高二会考会用到的物理公式

2025-02-27 00:50:20
推荐回答(4个)
回答1:

e=Em sinωt
ω=dφ/dt

电势能:EA=qφA {EA:带电体在A点的电势能(J),q:电量(C),φA:A点的电势(V)}

.电势能的变化ΔEAB=EB-EA {带电体在电场中从A位置到B位置时电势能的差值}

电场力做功与电势能变化ΔEAB=-WAB=-qUAB (电势能的增量等于电场力做功的负值)

电容C=Q/U(定义式,计算式) {C:电容(F),Q:电量(C),U:电压(两极板电势差)(V)}

平行板电容器的电容C=εS/4πkd(S:两极板正对面积,d:两极板间的垂直距离,ω:介电常数)
常见电容器〔见第二册P111〕

.带电粒子在电场中的加速(Vo=0):W=ΔEK或qU=mVt2/2,Vt=(2qU/m)1/2

.带电粒子沿垂直电场方向以速度Vo进入匀强电场时的偏转(不考虑重力作用的情况下)

类平 垂直电场方向:匀速直线运动L=Vot(在带等量异种电荷的平行极板中:E=U/d)
抛运动 平行电场方向:初速度为零的匀加速直线运动d=at2/2,a=F/m=qE/m
注:
(1)两个完全相同的带电金属小球接触时,电量分配规律:原带异种电荷的先中和后平分,原带同种电荷的总量平分;
(2)电场线从正电荷出发终止于负电荷,电场线不相交,切线方向为场强方向,电场线密处场强大,顺着电场线电势越来越低,电场线与等势线垂直;
(3)常见电场的电场线分布要求熟记〔见图[第二册P98];
(4)电场强度(矢量)与电势(标量)均由电场本身决定,而电场力与电势能还与带电体带的电量多少和电荷正负有关;
(5)处于静电平衡导体是个等势体,表面是个等势面,导体外表面附近的电场线垂直于导体表面,导体内部合场强为零,导体内部没有净电荷,净电荷只分布于导体外表面;
(6)电容单位换算:1F=106μF=1012PF;
(7)电子伏(eV)是能量的单位,1eV=1.60×10-19J;
(8)其它相关内容:静电屏蔽〔见第二册P101〕/示波管、示波器及其应用〔见第二册P114〕等势面〔见第二册P105〕。

恒定电流
1.电流强度:I=q/t{I:电流强度(A),q:在时间t内通过导体横载面的电量(C),t:时间(s)}
2.欧姆定律:I=U/R {I:导体电流强度(A),U:导体两端电压(V),R:导体阻值(Ω)}
3.电阻、电阻定律:R=ρL/S{ρ:电阻率(Ω•m),L:导体的长度(m),S:导体横截面积(m2)}
4.闭合电路欧姆定律:I=E/(r+R)或E=Ir+IR也可以是E=U内+U外
{I:电路中的总电流(A),E:电源电动势(V),R:外电路电阻(Ω),r:电源内阻(Ω)}
5.电功与电功率:W=UIt,P=UI{W:电功(J),U:电压(V),I:电流(A),t:时间(s),P:电功率(W)}
6.焦耳定律:Q=I2Rt{Q:电热(J),I:通过导体的电流(A),R:导体的电阻值(Ω),t:通电时间(s)}
7.纯电阻电路中:由于I=U/R,W=Q,因此W=Q=UIt=I2Rt=U2t/R
8.电源总动率、电源输出功率、电源效率:P总=IE,P出=IU,η=P出/P总{I:电路总电流(A),E:电源电动势(V),U:路端电压(V),η:电源效率}
9.电路的串/并联 串联电路(P、U与R成正比) 并联电路(P、I与R成反比)
电阻关系(串同并反) R串=R1+R2+R3+ 1/R并=1/R1+1/R2+1/R3+
电流关系 I总=I1=I2=I3 I并=I1+I2+I3+
电压关系 U总=U1+U2+U3+ U总=U1=U2=U3
功率分配 P总=P1+P2+P3+ P总=P1+P2+P3+

