containers is piped The upper part of one container is cylindrical, and liquid is put in the middle of the cylinder. Air is put in one container and used as a liquid cushion, and light is applied to the upper part of the liquid level in the cylindrical form. A floating member with a weight attached to the lower part and a member to block the light attached to the upper part between the device that sends light and the device that receives the light and measures the amount of light. An apparatus for measuring an attractive force change, characterized by measuring the amount of light intervened by a member that blocks light rising and falling by a change in the attractive force of the sun.
JP2005161967A 2005-05-02 2005-05-02 Device for measuring changes in attractive force Expired - Fee Related JP4593367B2 (en)

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3683697A (en) * 1968-10-16 1972-08-15 Eberhard Thebis Temperature compensated gravimeter
JPH05341054A (en) * 1992-06-08 1993-12-24 Kougakushiya:Kk Method for measuring gravitational force transmission speed
US20030006929A1 (en) * 2000-03-07 2003-01-09 Guanghua Huang Experimental arrangements for measuring propagation speed of variational gravitational field

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3683697A (en) * 1968-10-16 1972-08-15 Eberhard Thebis Temperature compensated gravimeter
JPH05341054A (en) * 1992-06-08 1993-12-24 Kougakushiya:Kk Method for measuring gravitational force transmission speed
US20030006929A1 (en) * 2000-03-07 2003-01-09 Guanghua Huang Experimental arrangements for measuring propagation speed of variational gravitational field

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