作者:朱晨熙 · 更新日期:2025-10-11
黄火星并不是传统八字命理中已知的概念八字命理是。以一个人出生时的年、月、日时、来推算其命运并,无 🌲 黄火星一“说”。
黄道日火 🦁 星推算 🐈
在紫微斗数中,黄道日 🍁 火星的推算方法如下:
第一步:确定流年 🐛 黄 🦋 道日
流年黄道日流年 🦋 = (余 1) x 12 + 数
余数计 🐈 算方法 🐝 :
平 🐋 年:余数年 = 份 🐬 后两位数字 🦈
闰年:余数年 = 份后两 🍀 位数字 🌺 1
第二步:查找火星所在宫位 🐴
根据黄道日,在紫微斗数命盘中查 🐵 找火星所在的宫位。
如果黄道日余数为:0、1、6、7、11、12,火 🌿 星在辰宫 🌳 (紫微 🌿 宫)
如果黄道日余数为:2、3、8、9,火星在酉宫(天府宫 🐅 )
如果黄道日余数为:4、5、10,火星在寅宫 🦁 (廉贞宫)
第三步:确定火星 🐡 推度数
平年:每逢每月初一 🦁 ,火星推度度6
闰年:每 🌲 月初一,火星推度度5
第四 🐼 步 🐺 :推算黄 🦄 道日火星位置
根据火星所在宫位和推度数推,算出黄道日 🐬 火星的 🌼 位置 🌿 :
起算点:黄道 🐧 日当 🐎 天,火 🌻 星所在宫位
推度:从起算点开始 🦋 ,按顺序推度火星推度数
示例:假设2023年(闰年)的 🕊 流年 🐼 黄道 🐎 日为10。
第一 🌳 步:确定流 🦢 年黄 🐼 道日
流年 🦉 黄道日 = (2023 1) x 12 + 10 = 24255
余 🦁 数 🐡 = 10
第二步 🪴 :查找火星所在宫位
黄道 🦢 日余数为10,火星在寅宫(廉贞 🐶 宫)
第三步:确 ☘ 定 🦍 火星推 🪴 度数
闰年每月初 🌾 一,火星推度 🐴 度5
第四步:推算黄道 🦊 日火 🐘 星位置 🌲
起算点:2023年1月1日 🐈 ,寅宫 🦅 火星 🌸
推度:寅 🦈 宫火星 🌵 推 🦋 度度5至卯宫
因此 🌲 ,2023年 🦁 (闰年)黄 🦉 道日10的火星位置为卯宫。
COLORED MATERIAL ON
THE WEATHERED SURFACE OF THE
ROCK SHOWS AS WHITE
THE TUMBLING ACTION OF THE
MARTIAN ROCKS causes them to
collect dust on their lee side
as they roll along in the Martian
wind. The dust accumulates
into small mounds, which show
up here as bright areas within
the cratercovered surface of
the rock. The color of the dust
is not apparent. The spectral
band ratio of the bright areas
of the mounds shows them
to be spectrally anomalous
with respect to the host rock.
The bright material is mostly
within the crater walls and
doesn't appear to adhere to the
crater floors. This may mean
that the bright material is less
compacted than the craterfloored
portion of the host rock. This
could be part of a "windblown
deposit", as the white dust
appears to be most commonly
associated with the "windblown
deposit" a "windblown deposit"
is part of the eolian, or
windrelated, geologic material
found on top of the soil in the
Goldstone area.
of Sciences. This meteorite is believed to be a fragment of the planet Mars that was ejected to space through meteorite impact and later fell to
Earth. This meteorite contains dark greenish calciumrich pyroxene with a white mineral that is possibly albite. The crystal lattice of
pyroxene is similar to that of augite. This meteorite may be the first recognized example of a type of rock that exists both on Mars and on Earth.
[Goldstone Apple Valley Lunar Educational Network (GAVEL)]