根据经验,基本都会涉及一点点。

回答2:

e=Em sinωt
ω=dφ/dt

电势能:EA=qφA {EA:带电体在A点的电势能(J),q:电量(C),φA:A点的电势(V)}

.电势能的变化ΔEAB=EB-EA {带电体在电场中从A位置到B位置时电势能的差值}

电场力做功与电势能变化ΔEAB=-WAB=-qUAB (电势能的增量等于电场力做功的负值)

电容C=Q/U(定义式,计算式) {C:电容(F),Q:电量(C),U:电压(两极板电势差)(V)}

平行板电容器的电容C=εS/4πkd(S:两极板正对面积,d:两极板间的垂直距离,ω:介电常数)
常见电容器〔见第二册P111〕

.带电粒子在电场中的加速(Vo=0):W=ΔEK或qU=mVt2/2,Vt=(2qU/m)1/2

.带电粒子沿垂直电场方向以速度Vo进入匀强电场时的偏转(不考虑重力作用的情况下)

垂直电场方向:匀速直线运动L=Vot(在带等量异种电荷的平行极板中:E=U/d)
抛运动 平行电场方向:初速度为零的匀加速直线运动d=at2/2,a=F/m=qE/m
注:
两个完全相同的带电金属小球接触时,电量分配规律:原带异种电荷的先中和后平分,原带同种电荷的总量平分;
电场强度(矢量)与电势(标量)均由电场本身决定,而电场力与电势能还与带电体带的电量多少和电荷正负有关;
处于静电平衡导体是个等势体,表面是个等势面,导体外表面附近的电场线垂直于导体表面,导体内部合场强为零,导体内部没有净电荷,净电荷只分布于导体外表面;
电容单位换算:1F=106μF=1012PF;
恒定电流
1.电流强度:I=q/t{I:电流强度(A),q:在时间t内通过导体横载面的电量(C),t:时间(s)}
2.欧姆定律:I=U/R {I:导体电流强度(A),U:导体两端电压(V),R:导体阻值(Ω)}
3.电阻、电阻定律:R=ρL/S{ρ:电阻率(Ω•m),L:导体的长度(m),S:导体横截面积(m2)}
4.闭合电路欧姆定律:I=E/(r+R)或E=Ir+IR也可以是E=U内+U外
{I:电路中的总电流(A),E:电源电动势(V),R:外电路电阻(Ω),r:电源内阻(Ω)}
5.电功与电功率:W=UIt,P=UI{W:电功(J),U:电压(V),I:电流(A),t:时间(s),P:电功率(W)}
6.焦耳定律:Q=I2Rt{Q:电热(J),I:通过导体的电流(A),R:导体的电阻值(Ω),t:通电时间(s)}
纯电阻电路中:由于I=U/R,W=Q,因此W=Q=UIt=I2Rt=U2t/R
电源总动率、电源输出功率、电源效率:P总=IE,P出=IU,η=P出/P总{I:电路总电流(A),E:电源电动势(V),U:路端电压(V),η:电源效率}
电路的串/并联 串联电路(P、U与R成正比) 并联电路(P、I与R成反比)
电阻关系(串同并反) R串=R1+R2+R3+ 1/R并=1/R1+1/R2+1/R3+
电流关系 I总=I1=I2=I3 I并=I1+I2+I3+
电压关系 U总=U1+U2+U3+ U总=U1=U2=U3
功率分配 P总=P1+P2+P3+ P总=P1+P2+P3+

回答3:

G=mg F=qE U=Ed

回答4:

u=e*d,F=q*e,F(安培)=BIL,F(洛伦兹)=qvB,(R=(mv)/(qB)当粒子在磁场中做匀速圆周运动时使用)

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